SLC15A4 中的一个非编码变异可调节与红斑狼疮易感性有关的增强子活性和溶酶体脱酸。

Frontiers in lupus Pub Date : 2023-01-01 Epub Date: 2023-11-22 DOI:10.3389/flupu.2023.1244670
Manish Kumar Singh, Guru Prashad Maiti, HariKrishna Reddy-Rallabandi, Mehdi Fazel-Najafabadi, Loren L Looger, Swapan K Nath
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引用次数: 0

摘要

系统性红斑狼疮(SLE)是一种复杂的自身免疫性疾病,具有很强的遗传基础。尽管在 SLC15A4 基因附近发现了几个单核苷酸多态性(SNPs),这些单核苷酸多态性在多个人群中与系统性红斑狼疮显著相关,但具体的致病 SNPs 和导致疾病易感性的分子机制尚不清楚。为了填补这一空白,我们利用生物信息学、表达定量性状位点(eQTLs)和三维染色质相互作用分析,在 SLC15A4 的一个活跃的内含子增强子中发现了一个可能的功能变异体 rs35907548。通过荧光素酶报告实验和染色质免疫沉淀(ChIP)-qPCR,我们在不同的细胞系中观察到了 rs35907548 对等位基因特异性增强子的显著影响。如 eQTLs 和染色体构象捕获(3C)-qPCR 所示,rs35907548 风险等位基因 T 与调控活性和靶基因表达的增加有关。后者揭示了 rs35907548 增强子与 SLC15A4、GLTLD1 和一个未定性的 lncRNA 启动子之间的长程染色质相互作用。通过在HL60早幼粒细胞中对该基因座进行CRISPR/Cas9基因敲除(KO),验证了增强子与启动子之间的相互作用和表达效果。KO 细胞也显示出明显的溶酶体内 pH 调节失调。总之,我们的数据表明,rs35907548 风险等位基因会影响细胞生理的多个方面,并可能直接导致系统性红斑狼疮。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Non-Coding Variant in SLC15A4 Modulates Enhancer Activity and Lysosomal Deacidification Linked to Lupus Susceptibility.

Systemic lupus erythematosus (SLE) is a complex autoimmune disease with a strong genetic basis. Despite the identification of several single nucleotide polymorphisms (SNPs) near the SLC15A4 gene that are significantly associated with SLE across multiple populations, specific causal SNP(s) and molecular mechanisms responsible for disease susceptibility are unknown. To address this gap, we employed bioinformatics, expression quantitative trait loci (eQTLs), and 3D chromatin interaction analysis to nominate a likely functional variant, rs35907548, in an active intronic enhancer of SLC15A4. Through luciferase reporter assays followed by chromatin immunoprecipitation (ChIP)-qPCR, we observed significant allele-specific enhancer effects of rs35907548 in diverse cell lines. The rs35907548 risk allele T is associated with increased regulatory activity and target gene expression, as shown by eQTLs and chromosome conformation capture (3C)-qPCR. The latter revealed long-range chromatin interactions between the rs35907548 enhancer and the promoters of SLC15A4, GLTLD1, and an uncharacterized lncRNA. The enhancer-promoter interactions and expression effects were validated by CRISPR/Cas9 knock-out (KO) of the locus in HL60 promyeloblast cells. KO cells also displayed dramatically dysregulated endolysosomal pH regulation. Together, our data show that the rs35907548 risk allele affects multiple aspects of cellular physiology and may directly contribute to SLE.

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