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SYNE1-QK1 SNPs、G×G 和 G×E 相互作用与高脂血症风险的关系。

SYNE1-QK1 SNPs, G × G and G × E interactions on the risk of hyperlipidaemia.

机构信息

Department of Cardiology, Institute of Cardiovascular Diseases, The First Affiliated Hospital, Guangxi Medical University, Nanning, China.

Guangxi Key Laboratory Base of Precision Medicine in Cardio-cerebrovascular Disease Control and Prevention, Nanning, China.

出版信息

J Cell Mol Med. 2020 May;24(10):5772-5785. doi: 10.1111/jcmm.15239. Epub 2020 Apr 13.

Abstract

This study aimed to assess the relationship of 3 spectrin repeat containing nuclear envelope protein 1 (SYNE1) and 4 KH domain containing RNA binding (QK1) single nucleotide polymorphisms (SNPs), their haplotypes, gene-gene (G × G), gene-environment (G × E) interactions and hypercholesterolaemia (HCH) and hypertriglyceridaemia (HTG) in the Chinese Maonan minority. The genetic make-up of the SYNE1-QK1 SNPs in 1932 unrelated subjects (normal, 641; HCH, 649; and HTG, 642) was obtained by next-generation sequencing technologies. The genotypic frequencies of following SNPs were suggestively distinctive between the control and HCH groups (rs2623963, rs7745725, rs9459317, rs16897566), or between the control and HTG groups (rs2623963, rs1358317, rs7745725, rs1923608, rs16897566 SNPs; P < .05, respectively). Multiple-locus linkage disequilibrium analysis indicated that the identified SNPs were not inherited independently. Several haplotypes and gene-gene interaction haplotypes among the detected SNPs may be related with an increased morbidity of HCH (C-G-A, C-G-G and C-G-G-T-C-A-T) and HTG (C-G-G, G-T-G-C, C-G-G-G-T-G-C and C-G-G-T-C-A-T), whereas others may be related with an decreased risk of HCH (G-A-A, G-C-A-T, C-A-A-T-C-A-T and G-A-A-G-C-A-T) and HTG (G-A-A, G-C-A-T, C-A-A-T-C-A-T and G-A-A-G-C-A-T). The association evaluation based on haplotypes and gene-gene interactions could improve the power of detecting the risk of dyslipidaemia than anyone of SNP alone. There was significant three-locus model involving SNP-SNP, haplotype-haplotype/environment and G × G interactions (P < .05-0.001) that were detected by GMDR in HCH and HTG groups. Different interactions between genetic and environmental factors would produce different redundancy or synergy effects on the morbidity of HCH and/or HTG.

摘要

本研究旨在评估spectrin 重复含核包膜蛋白 1 (SYNE1)和 4 KH 结构域含 RNA 结合蛋白 1 (QK1)单核苷酸多态性 (SNP)及其单倍型、基因-基因 (G×G)、基因-环境 (G×E)相互作用与中国毛南族人群高脂血症 (HCH)和高甘油三酯血症 (HTG)的关系。通过下一代测序技术,获得了 1932 名无关个体 (正常对照组 641 人,HCH 组 649 人,HTG 组 642 人)中 SYNE1-QK1 SNP 的遗传构成。以下 SNP 的基因型频率在对照组与 HCH 组之间 (rs2623963、rs7745725、rs9459317、rs16897566)或对照组与 HTG 组之间 (rs2623963、rs1358317、rs7745725、rs1923608、rs16897566 SNP)存在显著差异 (P<.05,分别)。多基因连锁不平衡分析表明,所鉴定的 SNP 不是独立遗传的。在所检测的 SNP 中,一些单体型和基因-基因相互作用单体型可能与 HCH (C-G-A、C-G-G 和 C-G-G-T-C-A-T)和 HTG (C-G-G、G-T-G-C、C-G-G-G-T-G-C 和 C-G-G-T-C-A-T)发病率的增加有关,而其他单体型可能与 HCH (G-A-A、G-C-A-T、C-A-A-T-C-A-T 和 G-A-A-G-C-A-T)和 HTG (G-A-A、G-C-A-T、C-A-A-T-C-A-T 和 G-A-A-G-C-A-T)发病率的降低有关。基于单体型和基因-基因相互作用的关联评估比单独 SNP 检测血脂异常的风险具有更高的效能。在 HCH 和 HTG 组中,GMDR 检测到 SNP-SNP、单体型-单体型/环境和 G×G 相互作用的显著三基因模型 (P<.05-0.001)。遗传和环境因素之间的不同相互作用对 HCH 和/或 HTG 的发病率会产生不同的冗余或协同效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6efc/7214174/60fe1cad1ade/JCMM-24-5772-g001.jpg

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