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Topic:Major Histocompatibility Complex (MHC)

The Major Histocompatibility Complex (MHC) in horses is a group of genes that play a significant role in the immune system by encoding proteins responsible for antigen presentation. These proteins are essential for the recognition of foreign molecules by the immune system, facilitating the differentiation between self and non-self entities. In horses, the MHC is located on equine chromosome 20 and is divided into several regions, including class I and class II, which present antigens to different subsets of T cells. Variability in the MHC genes is associated with susceptibility or resistance to various diseases, influencing immune responses and vaccine efficacy. This page compiles peer-reviewed research studies and scholarly articles that explore the genetic diversity, expression patterns, and implications of MHC in equine health and disease.
Polymorphism of DRA among equids.
Immunogenetics    January 1, 1996   Volume 43, Issue 5 315-317 
Albright-Fraser DG, Reid R, Gerber V, Bailey E.No abstract available
Expression of major histocompatibility complex antigen and timing of invasion by equine chorionic girdle cells cultured on Matrigel.
Biology of reproduction    January 1, 1996   Volume 54, Issue 1 219-223 doi: 10.1095/biolreprod54.1.219
Vagnoni KE, Ginther OJ, Lunn DP.Chorionic girdle cells are a highly invasive subpopulation of trophoblastic cells of the horse conceptus that adhere to the uterine epithelium and begin to invade the endometrium on Days 34-36 (Day 0 = day of ovulation). Just prior to and during invasion (Days 32-36), chorionic girdle cells express high levels of major histocompatibility complex (MHC) I, but expression of this antigen decreases by Days 40-45 and is lost by Day 55. The mechanisms involved in the control of chorionic girdle cell invasion and altered MHCI expression over time are not known. The objective of this study, therefore,...
Demonstration of three DRB loci in a domestic horse family.
Immunogenetics    January 1, 1996   Volume 44, Issue 6 441-445 doi: 10.1007/BF02602805
Fraser DG, Bailey E.Single-strand conformational polymorphism (SSCP) gel electrophoresis and DNA sequencing were used to characterize the second exon of the horse DRB homologue as well as to identify eight new DRB alleles. The SSCP gels presented a complex pattern, with phenotypes exhibiting between 4 and 13 bands. The DRB SSCP patterns were studied for two families (6 to 13 bands per pattern). For both families, the patterns showed simple Mendelian inheritance. The polymerase chain reaction products from two individuals possessing homozygous major histocompatibility complex (MHC) alleles by descent were cloned a...
Presence of CD4+ and CD8+ T cells and expression of MHC class I and MHC class II antigen in horses with Borna disease virus-induced encephalitis.
Brain pathology (Zurich, Switzerland)    July 1, 1995   Volume 5, Issue 3 223-230 doi: 10.1111/j.1750-3639.1995.tb00598.x
Bilzer T, Planz O, Lipkin WI, Stitz L.Tissues from 9 horses and 1 donkey suffering from natural Borna disease were investigated immunomorphologically. Lymphocytic inflammatory reactions and increased expressions of MHC class I and class II antigen were found in the brain as well as in the trigeminal and olfactory system. Perivascular inflammatory infiltrates were dominated by CD4+ T cells, whereas the majority of CD8+ T cells were disseminated intraparenchymally. No evidence of inflammation was found in the retina. Borna disease virus proteins and nucleic acids were present in the hippocampus, thalamus and medulla oblongata in all...
At least four MHC class I genes are transcribed in the horse: phylogenetic analysis suggests an unusual evolutionary history for the MHC in this species.
European journal of immunogenetics : official journal of the British Society for Histocompatibility and Immunogenetics    June 1, 1995   Volume 22, Issue 3 249-260 doi: 10.1111/j.1744-313x.1995.tb00239.x
Ellis SA, Martin AJ, Holmes EC, Morrison WI.Nineteen horse MHC class I specificities have been serologically identified previously at a single locus (ELA-A), and two other specificities appear to be coded at other loci. Biochemical studies indicate that there are at least two expressed loci. In order to establish the number of transcribed horse MHC class I genes, we made a cDNA library from a heterozygous animal (ELA-A3/A7), and screened for positive clones using a bovine class I probe. More than 200 class I clones were isolated in this way, and so far seven unique full length sequences have been identified. All of the sequences are pre...
The equine endometrial cup reaction: a review.
The veterinary quarterly    March 1, 1995   Volume 17, Issue 1 21-29 doi: 10.1080/01652176.1995.9694525
Koets AP.The function of eCG in equine pregnancy is far from clear but it has become evident that eCG has little or no FSH activity in the horse and is therefore probably not responsible for the secondary ovulations. eCG does have luteotrophic activity and it could play a role in the resurgence of the primary corpus luteum (1,7,44). Some evidence exists that the receptor population on the equine gonads is heterogenous in a way that makes it possible to distinguish eCG from eLH, resulting in different post-receptor effects (7). There is also evidence that eCG itself is heterogenous, both in glycosylatio...
Equine sarcoids. A clinical and epidemiological study in relation to equine leucocyte antigens (ELA).
Acta veterinaria Scandinavica    January 1, 1995   Volume 36, Issue 2 223-236 doi: 10.1186/BF03547691
Broström H.Associations between clinical parameters of sarcoids and the equine leucocyte antigen system (ELA) were analysed for 120 Swedish horses. Median age of affected horses was 5.2 years, and the majority presented with solitary tumors between 2 and 5 cm in diameter and ventral abdomen was a predilection site. Clinical signs first appeared at a median age of 3.5 years, and sarcoids at different locations first appeared at different ages. Lesions at different sites differed in size, and multiple tumors, early onset, long duration, and older age all had an association with large size. Clinical manifes...
Major histocompatibility complex class I-restricted cytotoxic T-lymphocyte responses in horses infected with equine herpesvirus 1.
Journal of virology    January 1, 1995   Volume 69, Issue 1 606-612 doi: 10.1128/JVI.69.1.606-612.1995
Allen G, Yeargan M, Costa LR, Cross R.An experimental system that permits sensitive and reproducible detection of equine herpesvirus 1 (EHV-1)-specific cytotoxic T-lymphocyte (CTL) activity in the horse was developed. Peripheral blood mononuclear cells (PBMC) collected from immune horses were restimulated in vitro by culture with live EHV-1. Cytotoxic activity against virus-infected, pokeweed mitogen-stimulated lymphoblast targets was assessed in a 4-h 51Cr release assay. The optimal conditions for in vitro stimulation of equine memory CTLs and for preparation of EHV-1-infected target cells expressing viral antigens were systemati...
An immunohistochemical study of an equine B-cell lymphoma.
Journal of comparative pathology    November 1, 1994   Volume 111, Issue 4 445-451 doi: 10.1016/s0021-9975(05)80102-1
Asahina M, Murakami K, Ajito T, Goryo M, Okada K.The tissues of an 8-year-old thoroughbred castrated male horse with equine lymphoma were examined immunohistochemically. Neoplastic masses were observed in the mediastinum, mesenteric lymph nodes, gastric mucosa and serosa, liver capsule, and spleen capsule with associated lymph nodes. Histopathologically, the neoplastic cells were seen to consist predominantly of a mixture of well differentiated small and large types. Immunohistochemically, the small lymphoid cells were MHC class IIlow+ and PanT- and the large lymphoid cells were MHC class IIhigh+ and PanT-. These findings revealed that the n...
Report of the First International Workshop on Equine Leucocyte Antigens, Cambridge, UK, July 1991.
Veterinary immunology and immunopathology    July 1, 1994   Volume 42, Issue 1 3-60 doi: 10.1016/0165-2427(94)90088-4
Kydd J, Antczak DF, Allen WR, Barbis D, Butcher G, Davis W, Duffus WP, Edington N, Grünig G, Holmes MA.The First International Workshop on Equine Leucocyte Antigens was organized and convened for the purposes of identifying immunologically relevant cell surface molecules of equine leucocytes and establishing a system of nomenclature for those molecules. Participating members of the workshop represented the majority of laboratories world-wide engaged in the tasks of production and characterization of equine leucocyte and lymphocyte markers using monoclonal antibodies. The workshop confirmed the identification of several equine CD molecules described previously by individual laboratories, and in ...
Down-regulation followed by re-expression of equine CD4 molecules in response to phorbol myristate acetate.
Veterinary immunology and immunopathology    July 1, 1994   Volume 42, Issue 1 71-82 doi: 10.1016/0165-2427(94)90090-6
Zhang CH, Grünig G, Davis W, Antczak DF.The regulatory effects of phorbol myristate acetate (PMA) on the expression of the CD4 molecule on horse T cells were investigated. On both peripheral blood lymphocytes and thymocytes, PMA resulted in a rapid and transient down-regulation of equine CD4 expression, but had no such effect on the surface expression of equine CD5, CD8 or major histocompatibility complex (MHC) class I and class II molecules. Over 75% of the surface CD4 molecules per cell were lost after a 4 h exposure to PMA at 37 degrees C. The regulation of equine CD4 expression induced by PMA was temperature dependent and revers...
Variation in expression of MHC class II antigens on horse lymphocytes determined by MHC haplotype.
Veterinary immunology and immunopathology    July 1, 1994   Volume 42, Issue 1 103-114 doi: 10.1016/0165-2427(94)90093-0
Barbis DP, Bainbridge D, Crump AL, Zhang CH, Antczak DF.A panel of monoclonal antibodies was used to characterize the expression of equine Major Histocompatibility Complex (MHC) class II antigens on lymphocytes of horses of different MHC types. MHC class II antigen expression was compared between adult horses and foals, and the level of expression of MHC class II antigens on horse T cell subpopulations was also determined. Peripheral blood lymphocytes (PBL) from young and adult healthy horses of different MHC haplotypes were labeled with the antibodies and assayed by single- and two-color immunofluorescence flow cytometry. A variation in the expres...
Studies on the frequency and associations of equine leucocyte antigens in sarcoid and summer dermatitis.
Animal genetics    June 1, 1994   Volume 25 Suppl 1 75-80 doi: 10.1111/j.1365-2052.1994.tb00406.x
Lazary S, Marti E, Szalai G, Gaillard C, Gerber H.The equine leucocyte antigen (ELA) types and the clinical diagnosis for equine sarcoid and summer dermatitis were evaluated in 2026 horses representing five breeds. Data were analysed in unrelated animals and in family material. In the case of equine sarcoid, a strong association was observed between the ELA class II DW13 antigen and its effect on Swiss (cP < 0.001), French (cP < 0.0001) and Irish (cP < 0.01) Warmblood horses. The class I antigen A3 occurred more frequently in sarcoid-affected French horses (cP < 0.001). These results confirm our earlier findings (Gerber et al. 1988). Among Fr...
MHC Class II positive cells and T cells in the equine endometrium throughout the oestrous cycle.
Veterinary immunology and immunopathology    May 1, 1994   Volume 41, Issue 1-2 55-72 doi: 10.1016/0165-2427(94)90057-4
Frayne J, Stokes CR.The quantity and distribution of MHC Class II positive cells and T cells in the equine endometrium was investigated throughout the oestrous cycle. Significantly more MHC Class II positive cells were detected in the stratum compactum and stratum spongiosum of endometria from naturally cycling mares during the follicular than during the luteal phase of the oestrous cycle. Significantly more T cells were also detected in the stratum compactum, but not stratum spongiosum, of these mares during the follicular phase. Furthermore, there was a marked increase in the number of MHC Class II positive cel...
Major histocompatibility complex-restricted CD8+ cytotoxic T lymphocytes from horses with equine infectious anemia virus recognize Env and Gag/PR proteins.
Journal of virology    March 1, 1994   Volume 68, Issue 3 1459-1467 doi: 10.1128/JVI.68.3.1459-1467.1994
McGuire TC, Tumas DB, Byrne KM, Hines MT, Leib SR, Brassfield AL, O'Rourke KI, Perryman LE.Cytotoxic T lymphocytes (CTL) can control some viral infections and may be important in the control of lentiviruses, including human immunodeficiency virus type 1. Since there is limited evidence for an in vivo role of CTL in control of lentiviruses, dissection of immune mechanisms in animal lentiviral infections may provide needed information. Horses infected with equine infectious anemia virus (EIAV) a lentivirus, have acute plasma viremia which is terminated in immunocompetent horses. Viremic episodes may recur, but most horses ultimately control infection and become asymptomatic carriers. ...
Molecular cloning and characterization of horse DQB cDNA.
Immunogenetics    January 1, 1994   Volume 40, Issue 6 458 doi: 10.1007/BF00177831
Szalai G, Antczak DF, Gerber H, Lazary S.No abstract available
Molecular cloning and characterization of horse DQA cDNA.
Immunogenetics    January 1, 1994   Volume 40, Issue 6 457 doi: 10.1007/BF00177830
Szalai G, Antczak DF, Gerber H, Lazary S.No abstract available
Horse cDNA clones encoding two MHC class I genes.
Immunogenetics    January 1, 1994   Volume 40, Issue 2 163 doi: 10.1007/BF00188182
Barbis DP, Maher JK, Stanek J, Klaunberg BA, Antczak DF.No abstract available
Rare alleles, MHC and captive breeding.
EXS    January 1, 1994   Volume 68 187-204 doi: 10.1007/978-3-0348-8510-2_16
Hedrick PW, Miller PS.In recent years, more detailed genetic information has become available for individuals of endangered species in captive breeding programs. There have been suggestions that this information be used to identify rare alleles, particularly those at the MHC, that can be subsequently selected for captive breeding programs. First, we summarize the current information on the MHC relevant to conservation genetics, so that such a possible breeding program is seen in a proper perspective. For example, very few specific alleles at the MHC have been identified as selectively advantageous, even though ther...
Viruses, tumours and the MHC.
Equine veterinary journal    September 1, 1993   Volume 25, Issue 5 395 doi: 10.1111/j.2042-3306.1993.tb02980.x
Gerber H, Antczak DF.No abstract available
DNA sequence analysis of serologically detected ELA class II haplotypes at the equine DQ beta locus.
Animal genetics    June 1, 1993   Volume 24, Issue 3 187-190 doi: 10.1111/j.1365-2052.1993.tb00285.x
Szalai G, Bailey E, Gerber H, Lazary S.The genetic diversity at the ELA DQ beta locus was investigated using polymerase chain reaction and DNA sequencing. Based upon serological methods 16 class II homozygous animals were selected and their genomic DNA was used. A DQ beta gene from an equine cDNA library was also sequenced. Our methodology and the similarity between the genomic and the cDNA sequences suggest that the studied locus is expressed on equine lymphocytes. In the predicted amino acid sequence the most extensive variation is located at residues 56-60. The pattern of these five amino acids is strongly correlated to the sero...
Risk factors associated with equine motor neuron disease: a possible model for human MND.
Neurology    May 1, 1993   Volume 43, Issue 5 966-971 doi: 10.1212/wnl.43.5.966
Mohammed HO, Cummings JF, Divers TJ, Valentine B, de Lahunta A, Summers B, Farrow BR, Trembicki-Graves K, Mauskopf A.Equine motor neuron disease (EMND), a newly described neurodegenerative disease, bears a striking resemblance to progressive muscular atrophy (PMA) in humans. We present a comparison of the equine and human diseases and the results of a case-control study conducted to identify intrinsic factors associated with EMND. Cases included all horses with a confirmed diagnosis of EMND diagnosed in the United States since 1985 (32 cases). Controls included horses diagnosed with either cervical stenotic myelopathy, equine degenerative myeloencephalopathy, or protozoan myelitis at the Veterinary Teaching ...
An immunohistological study of MHC class II expression and T lymphocytes in the endometrium of the mare.
Equine veterinary journal    March 1, 1993   Volume 25, Issue 2 120-124 doi: 10.1111/j.2042-3306.1993.tb02920.x
Watson ED, Dixon CE.The distribution of T lymphocytes and of cells bearing MHC Class II antigens in the endometrium of the mare was studied using an avidin-biotin-peroxidase staining method. The cells within the endometrium which expressed MHC Class II were macrophages, lymphocytes, monocytes, dendritic cells, epithelial cells and endothelial cells. MHC Class II expression increased significantly (P < 0.05) in the luminal epithelium and tended (P = 0.0573) to increase in the subepithelial layers during oestrus. Numbers of T lymphocytes did not differ between oestrus and dioestrus. MHC Class II expression and T...
Linkage studies between the Tcp-1, Tcp-10, and Mhc-Eqca-A loci in the horse.
Immunogenetics    January 1, 1993   Volume 38, Issue 5 359-362 doi: 10.1007/BF00210478
Langemeier JL, Bailey E, Henney PJ.No abstract available
Equine T-lymphocyte MHC II expression: variation with age and subset.
Veterinary immunology and immunopathology    January 1, 1993   Volume 35, Issue 3-4 225-238 doi: 10.1016/0165-2427(93)90036-4
Lunn DP, Holmes MA, Duffus WP.This paper describes the characteristics of a monoclonal antibody (CVS10) that reacts with an equine leukocyte antigen. On the basis of tissue distribution and biochemical characteristics, this antigen is equine MHC II. The equine MHC II antigen was found on a large subset of T-lymphocytes in addition to all B-lymphocytes, as has been reported previously. In addition MHC II was found to be present on a large proportion of both the mutually exclusive equine T-lymphocyte subpopulations which express either the equine homologues of CD4, or CD8. In a study of changes in equine MHC II expression wi...
Developmental regulation of class I major histocompatibility complex antigen expression by equine trophoblastic cells.
Differentiation; research in biological diversity    December 1, 1992   Volume 52, Issue 1 69-78 doi: 10.1111/j.1432-0436.1992.tb00501.x
Donaldson WL, Oriol JG, Plavin A, Antczak DF.Between days 36-38 of pregnancy equine trophoblastic cells of the chorionic girdle migrate and form endometrial cups. Just prior to invasion, the chorionic girdle cells express high levels of polymorphic, paternally inherited, major histocompatibility complex (MHC) class I antigens. Their descendents, the mature, invasive trophoblast cells of the endometrial cups, however, express low or undetectable levels of MHC class I antigens by day 44 of pregnancy. Experiments with MHC compatible pregnancies, the study of residual chorionic girdle cells that had failed to invade the endometrium and remai...
Induction of lymphokine-activated killer cells of equine origin: specificity for equine target cells.
Veterinary immunology and immunopathology    April 1, 1992   Volume 32, Issue 1-2 25-36 doi: 10.1016/0165-2427(92)90066-y
Hormanski CE, Truax R, Pourciau SS, Folsom RW, Horohov DW.The in vitro stimulation of peripheral blood mononuclear cells (PBMC) with interleukin 2 (IL-2) results in the development of potent cytotoxic effector cells, referred to as lymphokine-activated killer (LAK) cells. LAK cells are capable of lysing a wide variety of autologous, allogeneic and xenogeneic tumor cells. The exact mechanism of target cell recognition by LAK cells remains unknown. LAK cell activity has been reported for a variety of domesticated species except the horse. We report here that IL-2-stimulated equine PBMC, which fail to lyse either human or murine tumor cell lines, exhibi...
Langerhans’ cells in equine cutaneous papillomas and normal skin.
Veterinary pathology    March 1, 1992   Volume 29, Issue 2 152-160 doi: 10.1177/030098589202900208
Hamada M, Takechi M, Itakura C.Langerhans' cells (LC) were investigated immunohistochemically and electron microscopically in normal equine epidermis and 133 equine cutaneous papillomas experimentally induced in five 2-year-old Thoroughbred horses. Class II major histocompatibility complex antigen-positive dendritic LC were found in the normal epidermis and ultrastructurally had the characteristic Birbeck's granules. In the developing phase of the papillomas, LC were significantly decreased in number and size, indicative of a hypofunctional state. In the regressing phase of the papillomas, LC were markedly increased in numb...
On the genetic basis of equine allergic diseases: II. Insect bite dermal hypersensitivity.
Equine veterinary journal    March 1, 1992   Volume 24, Issue 2 113-117 doi: 10.1111/j.2042-3306.1992.tb02794.x
Marti E, Gerber H, Lazary S.The horses studied were of the Swiss Warmblood breed and most were ELA-typed to assess a possible association of dermal hypersensitivity to insect bites with the major histocompatibility complex. Firstly, the occurrence of the condition was examined in 304 half-siblings sired by six stallions (A to F). Fourteen cases of dermal hypersensitivity were recognized and all were in the 153 offspring of Stallions C, E and F. Most animals of this group were also investigated for chronic hypersensitivity bronchitis: none of the sires displayed clinical signs of dermal hypersensitivity, but Stallions D, ...
Pinealitis coincident with recurrent uveitis: immunohistochemical studies.
Current eye research    January 1, 1992   Volume 11 Suppl 147-151 doi: 10.3109/02713689208999525
Kalsow CM, Dwyer AE, Smith AW, Nifong TP.Although experimental models of autoimmune uveitis predict pinealitis coincident with uveitis, there is no direct evidence of pineal pathology accompanying a human uveitis. Horses with naturally occurring uveitis are a potential source of eye and pineal tissues that are not available from human patients with active uveitis. We have observed pinealitis in a mare with equine recurrent uveitis. By immunohistochemistry we demonstrated immunoglobulin and MHC Class II antigen on infiltrating and resident cells of eye and pineal gland. These results support the relevance of the animal models and sugg...