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微小RNA、单核苷酸多态性与年龄相关性黄斑变性

miRNAs, single nucleotide polymorphisms (SNPs) and age-related macular degeneration (AMD).

作者信息

SanGiovanni John Paul, SanGiovanni Peter M, Sapieha Przemysław, De Guire Vincent

机构信息

Laboratory of Membrane Biochemistry and Biophysics, Section on Nutritional Neuroscience, NIAAA/NIH, Bethesda, MD.

Black Duck Software, Burlington, MA.

出版信息

Clin Chem Lab Med. 2017 May 1;55(5):763-775. doi: 10.1515/cclm-2016-0898.

Abstract

Advanced age-related macular degeneration (AAMD) is a complex sight-threating disease of public health significance. Micro RNAs (miRNAs) have been proposed as biomarkers for AAMD. The presence of certain single nucleotide polymorphisms (SNPs) may influence the explanatory value of these biomarkers. Here we present findings from an integrated approach used to determine whether AAMD-associated SNPs have the capacity to influence miRNA-mRNA pairing and, if so, to what extent such pairing may be manifested in a discrete AAMD transcriptome. Using a panel of 8854 SNPs associated with AAMD at p-values ≤5.0E-7 from a cohort of >30,000 elderly people, we identified SNPs in miRNA target-encoding constituents of: (1) regulator of complement activation (RCA) genes (rs390679, CFHR1, p≤2.14E-214 | rs12140421, CFHR3, p≤4.63E-29); (2) genes of major histocompatibility complex (MHC) loci (rs4151672, CFB, p≤8.91E-41 | rs115404146, HLA-C, p≤6.32E-12 | rs1055821, HLA-B, p≤1.93E-9 | rs1063355, HLA-DQB1, p≤6.82E-14); and (3) genes of the 10q26 AAMD locus (rs1045216, PLEKHA1, p≤4.17E-142 | rs2672603, ARMS2, p≤7.14E-46). We used these findings with existing data on AAMD-related retinal miRNA and transcript profiles for the purpose of making inferences on SNP-mRNA-miRNA-AAMD relationships. Four of 12 miRNAs significantly elevated in AAMD retina (hsa-miR-155-5p, hsa-let-7a-5p, hsa-let-7b-5p hsa-let-7d-5p) also showed strong pairing capacity (TarBase 7.1 context++ score <-0.2, miRanda 3.3 pairing score >150) with miRNA target transcripts encoded by AAMD-associated SNPs resident in HLA-DQB1 (rs1063355, hsa-miR-155-5p) and TGFBR1 (rs868, hsa-let-7). Three of the 12 miRNAs overexpressed in AAMD retina are inducible by NFkB and have high affinity targets in the complement factor H (CFH) mRNA 3' UTR. We used ENSEMBL to identify polymorphic regions in the CFH mRNA 3' UTR with the capacity to disrupt miRNA-mRNA pairing. Two variants (rs766666504 and rs459598) existed in DNA sequence encoding the seed region of hsa-miR-146a-5p in the CFH mRNA 3' UTR - as this miRNA is also elevated in both vitreous and serum of people with AAMD, it shows great value as a biomarker. Our findings suggest that knowledge on the nature of DNA sequence variation may increase the explanatory power of miRNA biomarkers in genetically diverse populations, while yielding information with which to develop: (1) mechanistic tests on processes implicated in AMD pathogenesis; and, (2) site-specific small molecules (synthetic mimetics or anti-miRNAs) with preventive or therapeutic efficacy for AAMD.

摘要

晚期年龄相关性黄斑变性(AAMD)是一种具有公共卫生意义的复杂致盲疾病。微小RNA(miRNA)已被提议作为AAMD的生物标志物。某些单核苷酸多态性(SNP)的存在可能会影响这些生物标志物的解释价值。在此,我们展示了一种综合方法的研究结果,该方法用于确定与AAMD相关的SNP是否有能力影响miRNA与mRNA的配对,如果有,这种配对在离散的AAMD转录组中可能会在多大程度上表现出来。我们从一个超过30000名老年人的队列中,使用一组8854个与AAMD相关且p值≤5.0E - 7的SNP,在以下miRNA靶标编码成分中鉴定出SNP:(1)补体激活调节因子(RCA)基因(rs390679,CFHR1,p≤2.14E - 214 | rs12140421,CFHR3,p≤4.63E - 29);(2)主要组织相容性复合体(MHC)位点的基因(rs4151672,CFB,p≤8.91E - 41 | rs115404146,HLA - C,p≤6.32E - 12 | rs1055821,HLA - B,p≤1.93E - 9 | rs1063355,HLA - DQB1,p≤6.82E - 14);以及(3)10q26 AAMD位点的基因(rs1045216,PLEKHA1,p≤4.17E - 142 | rs2672603,ARMS2,p≤7.14E - 46)。我们将这些发现与现有的AAMD相关视网膜miRNA和转录谱数据相结合,以推断SNP - mRNA - miRNA - AAMD之间的关系。在AAMD视网膜中显著升高的12种miRNA中的4种(hsa - miR - 155 - 5p、hsa - let - 7a - 5p、hsa - let - 7b - 5p、hsa - let - 7d - 5p)也显示出与HLA - DQB1(rs1063355,hsa - miR - 155 - 5p)和TGFBR1(rs868,hsa - let - 7)中与AAMD相关的SNP编码的miRNA靶转录本具有很强的配对能力(TarBase 7.1上下文++得分< - 0.2,miRanda 3.3配对得分>150)。在AAMD视网膜中过表达的12种miRNA中的3种可被NFkB诱导,并且在补体因子H(CFH)mRNA 3'UTR中有高亲和力靶标。我们使用ENSEMBL来鉴定CFH mRNA 3'UTR中具有破坏miRNA - mRNA配对能力的多态性区域。在CFH mRNA 3'UTR中编码hsa - miR - 146a - 5p种子区域的DNA序列中存在两个变体(rs766666504和rs459598)——由于这种miRNA在AAMD患者的玻璃体和血清中也升高,它作为生物标志物具有很大价值。我们的研究结果表明,关于DNA序列变异性质的知识可能会提高miRNA生物标志物在基因多样化人群中的解释能力,同时产生用于开发的信息:(1)对AMD发病机制中涉及的过程进行机制测试;以及(2)具有预防或治疗AAMD功效的位点特异性小分子(合成模拟物或抗miRNA)。

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