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Resistance of Fc receptor- deficient mice to fatal glomerulonephritis.

Immune complex-mediated inflammation is a common mechanism of various autoimmune diseases. Glomerulonephritis (GN) is one of these diseases, and the main mechanism of the induction of GN has been unclear. We examined the contribution of Fc receptors in the induction of nephrotoxic GN by establishing and analyzing mice deficient in the Fc receptor gamma chain (FcRgamma). Whereas all wild-type mice died from severe glomerulonephritis with hypernitremia by administration of anti-glomerular basement membrane (GBM) antibodies, all FcRgamma-deficient mice survived. Histologically, wild-type mice showed glomerular hypercellularity and thrombotic changes, whereas the renal tissue in FcRgamma-deficient mice was almost intact. Deposition of anti-GBM antibody as well as complement components in the GBM were equally observed in both wild-type and knockout mice. These results demonstrate that the triggering of this type of glomerulonephritis is completely dependent on FcR+ cells.

Animals↗

Tim17p regulates the twin pore structure and voltage gating of the mitochondrial protein import complex TIM23.

The TIM23 complex mediates import of preproteins into mitochondria, but little is known of the mechanistic properties of this translocase. Here patch clamping reconstituted inner membranes allowed for first time insights into the structure and function of the preprotein translocase. Our findings indicate that the TIM23 channel has "twin pores" (two equal sized pores that cooperatively gate) thereby strikingly resembling TOM, the translocase of the outer membrane. Tim17p and Tim23p are homologues, but their functions differ. Tim23p acts as receptor for preproteins and may largely constitute the preprotein-conducting passageway. Conversely depletion of Tim17p induces a collapse of the twin pores into a single pore, whereas N terminus deletion or C terminus truncation results in variable sized pores that cooperatively gate. Further analysis of Tim17p mutants indicates that the N terminus is vital for both voltage sensing and protein sorting. These results suggest that although Tim23p is the main structural unit of the pore Tim17p is required for twin pore structure and provides the voltage gate for the TIM23 channel.

Membrane Transport Proteins↗

Lack of the transcriptional coactivator OBF-1 prevents the development of systemic lupus erythematosus-like phenotypes in Aiolos mutant mice.

Here we show that mice lacking the zinc finger transcription factor Aiolos develop the symptoms of human systemic lupus erythematosus (SLE), which is characterized by the production of anti-dsDNA Ab and immune complex-mediated glomerulonephritis. This finding indicates that normal Aiolos function is necessary to maintain immune homeostasis and suppress the development of systemic autoimmune disease and implicates Aiolos as a possible candidate gene for SLE. Interestingly, Aiolos-null mice can no longer mount autoimmune reactions and completely fail to develop SLE when they are deficient for the B cell-specific transcription coactivator OBF-1. The lack of OBF-1 reverses several Aiolos mutant mouse phenotypes, such as B cell hyperproliferation, high expression of activation marker on B cells, and spontaneous germinal center formation. Unexpectedly, B cell development at the immature B cell stage is severely impaired in the bone marrow of Aiolos/OBF-1 double-deficient mice, demonstrating the key role of these factors in the transition from pre-B to immature B cells. Our results indicate that B cells play a crucial role in the development of SLE in Aiolos mutant mice and might be useful for the strategy of SLE treatment.

Animals↗

Serum IgG antibodies to C1q in hypocomplementemic urticarial vasculitis syndrome.

Urticaria, angioedema, and arthritis are cardinal features of hypocomplementemic urticarial vasculitis syndrome (HUVS). Considered to be an immune complex-mediated disorder, HUVS has been differentiated from systemic lupus erythematosus (SLE), based on its clinical manifestations and the C1q precipitin (C1q-p) reaction, which is manifested as gel precipitation of C1q by a small percentage of HUVS IgG molecules. This phenomenon has been attributed to an Fc region abnormality, and the responsible IgG molecules are said to possess C1q-p activity. We purified IgG from 4 HUVS patients and confirmed that HUVS IgG contains C1q binding activity. F(ab')2 fragments from these patients also bound to C1q, as measured by 2 different C1q binding methods at physiologic ionic strength; HUVS IgG Fc fragments did not bind to C1q. Preincubation of HUVS F(ab')2 fragments with antibody to human F(ab')2 prevented subsequent binding to C1q. We conclude that IgG antibodies to C1q are present in HUVS serum, and it is likely that these antibodies are C1q-p. Because the clinical manifestations of HUVS and the presence of anti-C1q antibodies have been described in patients with SLE, our findings support the concept that HUVS is an autoimmune syndrome related to SLE.

Complement Activating Enzymes↗

Induction of abortive and productive proliferation in resting human T lymphocytes via CD3 and CD28.

How the T-cell receptor (TCR)/CD3 complex mediates positive as well as negative signals for T-cell regulation is not fully understood. We have previously described the induction of anergy in resting human T lymphocytes after mitogenic, high-dose CD3 triggering with monoclonal antibodies. Here we report the concomitantly occurring cell death to be largely caused by apoptosis, which mainly affects the CD4+ T-helper population. Because cell death becomes detectable after initial cell proliferation, it appears that a high-dose CD3 stimulus constitutes a negative signal for resting T cells leading to an 'abortive proliferation' that is followed by anergy and/or apoptosis of the cells. In contrast, if initial proliferation is induced by a low dose of anti-CD3 in the presence of an accessory signal via the CD28 receptor, anergy and cell death are markedly reduced and 'productive proliferation' may occur. Productive proliferation is characterized by an increased secretion of various cytokines measured (interleukin (IL)-2, IL-4, IL-6, IL-10, tumour necrosis factor-alpha (TNF-alpha), interferon-gamma (IFN-gamma)). A low-dose submitogenic CD3 stimulus induced neither anergy nor cell death, supporting the view that negative CD3 signalling requires proliferation of resting cells.

Apoptosis↗

Differential regulation of murine B cell Fc gamma RII expression by CD4+ T helper subsets.

The murine B cell FcR for IgG (Fc gamma RII) is a membrane glycoprotein reported to mediate inhibition of B cell activation and differentiation. We show that IL-4 inhibits the enhanced expression of Fc gamma RII by LPS-stimulated B cells. This activity is completely reversed by anti-IL-4 mAb and is specific, in that multiple other lymphokines tested do not exert a similar effect. This effect of IL-4 is apparent by day 1 of culture, although maximal inhibition occurs on day 4 at a concentration of 500 U/ml. The IL-4-induced inhibition of enhanced Fc gamma RII expression by LPS stimulation observed on day 4 of culture is associated with a significant reduction in the steady state level of Fc gamma RII beta gene-specific mRNA. IFN-gamma which inhibits many of the effects of IL-4 on B cells, does not reverse the IL-4-induced inhibition of Fc gamma RII membrane expression nor the levels of beta gene-specific mRNA. Fc gamma RII expression is significantly increased in B cells stimulated with antigen-specific, CD4+ T cell clones of the Th1 type (i.e., IL-2 and IFN-gamma-producing). By contrast, three different Th2 clones (i.e., IL-4-producing) fail to stimulate an increase in Fc gamma RII levels. Anti-IL-4 mAb significantly enhanced Fc gamma RII expression by Th2-stimulated B cells indicating that IL-4 was the active, inhibitory, substance produced by the Th2 cells. Supernatants from stimulated Th2 clones inhibited the enhanced expression of Fc gamma RII by LPS-stimulated B cells and this activity was completely reversed by anti-IL-4 mAb. By contrast, supernatants from stimulated Th1 clones further enhanced Fc gamma RII expression by LPS-stimulated B cells. The differential regulation of B cell Fc gamma RII expression by Th subsets may play an important role in the regulation of humoral immunity by altering the sensitivity of B cells to IgG immune complex-mediated inhibition of B cell activation and differentiation in vivo.

Animals↗

Phosphorylation and glycosylation of nucleoporins.

The nuclear pore complex mediates macromolecular transport between the nucleus and cytoplasm. Many nuclear pore components (nucleoporins) are modified by both phosphate and O-linked N-acetylglucosamine (O-GlcNAc). Among its many functions, protein phosphorylation plays essential roles in cell cycle progression. The role of O-GlcNAc addition is unknown. Here, levels of nucleoporin phosphorylation and glycosylation during cell cycle progression are examined. Whereas nuclear pore glycoproteins are phosphorylated in a cell-cycle-dependent manner, levels of O-GlcNAc remain constant. The major nucleoporin p62 can be phosphorylated in vitro by protein kinase A and glycogen synthase kinase (GSK)-3alpha but not by cyclin B/cdc2 or GSK-3beta. The consensus sites of these kinases resemble sites which can be glycosylated by O-GlcNAc transferase. These data are consistent with a model that O-GlcNAc limits nucleoporin hyperphosphorylation during M-phase and hastens the resumption of regulated nuclear transport at the completion of cell division.

Acetylglucosamine↗

Antibody response and antibody affinity maturation in cats with experimental proliferative immune complex glomerulonephritis.

An experimental model of proliferative glomerulonephritis (GN) in the cat, which closely resembles human proliferative forms of GN, has been used to study the role of antibody and antibody affinity in the development of immune complex-mediated renal disease. The serum IgG and IgM antibody response to antigen, average antibody affinity (avidity) and affinity heterogeneity of the IgG and IgM populations was assessed at varying times after commencement of chronic immunization with the antigen, human serum albumin (HSA), by enzyme immunoassay. Cats could be classified according to whether they were "low", "intermediate" or "high" IgG responders, by quantification of serum IgG values. Cats with the lowest serum IgG values failed to develop glomerulonephritis. However, there was no relationship between actual IgG values and the severity of the induced disease. In contrast to IgG, there was no division of cats into low or high IgM anti-HSA responders. Again, cats with the lowest IgM values failed to develop GN, but, more interestingly, a late, marked increase in serum IgM anti-HSA occurred only in cats that developed clinical signs of GN (anterior uveitis and nephrotic syndrome). Maturation of average, functional IgG affinity (avidity) for HSA following chronic immunization was clearly demonstrated for all cats. At the end of the experiment, all cats had IgG of high affinity for HSA and the average affinity heterogeneity of the IgG populations was less than in measurements taken earlier. Values of IgG affinity at the end of the experiment were very similar both in cats which developed GN and in those which remained clinically, biochemically and pathologically normal. In contrast to IgG antibody, some cats developed IgM of increased affinity, whilst others produced antibody of reduced affinity, following chronic immunization. There was no correlation between the development of disease and the production of either low or high affinity IgM antibody. Data indicated that an alteration in IgM affinity occurred at a late stage, as serum IgM levels increased, in cats which progressed to develop GN. These findings suggested that an increase in both serum IgG and IgM anti-HSA values, in particular IgM, was associated with the development of a more severe immune complex renal disease in these cats. Although there was no evidence that differences in the average affinity of either the IgG or IgM antibody populations for HSA, were associated with the development of disease, the increase in IgM values was also accompanied by a concomitant alteration in IgM affinity for antigen.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Early cartilage degradation in cationic immune complex arthritis in mice: relative role of interleukin 1, the polymorphonuclear cell (PMN) and PMN elastase.

OBJECTIVE: To determine the relative role of interleukin 1 (IL-1), polymorphonuclear cell (PMN) and PMN elastase in early cartilage degradation in cationic immune complex mediated arthritis (ICA) in mice. ICA is characterized by early production of IL-1, pronounced influx of PMN and marked cartilage degradation within one day. METHODS: IL-1 was neutralized by polyclonal antibodies against IL-1 alpha and IL-1 beta, given shortly before arthritis induction. The role of PMN was studied in mice made neutropenic by whole body irradiation (750 rad). The effect of elastase was examined in beige mice with PMN deficient in elastase. RESULTS: Neutralizing IL-1 during arthritis induction reduced PMN infiltration significantly and diminished cartilage degradation by 50%. In neutropenic mice, joint inflammation was virtually absent and cartilage proteoglycan loss was abolished. Finally arthritis was induced in beige mice. Although elastase appeared to be the dominant cartilage degrading factor in vitro, we found no difference in cartilage degradation in arthritic joints of beige mice and their normal littermates. CONCLUSIONS: Our data suggest that IL-1 is a crucial factor regulating PMN influx in ICA. The PMN are involved in cartilage degradation but a direct destructive role (e.g., by elastase) seems unlikely.

Animals↗

Combined heterozygous deficiency of the classical complement pathway proteins C2 and C4.

Genetic deficiencies of components of the classical pathway of complement activation are associated with an increased risk for the development of autoimmune and immune complex-mediated diseases. In the present study we report on the molecular and clinical features associated with combined heterozygous C4 and C2 deficiency in 15 individuals investigated within six families. Approximately 30% of the individuals manifested SLE or another autoimmune condition. Heterozygous C2 deficiency was related to a 28-bp deletion in the C2 gene (C2 deficiency type I), in most cases within the HLA-A25 B18 C2Q0 BfS C4A4B2 DR2 haplotype. Among 13 partial C4-deficient haplotypes transmitted, 8 carried C4A*Q0 alleles and 5 C4B*Q0 alleles. In seven cases the C4A*Q0 alleles were associated with a deletion of the C4A/CYP21P genes within the HLA-B8 C2C BfS C4AQ0B1 DR3 haplotype. In three cases, the C4B*Q0 allele was associated with a deletion of the C4B/CYP21P genes within the HLA-B18 C2C BfF1 C4A3BQ0 DR3 haplotype. In the other cases, C4A*Q0 or C4B*Q0 was dependent on as yet uncharacterized defects in the C4 gene or in C4 gene expression. In view of the relatively high frequency of heterozygous C4 deficiency in the normal Caucasian population, the expected frequency of the combined deficiency should approximate 0.001.

Adult↗

Requirement of leucine-rich repeats of glycoprotein (GP) Ibalpha for shear-dependent and static binding of von Willebrand factor to the platelet membrane GP Ib-IX-V complex.

The platelet glycoprotein (GP) Ib-IX-V complex mediates adhesion to von Willebrand factor (vWf) in (patho)physiologic thrombus formation. The vWf-binding site on GP Ib-IX-V is within the N-terminal 282 residues of GP Ibalpha, which consist of an N-terminal flanking sequence (His-1-Ile-35), 7 leucine-rich repeats (Leu-36-Ala-200), a C-terminal flank (Phe-201-Gly-268), and a sulfated tyrosine sequence (Asp-269-Glu-282). We have used mammalian cell expression of canine-human chimeras of GP Ibalpha, corresponding to precise structural boundaries, to demonstrate the first specific requirement for individual leucine-rich repeats for binding of vWf either induced by a modulator, ristocetin, or under hydrodynamic flow. Implicit in this approach was that the GP Ibalpha chimeras retained a functional conformation, a supposition confirmed by analyzing restoration of function to reversed human-canine chimeras and demonstrating that all chimeras bound vWf activated by botrocetin, a modulator that is indiscriminate between species. Leucine-rich repeats 2, 3, and 4 of GP Ibalpha were identified as being critical for vWf adhesion to GP Ib-IX-V.

Animals↗

Three cases of factor I deficiency: the effect of treatment with plasma.

Three patients with congenital factor I deficiency associated with different clinical manifestations are described. Case 1 had one single episode of meningococcal disease, case 2 experienced four episodes of meningococcal disease and several other severe infections, whereas case 3, without known predisposition for infections, died from a subacute immune-complex mediated syndrome, resembling polyarteritis nodosa. Family studies in cases 1 and 2 revealed healthy individuals with factor I concentrations below the lower reference limit, indicating heterozygous carriers. The pedigree analyses were consistent with autosomal codominant inheritance. The estimated minimal frequency of the deficient gene was 0.002. Pedigree analysis was not performed in case 3 but the father and sister was found to be probable heterozygous carriers. Cases 2 and 3 were treated with infusions of freshly frozen plasma (FFP) (40 and 27 ml/kg bodyweight) during acute illness and the immunochemical complement profile was monitored. Following plasma infusion factor I was cleared from the circulation with a half-life of 29-45 h. The plasma infusions induced generation of C3d and C4d, increase in native factor B and C3 concentrations and disappearance of Ba split products. Native C3 and C4 increased to normal concentrations and remained normal till 16 days after the plasma infusions, whereas native factor B decreased to preinfusion levels 8 days after plasma infusion. It is concluded, that congenital factor I deficiency can present with different clinical manifestations and may be more prevalent than hitherto anticipated. Furthermore, infusion of blood products containing small amounts of functional factor I can partly normalize the complement profile, with a more prolonged effect on C3 and C4 than on factor B metabolism.

ABO Blood-Group System↗

Autoimmune renal disease and tumour necrosis factor beta gene polymorphism.

The genes encoding tumour necrosis factors (TNF) are located within the major histocompatibility complex. Since TNF may be involved in the pathogenesis of autoimmune disease the purpose of the present study was to investigate TNF beta gene polymorphism in two types of immune complex mediated glomerulonephritis, IgA nephropathy (IgAN) and idiopathic membranous glomerulonephritis (IMN) and to compare them with IDDM and healthy controls. DNA was studied by Southern-blot hybridisation methods using Nco I digestion and a TNF beta probe; two alleles were detected size 5.5 kb and 10.5 kb. In healthy controls (n = 107), 9% were 5.5 homozygotes, 47% heterozygotes and 44% 10.5 homozygotes. The corresponding figures in IMN (n = 51) were 21.5%, 61% and 17.5% (p = 0.002), in IDDM (n = 42) 24%, 50% and 26% (p = 0.027) and in IgAN (n = 77) 2.5%, 65% and 32.5% (p = 0.025). The increase in 5.5 homozygotes in both IMN and IDDM was found to be due to an increased frequency of the haplotype A1-B8-TNF beta 5.5-DR3 seen in both these diseases; whereas in IgAN the increased frequency of the 10.5 kb allele can be explained by an association of a Taq 1DQB1-T2 allele with the TNF beta 10.5 allele. These results demonstrate an association of TNF beta gene polymorphism with IMN and IgAN and confirm the associations found in IDDM. Although these disease associations can be explained by linkage disequilibrium with extended MHC haplotypes, a direct role of genetically determined TNF production in the etiology of these diseases remains to be excluded.

Alleles↗

The alpha1 helix-beta13 strand spanning Leu214 to Val229 of platelet glycoprotein Ibalpha facilitates the interaction with von Willebrand factor: evidence from characterization of the epitope of monoclonal antibody AP1.

The glycoprotein Ib-IX-V (GP Ib-IX-V) complex mediates platelet binding to von Willebrand factor (VWF) through its largest polypeptide, GP Ibalpha. Of the many GP Ibalpha monoclonal antibodies described, AP1 is of particular interest because it blocks static VWF binding induced by 2 modulators, ristocetin and botrocetin, and platelet adhesion to VWF surfaces under flow. We mapped the AP1 binding site to a region encompassing Arg218 to Tyr228, comprising the alpha1 helix and beta13 strand defined by the GP Ibalpha crystal structure. AP1 binding absolutely required Arg218, Asp222, and Glu225. We evaluated the ability of cells expressing mutants of this region to bind VWF under static conditions in the presence of modulators, and to attach to and roll on a VWF matrix under flow. These data indicate that 2 regions within the sequence Arg218 to Tyr228 have important roles in VWF binding: the alpha1 helix has a regulatory role and the beta turn and beta13 strand bind VWF directly. Despite this, the only effect of a synthetic peptide corresponding to Leu214 to Val229 was to slightly increase the rolling velocity of GP Ibalpha-expressing Chinese hamster ovary (CHO) cells on VWF. This region thus appears to be more important for maintaining the regional conformation of GP Ibalpha, thereby facilitating the interaction with VWF.

Amino Acid Sequence↗

A nucleoporin is required for induction of Ca2+ spiking in legume nodule development and essential for rhizobial and fungal symbiosis.

Nuclear-cytoplasmic partitioning and traffic between cytoplasmic and nuclear compartments are fundamental processes in eukaryotic cells. Nuclear pore complexes mediate transport of proteins, RNAs and ribonucleoprotein particles in and out of the nucleus. Here we present positional cloning of a plant nucleoporin gene, Nup133, essential for a symbiotic signal transduction pathway shared by Rhizobium bacteria and mycorrhizal fungi. Mutation of Nup133 results in a temperature sensitive nodulation deficient phenotype and absence of mycorrhizal colonization. Root nodules developing with reduced frequency at permissive temperatures are ineffective and electron microscopy show that Rhizobium bacteria are not released from infection threads. Measurement of ion fluxes using a calcium-sensitive dye show that Nup133 is required for the Ca2+ spiking normally detectable within minutes after application of purified rhizobial Nod-factor signal molecules to root hairs. Localization of NUP133 in the nuclear envelope of root cells and root hair cells shown with enhanced yellow fluorescent protein fusion proteins suggests a novel role for NUP133 nucleoporins in a rapid nuclear-cytoplasmic communication after host-plant recognition of symbiotic microbes. Our results identify a component of an intriguing signal process requiring interaction at the cell plasma membrane and at intracellular nuclear and plastid organelle-membranes to induce a second messenger.

Alleles↗

Monocytes/macrophages rather than PMN are involved in early cartilage degradation in cationic immune complex arthritis in mice.

We investigated the involvement of polymorphonuclear granulocytes (PMN) and monocytes in cartilage degradation in immune complex-mediated arthritis (ICA). ICA induced with lysozyme-antilysozyme in the murine knee joint is characterized by a major influx of PMNs followed by monocytes and marked cartilage proteoglycan (PG) depletion develops within 2 days. Around 60% of 35S-prelabeled PG is lost at day 2. Influx of cells was manipulated using interleukin-1 (IL-1) receptor antagonist (IL-1ra) or antibodies to adhesion molecules. Cellular infiltrate was analyzed on hematoxylin-stained joint sections. Early systemic treatment with IL-1ra highly reduced PMN influx, whereas monocyte influx was hardly diminished. PG loss was not significantly reduced, declining from 62% in controls to 47% in IL-1ra-treated mice. Total blockade of cell influx was found after intravenous treatment with monoclonal antibodies 5C6 (anti-CD11b/CD18:anti-CR3) or NIMP.R14 (25-30 kDa protein mainly present on PMN) and PG loss was reduced to 5-10%. A similar reduction was observed after prior depletion of circulating PMNs with total body irradiation. Because amounts of IL-1 produced in leukopenic and control arthritic joints are comparable, this suggests that IL-1 is only marginally involved in PG loss in the first phase of ICA. This study indicates that monocytes rather than PMN might be involved in PG loss in this form of arthritis, either directly or by local activation of synovial layer cells of the joint.

Animals↗

SEM1, a homologue of the split hand/split foot malformation candidate gene Dss1, regulates exocytosis and pseudohyphal differentiation in yeast.

The exocyst is an essential multiprotein complex mediating polarized secretion in yeast. Here we describe a gene, SEM1, that can multicopy-suppress exocyst mutants sec3-2, sec8-9, sec10-2, and sec15-1. SEM1 is highly conserved among eukaryotic species. Its human homologue, DSS1, has been suggested as a candidate gene for the split hand/split foot malformation disorder. SEM1 is not an essential gene. However, its deletion rescued growth of the temperature-sensitive exocyst mutants sec3-2, sec8-9, sec10-1, and sec15-1 at the restrictive temperature. Cell fractionation showed that Sem1p is mainly cytosolic but also associates with the microsomal fraction. In linear sucrose gradients, Sem1p cosedimented with the exocyst component Sec8p. In diploid cells that normally do not form pseudohyphae (S288C background), deletion of SEM1 triggered pseudohyphal growth. This phenotype was abolished after reintroduction of either SEM1 or the mouse homologue Dss1 into the cells. In diploids that have normal capacity for pseudohyphal growth (Sigma1278b background), deletion of SEM1 enhanced filamentous growth. The functionality of both SEM1 and Dss1 in a differentiation process in yeast suggests that Dss1 indeed could be the gene affected in the split hand/split foot malformation disorder. These results characterize SEM1 as a regulator of both exocyst function and pseudohyphal differentiation and suggest a unique link between these two cellular functions in yeast.

Amino Acid Sequence↗

Haplotype analysis of the DQA genes in sheep: evidence supporting recombination between the loci.

The ovine class II major histocompatibility complex mediates specific immune responses to exogenous antigens in sheep. A number of ovine class II loci have been identified, and most of them appear to be polymorphic. In this study we investigated the DQA1 locus of 520 sheep and the DQA2 locus of over 40,000 sheep, finding 12 sequences and 22 sequences, respectively, using DQA1- and DQA2-specific PCR primers. Among the DQA2 sequences, 2 groups of sequences can be found: those that share homology with the DQA2 sequences from closely related species and those that cluster with bovine DQA3 and DQA4 sequences and have been called DQA2-like in sheep. The occurrence of these DQA2-like sequences was once again confirmed to correspond with the absence of detectable DQA1 sequences, suggesting that they are found at the same location as DQA1. Within the sheep studied, 37 haplotypes could be detected, 23 being haplotypes of DQA1 and DQA2 sequences and with frequencies ranging from 0.38 to 9.27%, and 14 being haplotypes of DQA2 and DQA2-like sequences and with frequencies ranging from 0.03 to 14.53%. We discovered 12 DQA1-DQA2 combinations that were derived from 5 DQA1 alleles and 4 DQA2 alleles, and 8 DQA2-DQA2-like combinations from 5 DQA2 alleles and 2 DQA2-like sequences. The frequency of occurrence of recombined DQA1-DQA2 sequences and recombined DQA2-DQA2-like sequences is similar, once again suggesting the DQA2-like sequences are found at the DQA1 locus.

Alleles↗