Analyze Diet

Topic:Molecular biology

Molecular biology in horses involves the study of molecular processes and genetic mechanisms that underpin equine physiology and health. This field encompasses the analysis of DNA, RNA, proteins, and other biomolecules to understand gene expression, genetic variation, and cellular functions in horses. Techniques such as genomic sequencing, gene expression profiling, and molecular diagnostics are employed to explore topics like hereditary diseases, performance traits, and immune responses in equines. This page assembles peer-reviewed research studies and scholarly articles that investigate the molecular biology of horses, focusing on genetic research, molecular techniques, and their applications in equine science.
Comparative analysis of the IgG heavy chain carbohydrate peptide.
Journal of molecular biology    December 28, 1967   Volume 30, Issue 3 555-558 doi: 10.1016/0022-2836(67)90369-5
Howell JW, Hood L, Sanders BG.No abstract available
The reaction of carbon monoxide with horse hemoglobin in solution, in erythrocytes, and in crystals.
The Journal of biological chemistry    December 25, 1967   Volume 242, Issue 23 5762-5770 
Parkhurst LJ, Gibson QH.No abstract available
[The antiviral action of interferon in a tissue culture].
Veterinariia    December 1, 1967   Volume 44, Issue 12 25-27 
Pyrikova AP, Iakovleva LS, Korabel'nikova NI, Balezina TI, Fadeeva LL.No abstract available
[Partial sequence of amino acids of globin from horse myoglobin].
Bulletin de la Societe de chimie biologique    November 10, 1967   Volume 49, Issue 10 1409-1410 
Dautrevaux M, Boulanger Y, Han KK, Moschetto Y, Biserte G.No abstract available
[Demonstration of the difference in structure between horse and rabbit antibodies].
Bulletin de l'Academie nationale de medecine    November 7, 1967   Volume 151, Issue 27 534-539 
Tayeau F, Faure F, Jouzier E.No abstract available
The effect of phytohemagglutinin on ribonucleic acid synthesis and histone acetylation in equine leukocytes.
The Journal of cell biology    November 1, 1967   Volume 35, Issue 2 477-482 doi: 10.1083/jcb.35.2.477
Pogo BG, Allfrey VG, Mirsky AE.No abstract available
The structural environment of the tryptophanyl residue of horse heart ferricytochrome c.
The Journal of biological chemistry    October 25, 1967   Volume 242, Issue 20 4801-4805 
Stellwagen E, Van Rooyan S.No abstract available
Purification and properties of horse pancreatic ribonucleases.
Journal of biochemistry    October 1, 1967   Volume 62, Issue 4 430-438 doi: 10.1093/oxfordjournals.jbchem.a128686
Ishihara T, Irie M, Ukita T.No abstract available
Identity of structure of horse deoxy- and oxyhaemoglobin after reaction with bis(N-maleidomethyl)ether.
Journal of molecular biology    September 28, 1967   Volume 28, Issue 3 451-454 doi: 10.1016/s0022-2836(67)80094-9
Simon SR, Konigsberg WH, Bolton W, Perutz MF.No abstract available
Molecular weight distributions of milk fat triglycerides from seven species.
Journal of lipid research    September 1, 1967   Volume 8, Issue 5 473-478 
Breckenridge WC, Kuksis A.The triglyceride compositions of the milk fats of man, dog, guinea pig, cow, sheep, goat, and horse were compared by gas-liquid chromatography of the intact triglycerides and of the butyl esters of the component fatty acids. The milk fats of man, dog, and guinea pig, which were largely made up of long-chain fatty acids, showed a common pattern with major contributions made by the glycerides with 48-54 acyl carbon atoms. The milk fats of cow, sheep, and goat, which were rich in short-chain acids, showed significant proportions of triglycerides with 28-54 acyl carbon atoms. Horse milk, which con...
[Biochemical polymorphism and the detection of paternity in horses].
Schweizer Archiv fur Tierheilkunde    July 1, 1967   Volume 109, Issue 7 378-385 
Baer A.No abstract available
Equine anti-hapten antibody. IV. The effect of polyalanylation on affinity.
Immunochemistry    July 1, 1967   Volume 4, Issue 4 259-267 doi: 10.1016/0019-2791(67)90187-5
Karush F, Sela M.No abstract available
Location of the heme in horse heart ferricytochrome c by x-ray diffraction.
The Journal of biological chemistry    June 25, 1967   Volume 242, Issue 12 3015-3018 
Dickerson RE, Kopka ML, Weinzierl J, Varnum J, Eisenberg D, Margoliash E.No abstract available
Purification and crystallization of horse prothrombin.
Biochemical and biophysical research communications    May 25, 1967   Volume 27, Issue 4 505-510 doi: 10.1016/s0006-291x(67)80015-9
Miller KD, Phelan AW.No abstract available
[Kinetic study of the inhibition of horse serum cholinesterase by certain steroid alkaloids of Solanum]. Faucher A, Monnet R.No abstract available
Indole nature of enterochromaffin substance.
Nature    April 8, 1967   Volume 214, Issue 5084 196-197 doi: 10.1038/214196a0
Solcia E, Sampietro R.No abstract available
[Tissue antigens of the digestive tract in man and animals. II. Antigens of the colon].
Pathologie et biologie    April 1, 1967   Volume 15, Issue 7 359-367 
Zweibaum A, Halpern B, Veyre C, Oriol-Palou R.No abstract available
A comparison of the resistance of human and horse ferrihemoglobin to acid denaturation.
The Journal of biological chemistry    March 25, 1967   Volume 242, Issue 6 1294-1301 
Steinhardt J, Hiremath CB.Many of the stability characteristics of horse ferrihemo-globin (Hb+) in acid solutions, such as pH dependence and susceptibility to stabilization by iron ligands, are shared by human ferrihemoglobin, but striking differences between the two proteins exist. The most noticeable is the much greater rate of denaturation of the human protein at all pH values. Other differences include a shift to higher pH in the equi-librium between native and acid-denatured forms, differ-ences in the temperature at which the temperature effect on the equilibrium-pH curve reverses, a complete absence in human Hb+ ...
Studies of heme-proteins. I. Dissociation equilibria of horse hemoglobin.
Archives of biochemistry and biophysics    February 1, 1967   Volume 118, Issue 2 434-447 doi: 10.1016/0003-9861(67)90372-4
Mizukami H, Lumry R.No abstract available
Release of human and horse fibrinopeptides.
Acta chemica Scandinavica    January 1, 1967   Volume 21, Issue 7 1879-1886 doi: 10.3891/acta.chem.scand.21-1879
Teger-Nilsson AC.No abstract available
[The activating effect of tetramethylammonium ions and acetylcholine on horse serum choline esterase].
Biokhimiia (Moscow, Russia)    January 1, 1967   Volume 32, Issue 1 3-12 
Brestkin AP, Brik IL.No abstract available
Occurrence and distribution of 5-hydroxytryptamine in some tissues of bovine and equine foetuses.
Research in veterinary science    January 1, 1967   Volume 8, Issue 1 1-5 
Bertaccini G, De Caro G, Cheli R, Mori L.No abstract available
Studies on the occurrence of adenosine 5′-tetraphosphate in horse skeletal muscle.
Bulletin de l'Academie polonaise des sciences. Serie des sciences biologiques    January 1, 1967   Volume 15, Issue 1 1-6 
Jaroszewicz K.No abstract available
[Heterogeneity of horse spleen ferritin. I. Comparison of “free” apoferritin and alfa-ferritin].
Seikagaku. The Journal of Japanese Biochemical Society    January 1, 1967   Volume 39, Issue 1 23-28 
Shinjyo S, Kume M, Danjo T.No abstract available
[On the hemoglobin polymorphism in the zebra].
Zentralblatt fur Veterinarmedizin. Reihe A    January 1, 1967   Volume 14, Issue 1 91-92 
Schmid DO, Osterhoff DR.No abstract available
Genetic variation of horse hemoglobin.
Hereditas    January 1, 1967   Volume 58, Issue 3 385-392 doi: 10.1111/j.1601-5223.1967.tb02163.x
Braend M.No abstract available
Comparison of the structure of the immunoglobulins from horse serum.
The Biochemical journal    July 1, 1966   Volume 100, Issue 1 63-68 doi: 10.1042/bj1000063
Weir RC, Porter RR.A study of the chemical structure of the horse immunoglobulins IgG and IgA(T) has shown that the amino acid contents of the peptide chains are very similar. These globulins differ most markedly in the products of papain digestion. IgG gives 3.5s products, whereas IgA(T) gives a 5s fraction and smaller components. This difference appears to be associated with the presence of an additional easily reducible disulphide bond in the Fd fragment of the heavy chain. There is two to three times as much carbohydrate in IgA(T) as in IgG. In both, this is in the heavy chain and in IgA(T) more than half is...
Comparative studies on the soluble protein fractions of bovine, equine, porcine and ovine adrenal chromaffin granules.
The Biochemical journal    July 1, 1966   Volume 100, Issue 1 6C-7C doi: 10.1042/bj1000006c
Helle KB.No abstract available.
Progesterone biosynthesis by equine granulosa cells growing in tissue culture.
Nature    June 18, 1966   Volume 210, Issue 5042 1266 doi: 10.1038/2101266a0
Channing CP.OUR knowledge of the pathways of steroid biosynthesis in the ovary has been gained mainly by incubations of ovaries in vitro1,2. The tissues incubated have contained numerous cell types: granulosa cells, theca interna cells, stromal cells, interstitial cells, and sometimes luteal cells. Possibly such mixtures of two or more different cell types are able to secrete hormones that one cell type cannot secrete by itself3–9. Furthermore, during such incubations in vitro an exchange of precursors and products between different cell types may be facilitated because of breakdown of naturally occurri...
Electrophoretic behavior of mammalian-type cytochromes c.
The Journal of biological chemistry    April 10, 1966   Volume 241, Issue 7 1473-1477 
Barlow GH, Margoliash E.No abstract available