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Allele-specific long-distance regulation dictates IL-32 isoform switching and mediates susceptibility to HIV-1

机译:等位基因特异性的长距离调节决定了IL-32亚型的转换并介导了对HIV-1的敏感性

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摘要

We integrated data obtained from HIV-1 genome-wide association studies with T cell–derived epigenome data and found that the noncoding intergenic variant rs4349147, which is statistically associated with HIV-1 acquisition, is located in a CD4+ T cell–specific deoxyribonuclease I hypersensitive region, suggesting regulatory potential for this variant. Deletion of the rs4349147 element in Jurkat cells strongly reduced expression of interleukin-32 (IL-32), approximately 10-kb upstream, and chromosome conformation capture assays identified a chromatin loop between rs4349147 and the IL-32 promoter validating its function as a long-distance enhancer. We generated single rs4349147-A or rs4349147-G allele clones and demonstrated that IL-32 enhancer activity and interaction with the IL-32 promoter are strongly allele dependent; rs4349147 −/A cells display reduced IL-32 expression and altered chromatin conformation as compared to rs4349147 G/− cells. Moreover, RNA sequencing demonstrated that rs4349147 G/− cells express a lower relative ratio of IL-32α to non-α isoforms than rs4349147 −/A cells and display increased expression of lymphocyte activation factors rendering them more prone to infection with HIV-1. In agreement, in primary CD4+ T cells, both treatment with recombinant IL-32γ (rIL-32γ) but not rIL-32α, and exogenous lentiviral overexpression of IL-32γ or IL-32β but not IL-32α resulted in a proinflammatory T cell cytokine environment concomitant with increased susceptibility to HIV infection. Our data demonstrate that rs4349147-G promotes transcription of non–IL-32α isoforms, generating a proinflammatory environment more conducive to HIV infection. This study provides a mechanistic link between a HIV-associated noncoding DNA variant and the expression of different IL-32 isoforms that display discrete anti-HIV properties.
机译:我们将从HIV-1全基因组关联研究获得的数据与T细胞衍生的表观基因组数据进行了整合,发现与HIV-1采集相关的非编码基因间变体rs4349147位于CD4 + T细胞特异的脱氧核糖核酸酶I超敏区,提示该变体具有调节潜力。在Jurkat细胞中删除rs4349147元件会大大降低白细胞介素32(IL-32)的表达,大约在上游10 kb,并且染色体构象捕获测定法鉴定了rs4349147与IL-32启动子之间的染色质环,证实了其功能很长。 -距离增强器。我们生成了单个rs4349147-A或rs4349147-G等位基因克隆,并证明了IL-32增强子活性和与IL-32启动子的相互作用是强烈的等位基因依赖性。与rs4349147 G /-细胞相比,rs4349147-/ A细胞显示出降低的IL-32表达并改变了染色质构象。此外,RNA测序表明,与rs4349147-/ A细胞相比,rs4349147 G /-细胞表达的IL-32α与非α同种型的相对比率较低,并且淋巴细胞激活因子的表达增加,使其更易于感染HIV-1。一致的是,在原代CD4 + T细胞中,既可以用重组IL-32γ(rIL-32γ)处理,也可以不使用rIL-32α处理,并且外源慢病毒过表达IL-32γ或IL-32β但不使用IL -32α会导致促炎性T细胞细胞因子环境,并增加对HIV感染的敏感性。我们的数据表明,rs4349147-G可促进非IL-32α亚型的转录,从而产生更有利于HIV感染的促炎环境。这项研究提供了一个与HIV相关的非编码DNA变异体和不同的IL-32同工型表达之间的机械联系,这些IL-32同工型具有离散的抗HIV特性。

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