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Genetic and functional evaluation of the role of DLL1 in susceptibility to visceral leishmaniasis in India

机译:DLL1在印度内脏Leishmaniaisis易感中的作用遗传和功能评价

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摘要

Chromosome 6q26–27 is linked to susceptibility to visceral leishmaniasis (VL) in Brazil and Sudan. DLL1 encoding the Delta-like 1 ligand for Notch 3 was implicated as the etiological gene. DLL1 belongs to the family of Notch ligands known to selectively drive antigen-specific CD4 T helper 1 cell responses, which are important in protective immune response in leishmaniasis. Here we provide further genetic and functional evidence that supports a role for DLL1 in a well-powered population-based study centred in the largest global focus of VL in India. Twenty-one single nucleotide polymorphisms (SNPs) at PHF10/C6orf70/DLL1/FAM120B/PSMB1/TBP were genotyped in 941 cases and 992 controls. Logistic regression analysis under an additive model showed association between VL and variants at DLL1 and FAM120B, with top associations (rs9460106, OR=1.17, 95%CI 1.01–1.35, P=0.033; rs2103816, OR=1.16, 95%CI 1.01–1.34, P=0.039) robust to analysis using caste as a covariate to take account of population substructure. Haplotype analysis taking population substructure into account identified a common 2-SNP risk haplotype (frequency 0.43; P=0.028) at FAM120B, while the most significant protective haplotype (frequency 0.18; P=0.007) was a 5-SNP haplotype across the interval 5’ of both DLL1 (negative strand) and FAM120B (positive strand) and extending to intron 4 of DLL1. Quantitative RT/PCR was used to compare expression of 6q27 genes in paired pre- and post-treatment splenic aspirates from VL patients (N=19). DLL1 was the only gene to show differential expression that was higher (P<0.0001) in pre- compared to post-treatment samples, suggesting that regulation of gene expression was important in disease pathogenesis. This well-powered genetic and functional study in an Indian population provides evidence supporting DLL1 as the etiological gene contributing to susceptibility to VL at Chromosome 6q27, confirming the potential for polymorphism at DLL1 to act as a genetic risk factor across the epidemiological divides of geography and parasite species.
机译:染色体6Q26-27与巴西和苏丹的内脏Leishmaniaisis(VL)的易感性相关联。编码用于Notch 3的Delta样1配体的DLL1作为生根基因涉及。 DLL1属于已知的陷波配体的家族,以选择性地推动特异性特异性CD4 T辅助1细胞反应,这对LeishManiaisis的保护性免疫应答很重要。在这里,我们提供了进一步的遗传和功能证据,支持在印度最大的全球VL全球焦点的基于良好的基于​​人口的学习中的DLL1作用。在941例和992例对照中,在PHF10 / C6ORF70 / DLL1 / FAM120B / PSMB1 / TBP下进行二十一核苷酸多态性(SNP)。添加剂模型下的逻辑回归分析显示VL1和FAM120B的VL和变体之间的关联,顶部关联(RS9460106,或= 1.17,95%CI 1.01-1.35,P = 0.033; RS2103816,或= 1.16,95%CI 1.01- 1.34,P = 0.039)使用种姓作为协变量的分析稳健,以考虑人口子结构。单倍型分析考虑到群体子结构鉴定在FAM120B中的常见2-SNP风险单倍型(频率为0.43; p = 0.028),而最重要的保护性单倍型(频率为0.18; p = 0.007)是整个间隔5的5-snp单倍型'DLL1(负股)和FAM120B(正股),并延伸到DLL1的内含子4。定量RT / PCR用于将6Q27基因的表达与VL患者(n = 19)的配对后和治疗后处理的脾脏吸气中的表达进行比较。 DLL1是唯一能够显示与后处理样品预先相比(P <0.0001)的差异表达的基因,表明基因表达的调节在疾病发病机制中是重要的。在印度人群体中的这种良好的遗传和功能研究提供了支持DLL1作为染色体6Q27对VL易感性的病因基因的证据,证实了DLL1在地理流行病学分裂中作为遗传危险因素的潜力。寄生虫物种。

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