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Topic:Amino Acid Sequence

Amino acid sequences in horses refer to the specific order of amino acids in a protein, which is crucial for determining the protein's structure and function. These sequences are encoded by the horse's genetic material and are essential for various biological processes, including muscle development, enzyme activity, and immune response. Understanding amino acid sequences in horses can provide insights into genetic diseases, performance traits, and overall health. This topic explores the latest research on equine amino acid sequences, focusing on their role in protein synthesis, genetic variation, and implications for breeding and veterinary medicine. The page compiles peer-reviewed studies and scholarly articles that investigate the significance of amino acid sequences in equine biology.
Influence of long terminal repeat and env on the virulence phenotype of equine infectious anemia virus.
Journal of virology    February 14, 2004   Volume 78, Issue 5 2478-2485 doi: 10.1128/jvi.78.5.2478-2485.2004
Payne SL, Pei XF, Jia B, Fagerness A, Fuller FJ.The molecular clones pSPeiav19 and p19/wenv17 of equine infectious anemia virus (EIAV) differ in env and long terminal repeats (LTRs) and produce viruses (EIAV(19) and EIAV(17), respectively) of dramatically different virulence phenotypes. These constructs were used to generate a series of chimeric clones to test the individual contributions of LTR, surface (SU), and transmembrane (TM)/Rev regions to the disease potential of the highly virulent EIAV(17). The LTRs of EIAV(19) and EIAV(17) differ by 16 nucleotides in the transcriptional enhancer region. The two viruses differ by 30 amino acids i...
Human chorionic gonadotropin-dependent regulation of 17beta-hydroxysteroid dehydrogenase type 4 in preovulatory follicles and its potential role in follicular luteinization.
Endocrinology    January 15, 2004   Volume 145, Issue 4 1906-1915 doi: 10.1210/en.2003-1715
Brown KA, Boerboom D, Bouchard N, Doré M, Lussier JG, Sirois J.17Beta-hydroxysteroid dehydrogenase type 4 (17betaHSD4) has a unique multidomain structure, with one domain involved in 17beta-estradiol inactivation. The objective of the study was to investigate the regulation of 17betaHSD4 during human chorionic gonadotropin (hCG)-induced ovulation/luteinization. The equine 17betaHSD4 cDNA was cloned and was shown to encode a 735-amino acid protein that is highly conserved (81-87% identity) compared with other mammalian orthologs. RT-PCR/Southern blot analyses were performed to study the regulation of 17betaHSD4 transcripts in equine preovulatory follicles ...
Interaction of fibronectin type II proteins with membranes: the stallion seminal plasma protein SP-1/2.
Biochemistry    January 14, 2004   Volume 43, Issue 2 464-472 doi: 10.1021/bi035647l
Greube A, Müller K, Töpfer-Petersen E, Herrmann A, Müller P.Seminal plasma of mammalians contains, among others, proteins that are characterized by the fibronectin (Fn) type II module. Our knowledge about the structure and the physiological function of seminal Fn type II proteins mainly originates from studies on PDC-109, the bovine representative of this protein family. The present work focuses on the equine protein SP-1/2 (also named HSP-1/2) with particular emphasis on its interaction with lipid membranes by employing the intrinsic protein fluorescence and a number of spin-labeled and fluorescent lipid analogues. The results indicate that the intera...
The amino acid sequence of protein AA from a burro (Equus asinus). Sletten K, Johnson KH, Westermark P.The primary structure of amyloid fibril protein AA of a burro has been determined by Edman degradation. The 80 amino acid residue long protein shows strong resemblance to that of other mammalian AA-proteins and differs from equine protein AA at 5 positions: Burro/horse positions 20 (Q/N), 44 (R,Q, K/K,Q), 59 (G,L/G,A), 61 (Q/E) and 65 (N/R).
Characterization of the horse (Equus caballus) IGHA gene.
Immunogenetics    October 15, 2003   Volume 55, Issue 8 552-560 doi: 10.1007/s00251-003-0617-2
Wagner B, Greiser-Wilke I, Antczak DF.Nucleotide sequences of the immunoglobulin constant heavy chain genes of the horse have been described for IGHM, IGHG and IGHE genes, but not for IGHA. Here, we provide the nucleotide sequence of the genomic IGHA gene of the horse ( Equus caballus), including its secretion region and the transmembrane exon. The equine IGHA gene shows the typical structure of a mammalian IGHA gene, with only three exons, separated by two introns of similar size. The hinge exon is located at the 5' end of the CH2 exon and encodes a hinge region of 11 amino acids, which contains five proline residues. The coding ...
Cloning, expression and biological activity of equine interleukin (IL)-5.
Veterinary immunology and immunopathology    September 13, 2003   Volume 95, Issue 1-2 63-72 doi: 10.1016/s0165-2427(03)00100-4
Cunningham FM, Vandergrifft E, Bailey SR, Sepulveda MF, Goode NT, Horohov DW.The cytokine, interleukin (IL)-5 stimulates eosinophil differentiation, activation and survival and can prime these cells, increasing the response to other mediators. In view of its many effects on eosinophils, IL-5 has been implicated in the pathogenesis of allergic disease in man. Here we report the cloning of equine IL-5 and expression of the recombinant protein by transfection of Chinese hamster ovary (CHO) cells. The cloned cDNA sequence consisted of 405 nucleotides and encoded a protein of 135 amino acids. There is >85% identity with feline, bovine, ovine, canine, and human IL-5 sequence...
Enhancement of equine infectious anemia virus virulence by identification and removal of suboptimal nucleotides.
Virology    September 5, 2003   Volume 313, Issue 2 588-603 doi: 10.1016/s0042-6822(03)00351-9
Cook RF, Cook SJ, Berger SL, Leroux C, Ghabrial NN, Gantz M, Bolin PS, Mousel MR, Montelaro RC, Issel CJ.Pathogenicity was reportedly restored to an avirulent molecular clone of equine infectious anemia virus (EIAV) by substitution of 3' sequences from the pathogenic variant strain (EIAV(PV)). However, the incidence of disease in horses/ponies was found to be significantly lower (P = 0.016) with the chimeric clone (EIAV(UK)) than with EIAV(PV). This was attributable to 3' rather than 5' regions of the proviral genome, where EIAV(UK) differs from the consensus EIAV(PV) sequence by having a 68-bp duplication in the 3' LTR and arginine (R(103)) rather than tryptophan (W(103)) at position 103 in the ...
Sequence variants of bovine papillomavirus E5 detected in equine sarcoids.
Virus research    September 3, 2003   Volume 96, Issue 1-2 141-145 doi: 10.1016/s0168-1702(03)00175-8
Chambers G, Ellsmore VA, O'Brien PM, Reid SW, Love S, Campo MS, Nasir L.The equine sarcoid, one of the most common dermatological lesions in equids, is a benign, locally invasive dermal fibroblastic lesion. Previous studies have suggested an association with two bovine papilloma virus (BPV) types, BPV-1 and BPV-2. In the present study, we examined sarcoids from horses from two geographical areas, Switzerland and the UK, for the major transforming gene of BPV, E5. We detected BPV DNA for the E5 open reading frame and viral E5 RNA transcripts in most sarcoids. Sequence analysis of the E5 open reading frame of sarcoid-associated BPV detected several unique DNA sequen...
Model of the equine rhinitis A virus capsid: identification of a major neutralizing immunogenic site.
The Journal of general virology    August 15, 2003   Volume 84, Issue Pt 9 2365-2373 doi: 10.1099/vir.0.19232-0
Kriegshäuser G, Wutz G, Lea S, Stuart D, Skern T, Kuechler E.Mouse monoclonal antibodies (mAbs) were employed to select neutralization escape mutants of equine rhinitis A virus (ERAV). Amino acid changes in the ERAV mutants resulting in resistance to neutralization were identified in capsid protein VP1 at Lys-114, Pro-240 and Thr-241. Although the changes were located in different parts of the polypeptide chain, these mutants exhibited cross-resistance against all four mAbs employed, indicating that these residues contribute to a single immunogenic site. To explain this result, we constructed a model of the three-dimensional structure of the ERAV capsid...
Presentation and binding affinity of equine infectious anemia virus CTL envelope and matrix protein epitopes by an expressed equine classical MHC class I molecule.
Journal of immunology (Baltimore, Md. : 1950)    August 7, 2003   Volume 171, Issue 4 1984-1993 doi: 10.4049/jimmunol.171.4.1984
McGuire TC, Leib SR, Mealey RH, Fraser DG, Prieur DJ.Control of a naturally occurring lentivirus, equine infectious anemia virus (EIAV), occurs in most infected horses and involves MHC class I-restricted, virus-specific CTL. Two minimal 12-aa epitopes, Env-RW12 and Gag-GW12, were evaluated for presentation by target cells from horses with an equine lymphocyte Ag-A1 (ELA-A1) haplotype. Fifteen of 15 presented Env-RW12 to CTL, whereas 11 of 15 presented Gag-GW12. To determine whether these epitopes were presented by different molecules, MHC class I genes were identified in cDNA clones from Arabian horse A2152, which presented both epitopes. This h...
Molecular cloning of equine muscle-type phosphofructokinase cDNA.
The Journal of veterinary medical science    June 17, 2003   Volume 65, Issue 5 645-648 doi: 10.1292/jvms.65.645
Sato T, Itou T, Sakai T.The complete coding region sequence of equine muscle-type phosphofructokinase (ePFKM) was obtained from skeletal muscle of a thoroughbred horse. The deduced amino acid sequence of ePFKM showed 97%, 96%, 96%, 96% and 95% identity to canine, human, mouse, rabbit and rat PFKM, respectively. The amino and carboxyl terminal halves of ePFKM presented a structure of tandem repeat, as other mammalian PFKMs. As the amino acid residues constituting various ligand-binding sites were also conserved, it is thought that ePFKM has enzymatic activity similar to PFKM in other mammals.
Phylogenetic relationships of West Nile viruses isolated from birds and horses in Israel from 1997 to 2001.
Virus genes    June 14, 2003   Volume 26, Issue 2 135-141 doi: 10.1023/a:1023431328933
Banet-Noach C, Malkinson M, Brill A, Samina I, Yadin H, Weisman Y, Pokamunski S, King R, Deubel V, Stram Y.In November 1997, an outbreak of a neuroparalytic disease caused by West Nile (WN) virus was diagnosed in young goose flocks. Domestic geese were similarly affected in the late summer and fall of 1998, 1999, 2000 and 2001. WN viruses were also isolated from migratory and wild birds and horses in 1998-2001. A 1278 bp sequence of the envelope gene of 24 Israeli WN virus isolates was compared with those of seven isolates from Africa, Europe and New York. As a result, the Israeli isolates could then be grouped into two clusters. The 15 avian and three equine from 1997-2001 in the first cluster of ...
Mapping epitopes in equine rhinitis A virus VP1 recognized by antibodies elicited in response to infection of the natural host.
The Journal of general virology    May 29, 2003   Volume 84, Issue Pt 6 1607-1612 doi: 10.1099/vir.0.18848-0
Stevenson RA, Hartley CA, Huang JA, Studdert MJ, Crabb BS, Warner S.Equine rhinitis A virus (ERAV) is an important respiratory pathogen of horses and is of additional interest because of its close relationship and common classification with foot-and-mouth disease virus (FMDV). As is the case with FMDV, the VP1 capsid protein of ERAV has been shown to be a target of neutralizing antibodies. In FMDV VP1, such antibodies commonly recognize linear epitopes present in the betaG-betaH loop region. To map linear B cell epitopes in ERAV VP1, overlapping fragments spanning its length were expressed in Escherichia coli as glutathione S-transferase (GST) fusion proteins....
CNE, a collagen-binding protein of Streptococcus equi.
FEMS microbiology letters    May 22, 2003   Volume 222, Issue 1 69-74 doi: 10.1016/S0378-1097(03)00222-2
Lannergård J, Frykberg L, Guss B.Streptococcus equi subspecies equi is an important horse pathogenic bacterium causing a serious disease called strangles. Using bioinformatics we identified a gene denoted cne (gene encoding collagen-binding protein from S. equi) coding for a novel potential virulence factor of this species called protein CNE. The protein is composed of 657 amino acids and has the typical features found in cell surface-anchored proteins in Gram-positive bacteria. CNE displays amino acid sequence similarities to the previously well-studied collagen-binding protein CNA from Staphylococcus aureus, a proven virule...
Cloning and nucleotide sequence of the equine and elk pituitary pre-prolactin cDNA.
Domestic animal endocrinology    May 14, 2003   Volume 24, Issue 4 367-376 doi: 10.1016/s0739-7240(03)00013-4
Clark RJ, Valderrama XP, Furlan MA, Chedrese PJ.We report the equine (Equs equs) and elk (Cervus elaphus) pituitary pre-prolactin (PRL) cDNA cloning, and their nucleotide and deduced amino acid sequences. Pre-PRL cDNA was obtained by RNA ligation mediated-rapid amplification of cDNA ends (RLM-RACE) and polymerase chain reaction (PCR). The elk pre-PRL cDNA exhibits two polymorphisms at positions 96 and 672, which are silent since they encode for the same amino acids, proline and isoleucine, respectively. We found no polymorphisms in the equine pre-PRL cDNA. The deduced amino acid sequence of the equine pre-PRL is 99% identical to the previou...
Cloning and sequencing of the equine and ovine high-affinity IgE receptor beta-and gamma-chain cDNA.
Immunogenetics    April 23, 2003   Volume 55, Issue 2 122-125 doi: 10.1007/s00251-003-0564-y
McAleese SM, Miller HR.The high-affinity receptor for IgE is expressed on the surface of mast cells and basophils. It is a transmembrane protein with one alpha, one beta and two gamma subunits. The cDNA sequences for the alpha subunit have already been determined. We report here the cDNA sequences for the beta and gamma subunits. The cytoplasmic domains of these subunits are important for intracellular signalling and the deduced amino acid sequences show the expected immunoreceptor tyrosine-based activation motifs. The gamma subunit is highly conserved between species but more variation is seen with the beta subunit...
A first full outer capsid protein sequence data-set in the Orbivirus genus (family Reoviridae): cloning, sequencing, expression and analysis of a complete set of full-length outer capsid VP2 genes of the nine African horsesickness virus serotypes.
The Journal of general virology    April 15, 2003   Volume 84, Issue Pt 5 1317-1326 doi: 10.1099/vir.0.18919-0
Potgieter AC, Cloete M, Pretorius PJ, van Dijk AA.The outer capsid protein VP2 of African horsesickness virus (AHSV) is a major protective antigen. We have cloned full-length VP2 genes from the reference strains of each of the nine AHSV serotypes. Baculovirus recombinants expressing the cloned VP2 genes of serotypes 1, 2, 4, 6, 7 and 8 were constructed, confirming that they all have full open reading frames. This work completes the cloning and expression of the first full set of AHSV VP2 genes. The clones of VP2 genes of serotypes 1, 2, 5, 7 and 8 were sequenced and their amino acid sequences were deduced. Our sequencing data, together with t...
Characterization of equine cDNA sequences for alphaS1-, beta- and kappa-casein.
The Journal of dairy research    March 6, 2003   Volume 70, Issue 1 29-36 doi: 10.1017/s002202990200599x
Lenasi T, Rogelj I, Dovc P.Here we report the entire cDNA sequences for equine alphaS1-, beta- and kappa-casein. Based on interspecies comparison, nine exons were found in equine beta-casein and five in kappa-casein. In equine alphaS1-casein cDNA the exon 5 was missing, which resulted in the total of 18 exons instead of 19 theoretically possible exons in alphaS1-casein cDNA. Comparison of DNA sequences representing exon 5 in other species with corresponding equine genomic region confirmed the presence of cryptic exon in horse genomic DNA. Equine alphaS1-casein mRNA was present in three forms in the lactating mammary gla...
A mutation in the MATP gene causes the cream coat colour in the horse.
Genetics, selection, evolution : GSE    February 28, 2003   Volume 35, Issue 1 119-133 doi: 10.1186/1297-9686-35-1-119
Mariat D, Taourit S, Guérin G.In horses, basic colours such as bay or chestnut may be partially diluted to buckskin and palomino, or extremely diluted to cream, a nearly white colour with pink skin and blue eyes. This dilution is expected to be controlled by one gene and we used both candidate gene and positional cloning strategies to identify the "cream mutation". A horse panel including reference colours was established and typed for different markers within or in the neighbourhood of two candidate genes. Our data suggest that the causal mutation, a G to A transition, is localised in exon 2 of the MATP gene leading to an...
Detection of papillomavirus-DNA in mesenchymal tumour cells and not in the hyperplastic epithelium of feline sarcoids.
Veterinary dermatology    February 27, 2003   Volume 14, Issue 1 47-56 doi: 10.1046/j.1365-3164.2003.00324.x
Teifke JP, Kidney BA, Löhr CV, Yager JA.We examined 12 formalin-fixed paraffin-embedded feline skin tumours which had the histopathological features of fibropapillomas for the presence of papillomavirus (PV) DNA using touchdown polymerase chain reaction (PCR), DNA sequencing and nonradioactive in situ hybridization. Nine of the tumours contained a 102-bp PCR product demonstrated using consensus PV primers that amplify a portion of the L1 gene. The nucleotide sequences are closely related, but not identical to that of ovine PV type 2, rabbit oral PV and reindeer PV. The deduced amino acid sequences had strong homologies with the majo...
Molecular cloning, nucleotide sequence and presence of multiple functional polyadenylation signals in the 3′-untranslated region of equine dopamine beta-hydroxylase cDNA.
DNA sequence : the journal of DNA sequencing and mapping    February 21, 2003   Volume 13, Issue 5 257-262 doi: 10.1080/1042517021000013553
Sato F, Hasegawa T, Katayama Y, Ishida N.Complementary DNA (cDNA) encoding equine dopamine beta-hydroxylase (DBH) was amplified with a combination of reverse transcription-polymerase chain reaction (RT-PCR) and rapid amplification of cDNA ends (RACE) method, and their nucleotide sequences (Accession No. AB029430: the DDBJ nucleotide sequence database) was determined. A total of 3842 bp cDNA sequence was consisted with 5 bp of 5' flanking untranslated sequence, 1833 bp of open reading frame encoding 610 amino acids, and 2004 bp of 3' flanking untranslated sequence. The deduced amino acid sequence of equine DBH was very similar to the ...
Conformational and thermodynamic characterization of the molten globule state occurring during unfolding of cytochromes-c by weak salt denaturants.
Biochemistry    February 13, 2003   Volume 42, Issue 6 1684-1695 doi: 10.1021/bi0271042
Qureshi SH, Moza B, Yadav S, Ahmad F.The denaturation of bovine and horse cytochromes-c by weak salt denaturants (LiCl and CaCl(2)) was measured at 25 degrees C by observing changes in molar absorbance at 400 nm (Delta epsilon(400)) and circular dichroism (CD) at 222 and 409 nm. Measurements of Delta epsilon(400) and mean residue ellipticity at 409 nm ([theta](409)) gave a biphasic transition for both modes of denaturation of cytochromes-c. It has been observed that the first denaturation phase, N (native) conformation X (intermediate) conformation and the second denaturation phase, X conformation D (denatured) conformation are...
Molecular cloning and expression of equine calcitonin, calcitonin gene-related peptide-I, and calcitonin gene-related peptide-II.
Molecular and cellular endocrinology    February 13, 2003   Volume 199, Issue 1-2 119-128 doi: 10.1016/s0303-7207(02)00289-7
Toribio RE, Kohn CW, Leone GW, Capen CC, Rosol TJ.In this study, we describe the cloning and tissue expression of equine calcitonin (CT), calcitonin-gene related peptide (CGRP)-I, and CGRP-II cDNA. We also describe a novel divergent form of CGRP (CGRP-I). Equine CT has greatest homology (>85%) to human, rat and mouse subgroups of calcitonins. Equine CGRP-I has low homology (80% homology to chicken, human, rat, ovine, swine, and bovine CGRPs. The homology between equine CGRP-I and CGRP-II is low (56%). The high homology of equine CGRP-II and the low homology of equine CGRP-I to CGRP in other species were unexpected findings. Northern blot a...
Identification of a specific antigenic region of the P82 protein of Babesia equi and its potential use in serodiagnosis.
Journal of clinical microbiology    February 8, 2003   Volume 41, Issue 2 547-551 doi: 10.1128/JCM.41.2.547-551.2003
Hirata H, Xuan X, Yokoyama N, Nishikawa Y, Fujisaki K, Suzuki N, Igarashi I.The efficacy of the Be82 gene product fused with glutathione S-transferase (GST/Be82) in an enzyme-linked immunosorbent assay (ELISA) for the diagnosis of Babesia equi infection was reported previously (H. Hirata et al., J. Clin. Microbiol. 40:1470-1474, 2002). However, the ELISA with the GST/Be82 antigen cross-reacted with Babesia caballi-infected horse sera, despite the high rate of detection of B. equi. These results suggested that GST/Be82 has an antigen in common with B. caballi or antigenicity similar to that of B. caballi. In the present study, we constructed a series of five clones wit...
Characterization of the beta2-microglobulin gene of the horse.
Immunogenetics    December 5, 2002   Volume 54, Issue 10 725-733 doi: 10.1007/s00251-002-0514-0
Tallmadge RL, Lear TL, Johnson AK, Guérin G, Millon LV, Carpenter SL, Antczak DF.A clone containing beta(2)-microglobulin (beta(2)-m), the light chain of the major histocompatibility complex class I cell surface molecule, was isolated from an equine bacterial artificial chromosome library. This clone was used as a template for polymerase chain reaction (PCR) and unidirectional sequencing to elucidate the genomic sequence and intron/exon boundaries. We obtained 7,000 bases of sequence, extending from 1,100 nucleotides (nt) upstream of the coding region start through 1,698 nt downstream of the stop codon. The sequence contained regulatory elements in the region upstream of t...
Stabilization of protein by replacement of a fluctuating loop: structural analysis of a chimera of bovine alpha-lactalbumin and equine lysozyme.
Biochemistry    November 13, 2002   Volume 41, Issue 46 13807-13813 doi: 10.1021/bi020360u
Tada M, Kobashigawa Y, Mizuguchi M, Miura K, Kouno T, Kumaki Y, Demura M, Nitta K, Kawano K.Equine lysozyme is a calcium-binding lysozyme and an evolutional intermediate between non-calcium binding c-type lysozyme and alpha-lactalbumin. We constructed a chimeric protein by substituting the fluctuating loop of bovine alpha-lactalbumin with the D-helix of equine lysozyme. The substitution affects the protection factors not only in the fluctuating loop but also in the antiparallel beta-sheet, the A- and B-helices, and the loop between the B-helix and the beta-sheet. Amide protons in these regions of the chimera are more protected from exchange than are those of bovine alpha-lactalbumin....
Induction of hyaluronan synthase 2 by human chorionic gonadotropin in mural granulosa cells of equine preovulatory follicles.
Endocrinology    October 26, 2002   Volume 143, Issue 11 4375-4384 doi: 10.1210/en.2002-220563
Stock AE, Bouchard N, Brown K, Spicer AP, Underhill CB, Doré M, Sirois J.In contrast to other species, the preovulatory rise in gonadotropins in mares causes a remarkable expansion of the entire granulosa cell layer in vivo, suggesting that hyaluronan (HA) synthesis may be regulated in mural granulosa cells in this species. The objectives of this study were to clone and characterize equine hyaluronan synthase 2 (HAS2) and investigate the regulation of its transcript and of HA synthesis in equine follicles during human chorionic gonadotropin (hCG)- induced ovulation. Results showed that the equine HAS2 cDNA contains a 5'-untranslated region of 436 bp, an open readin...
Cloning and molecular characterization of an immunogenic LigA protein of Leptospira interrogans.
Infection and immunity    October 16, 2002   Volume 70, Issue 11 5924-5930 doi: 10.1128/IAI.70.11.5924-5930.2002
Palaniappan RU, Chang YF, Jusuf SS, Artiushin S, Timoney JF, McDonough SP, Barr SC, Divers TJ, Simpson KW, McDonough PL, Mohammed HO.A clone expressing a novel immunoreactive leptospiral immunoglobulin-like protein A of 130 kDa (LigA) from Leptospira interrogans serovar pomona type kennewicki was isolated by screening a genomic DNA library with serum from a mare that had recently aborted due to leptospiral infection. LigA is encoded by an open reading frame of 3,675 bp, and the deduced amino acid sequence consists of a series of 90-amino-acid tandem repeats. A search of the NCBI database found that homology of the LigA repeat region was limited to an immunoglobulin-like domain of the bacterial intimin binding protein of Esc...
Characterization of the NRAMP1 (SLC11A1) gene in the horse (Equus caballus L.).
European journal of immunogenetics : official journal of the British Society for Histocompatibility and Immunogenetics    October 3, 2002   Volume 29, Issue 5 423-429 doi: 10.1046/j.1365-2370.2002.00348.x
Matiasovic J, Kubícková S, Musilová P, Rubes J, Horín P.The complete coding cDNA sequence of the horse NRAMP1 (SLC11A1) gene was determined (GenBank accession number AF354445). The nucleotide sequence of the horse NRAMP1 gene is similar to sequences of this gene in other species. The gene contains 15 exons whose total length of 1,635 bp corresponds to 544 amino acids constituting the resulting putative protein. Hydrophobicity profile analysis of the deduced horse NRAMP1 gene product showed a nearly identical structure with the mouse NRAMP1 protein. The gene was found to be located on the short arm of ECA 6p12-13 by fluorescence in situ hybridizatio...
Protamine P1 sequences in equids: comparison with even-toed animals.
Theriogenology    September 6, 2002   Volume 58, Issue 5 1007-1015 doi: 10.1016/s0093-691x(02)00940-8
Pirhonen A, Linnala-Kankkunen A, Kenney RM, Mäenpää PH.Protamine P1 amino acid sequences were determined from semen samples of the Przewalski horse, donkey, Somali wild ass, Grevy's zebra, and Grant's zebra (odd-toed perissodactyls), and compared with those of the domestic horse. Although the rate of amino acid variation of protamine P1 is known to be among the most rapidly diverging polypeptides, the equid sequences revealed only little variation. The sequence from the Przewalski horse was identical with that from the domestic horse. The other sequences differed from the corresponding sequences of the domestic and Przewalski horses in two positio...
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