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At least 19 recordsLinked to original sources

HLA-DRB1*15:01 Is Associated and Linked With Kawasaki Disease, With DRB1*14:01 Conferring Risk to Coronary Artery Lesions: Case-Control and Family-Based Studies.

Kawasaki disease (KD), also known as mucocutaneous lymph node syndrome, is a leading cause of vasculitis in children aged <&#x2009;5&#x2009;years. The HLA complex has been investigated for its association with KD since 1978 without conclusive results due to limitations such as small sample sizes. This study aimed to evaluate the associations and genetic linkage between HLA-DRB1 and KD, as well as its complications. The case-control and family-based studies enrolled 795 patients with KD and 946 healthy controls. Of the 795 patients, 180 trios were included. Genotypes of HLA-DRB1 were identified by sequence-based typing according to the International ImMunoGeneTics database. Allele frequencies were calculated using PyPop 7.0. The transmission/disequilibrium test (TDT) was used to verify the genetic linkage between HLA-DRB1 and KD. HLA-DRB1*15:01 was significantly associated with KD (OR, 1.44, Pc&#x2009;=&#x2009;0.03) and with KD without CALs (OR&#x2009;=&#x2009;1.46,&#x2009;Pc&#x2009;=&#x2009;0.04). HLA-DRB1*14:01 was a risk factor for KD with CALs (OR&#x2009;=&#x2009;2.47,&#x2009;Pc&#x2009;=&#x2009;0.004) whereas HLA-DRB1*12:02 was a protective factor against CALs (OR&#x2009;=&#x2009;0.49, Pc&#x2009;=&#x2009;0.01). In the family-based study, HLA-DRB1*15:01 demonstrated significant overtransmission to KD patients (OR&#x2009;=&#x2009;3.35; 95% CI, 2.20-5.78; Pc&#x2009;=&#x2009;1.19E-06) and to KD patients without CALs (OR&#x2009;=&#x2009;4.42; 95% CI, 2.59-10.08; Pc&#x2009;=&#x2009;6.24E-06). The overtransmission remained significant in male KD patients (OR&#x2009;=&#x2009;2.81; 95% CI, 1.68-5.58; Pc&#x2009;=&#x2009;0.003), and in male KD patients without CALs (OR&#x2009;=&#x2009;3.22; 95% CI, 1.69-8.84; Pc&#x2009;=&#x2009;0.02). Our study identified significant&#x2009;associations between HLA-DRB1*15:01, *14:01, and *12:02 with KD. The association between HLA-DRB1*15:01 and KD was further verified by TDT, indicating a genetic linkage between the HLA-DRB1 locus and KD susceptibility.

Humans

Protective Effects of HLA-DRB1*08:03 and HLA-DQA1*01:03 Alleles for Alloanti-D Immunisation in the Southern Chinese D-Negative Pregnant Women.

Alloanti-D is still one of the most common causes of severe hemolytic disease of the fetus and newborn in China, as rhesus immunoglobulin (RhIG) prophylaxis is not a routine practice throughout China. HLA plays an important role in the susceptibility to alloimmunisation against red blood cell antigens. This study was designed to identify susceptible and protective HLA alleles for alloanti-D immunisation after pregnancy in the southern Chinese D-negative (D-) pregnant women. In this study, a cohort of 116 true D- pregnant females who had not received prophylactic RhIG prophylaxis, had two or more pregnancies, and did not produce alloanti-D (non-responders group), and 122 true D- pregnant women with alloanti-D immunisation (D responders group), were enrolled. HLA genotyping (HLA-A, -B, -C, -DRB1, -DPA1, -DPB1, -DQA1, and -DQB1) was performed by third generation sequencing with nanopore technology. The phenotypic frequencies of HLA alleles were compared between the D responders group and non-responders group. The results showed that the phenotypic frequencies of HLA-DRB1*08:03 and HLA-DQA1*01:03 alleles in the D responders group were significantly lower than those in the non-responders group: 1.7% versus 13.1% [Odds Ratio (OR): 0.116, 95% CI: 0.026-0.518; pc&#x2009;=&#x2009;0.029] for HLA-DRB1*08:03 allele, and 5.2% versus 18.8% (OR: 0.235, 95% CI: 0.092-0.600, pc&#x2009;=&#x2009;0.019) for HLA-DQA1*01:03 allele. Our findings indicated that the presence of HLA-DRB1*08:03 or HLA-DQA1*01:03 alleles can be considered as a protective factor for alloanti-D immunisation in the southern Chinese D- pregnant women.

Humans

Selective control of HLA-DRB1 and HLA-DQA1 transcription through DR/DQ super enhancer microelements.

MHC-II gene expression requires promoter-proximal and distal organizing elements. A super enhancer located between the HLA-DR and -DQ genes was dissected into five microdomains (regions A-E) to define its mechanism of action. Regions A and B were required for maximal expression of HLA-DQA1. Region A facilitated HLA-DQA1 expression and substituted for region B in its absence, as well as mediating longer-range interactions with distal CTCF sites. Region D modulated HLA-DRB1 through specific 3D chromatin interactions, whereas a local insulator element (XL9) broadly interacted with the SE. Through deletion of HLA-DRB1 proximal-promoter elements, HLA-DQ expression increased by co-opting interactions with region D, indicating that competition between microelements regulates the absolute levels of MHC-II genes. Together, these data define an additional layer of control for MHC-II genes encoded in one of the most polymorphic and disease-associated regions of the human genome.

CP: immunology

Comparative HLA Alleles and Haplotypes of Bone Marrow Volunteers Recruiting in the Asian and European Parts of Russia.

HLA typing of 9126 haematopoietic stem cell donors living in the Asian and European parts of Russia and identifying themselves as Russians was performed using NGS technology in 2-field resolution at the HLA-A, HLA-B, HLA-C, HLA-DRB1, and HLA-DQB1 loci. The study of donors in the Asian part of Russia disclosed 77 alleles at the HLA-A locus, 111 at the HLA-B locus, 58 at the HLA-C locus, 54 at the HLA-DRB1 locus, and 26 at the HLA-DQB1 locus. Donors of the European part of Russia are characterised by the following allelic diversity: 87 alleles at the HLA-A locus, 136 at the HLA-B locus, 72 at the HLA-C locus, 67 at the HLA-DRB1 locus, and 37 at the HLA-DQB1 locus. The most common five-locus haplotype in both populations is HLA-A*01:01&#x2009;~&#x2009;HLA-C*07:01&#x2009;~&#x2009;HLA-B*08:01&#x2009;~&#x2009;HLA-DRB1*03:01&#x2009;~&#x2009;HLA-DQB1*02:01. Throughout the study, 26 new alleles were revealed.

Humans

Type I Interferon Signature is Associated With Lung Disease, Drug-Associated Immune Reactions, and Genetic Variation in Interferon-Linked Pathways in Still Disease.

OBJECTIVE: To evaluate the relationship across type I interferon (IFN-I)-stimulated gene (ISG) expression, Still disease, and the development of lung disease (LD) and drug-associated immune reactions (DAIR) to interleukin-1 (IL-1) and/or IL-6 inhibitors. METHODS: Whole blood ISG expression was quantified by NanoString array. ISG-28 scores were calculated in consecutive patients with Still or Still-like disease. Exome sequencing with family-based variant prioritization identified candidate genes harboring rare candidate causative variants. Lists of candidate genes were subjected to functional enrichment analysis. RESULTS: Among 57 patients (32 children, 25 adults), 16 had elevated ISG-28 scores. This group exhibited higher prevalence of LD (0.44 vs 0.1, P&#xa0;=&#xa0;0.007) and DAIR (0.63 vs 0.17, P&#xa0;=&#xa0;0.003) and lower IL-6 inhibitor use (0 vs 0.25, P&#xa0;=&#xa0;0.048) compared to others. No significant differences were found in the rates of macrophage activation syndrome, active disease, elevated IL-18, or current IL-1 inhibition. The combination of HLA-DRB1*15 with high ISG-28 scores is associated with LD and DAIR with high specificity, whereas absence of both biomarkers had high negative predictive value. Candidate genes from high ISG-28 individuals were enriched in IFN-related pathways, including autophagy, IFN-I production, toll-like receptor signaling, macrophage activation, cytoskeletal organization, and responses to stress. CONCLUSION: High IFN-I expression correlates with LD and DAIR in Still disease, linked to rare genetic variation in immune pathways. Combining high ISG-28 with HLA-DRB1*15 significantly improves post hoc stratification of patients for these complications. If prospectively validated, these findings may guide molecular risk assessment and targeted therapies, including IFN-I directed treatments in Still disease with IFN-I signature.

Humans

Distinct HLA Associations for Antibody Multireactivity With Citrulline-Containing Type II Collagen Epitopes Versus More Limited Antibody Reactivity With Citrulline-Containing IgG Epitopes in Rheumatoid Arthritis.

OBJECTIVE: Anticitrullinated protein antibodies (ACPAs) in rheumatoid arthritis (RA) can be promiscuous, with cross-reactive binding to many antigens containing short motifs, or private with little cross-reactivity. Also, ACPA reactivity patterns differ among patients with RA, including for motif-containing epitopes in important self-antigens like collagen and IgG (bound by RA-associated rheumatoid factors [RFs]), with limited understanding of the underlying mechanism. The objective of this study was to determine if HLA alleles associate with ACPA reactivity patterns. METHODS: For 100 ACPA+RF+ participants with RA, serum IgG binding was quantified by enzyme-linked immunosorbent assay to 10 citrulline-containing peptides derived from Type II collagen and IgG1 (nine with motifs), and HLA loci were genotyped. Also, antibody and serum multireactivity were evaluated. HLA alleles present differentially in RA participants with high versus low IgG binding to specific peptides, as well as with multireactivity versus limited reactivity were identified by Fisher's exact test. RESULTS: Serum IgG multireactivity for citrulline-glycine motif-containing collagen peptides was high, at least partially due to promiscuous antibodies. HLA-DQA1*01:02 was present in more participants with anticitrullinated collagen antibodies and multireactive sera. In contrast, serum multireactivity was low for IgG1-derived peptides due at least in part to more private antibodies. Shared epitope-containing HLA-DRB1*04:01 was present more frequently in participants with RA-associated RFs irrespective of the citrulline-serine motif and less frequently in participants with anticitrullinated collagen antibodies. Several HLA alleles associated with specific antibody reactivities. CONCLUSION: Different HLA alleles may contribute to the different reactivity patterns of promiscuous anticitrullinated collagen antibodies and more private RA-associated RFs.

Humans

When Neurodevelopment Meets Autoimmunity: Pemphigus Foliaceus in Rett Syndrome Expands the Clinical Spectrum-A Case Report.

Rett syndrome (RTT, OMIM 312750) is a complex multisystem neurodevelopmental disorder. Evidence suggests that RTT may have an autoimmune component and inflammatory activation. However, the autoimmune manifestations remain poorly described. Pemphigus foliaceus is a debilitating autoimmune blistering condition caused by IgG autoantibodies that target desmoglein-1 (Dsg1), resulting in widespread skin blistering and lesions. We report a case of pemphigus foliaceus in a 20-year-old female with RTT and discuss its clinical implications. Clinical data obtained from electronic health records were extracted and reviewed. Genetic testing was performed to identify the specific methyl-CpG-binding protein 2 (MECP2) mutation and on an expanded panel of 55 genes associated with pemphigus foliaceus and related blistering disorders. The individual had pemphigus foliaceus, which required immunosuppression, intravenous immunoglobulin (IVIg) therapy, and Rituximab. The disease trajectory was complicated by infections, aspiration pneumonia, and hypoxic cardiac arrest. There was progressive functional decline, and disease control was difficult to achieve, with frequent flares. Genetic testing confirmed a heterozygous pathogenic MECP2 variant (NM_001110792.1:c.952C>T; p.(Arg318Cys)). HLA genotyping identified alleles consistent with the HLA-DRB1*04:02-HLA-DQA1*03:01-HLA-DQB1*03:02 (DR4/DQ8) haplotype. Furthermore, genetic analysis identified a heterozygous DSG1 variant rs12967407. This study reports the first case of pemphigus foliaceus in RTT, expanding the clinical spectrum of RTT beyond its neurodevelopmental phenotype. The DR4/DQ8 haplotype, previously associated with pemphigus susceptibility, supports a background of genetic susceptibility in this individual. No causal association between RTT and pemphigus foliaceus can be inferred from this single case. Rather, this case demonstrates that a rare autoimmune disorder such as pemphigus foliaceus can co-occur with a pathogenic MECP2 mutation. The coexistence of a genetic and autoimmune disease can result in a more complex clinical presentation and treatment course. The case further emphasises the need for increased vigilance in identifying new and emerging systemic pathology alongside RTT.

Humans