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多组学分析鉴定出瘦素/PPAR 基因簇中的罕见变异,以及 ABCG1 的高甲基化导致抗精神病药物引起的代谢综合征。

Multi-omics analysis identifies rare variation in leptin/PPAR gene sets and hypermethylation of ABCG1 contribute to antipsychotics-induced metabolic syndromes.

机构信息

Key Laboratory for the Genetics of Developmental and Neuropsychiatric Disorders (Ministry of Education), Bio-X Institutes, Shanghai Jiao Tong University, Shanghai, China.

Neurobiology & Mitochondrial Key Laboratory, School of Pharmacy, Jiangsu University, Zhenjiang, China.

出版信息

Mol Psychiatry. 2022 Dec;27(12):5195-5205. doi: 10.1038/s41380-022-01759-5. Epub 2022 Sep 5.

Abstract

Antipsychotic-induced metabolic syndrome (APs-induced Mets) is the most common adverse drug reaction, which affects more than 60% of the psychiatric patients. Although the etiology of APs-induced Mets has been extensively investigated, there is a lack of integrated analysis of the genetic and epigenetic factors. In this study, we performed genome-wide, whole-exome sequencing (WES) and epigenome-wide association studies in schizophrenia (SCZ) patients with or without APs-induced Mets to find the underlying mechanisms, followed by in vitro and in vivo functional validations. By population-based omics analysis, we revealed that rare functional variants across in the leptin and peroxisome proliferator-activated receptors (PPARs) gene sets were imbalanced with rare functional variants across the APs-induced Mets and Non-Mets cohort. Besides, we discovered that APs-induced Mets are hypermethylated in ABCG1 (chr21:43642166-43642366, adjusted P < 0.05) than Non-Mets, and hypermethylation of this area was associated with higher TC (total cholesterol) and TG (triglycerides) levels in HepG2 cells. Candidate genes from omics studies were furtherly screened in C. elegans and 17 gene have been verified to associated with olanzapine (OLA) induced fat deposit. Among them, several genes were expressed differentially in Mets cohort and APs-induced in vitro/in vivo models compared to controls, demonstrating the validity of omics study. Overexpression one of the most significant gene, PTPN11, exhibited compromised glucose responses and insulin resistance. Pharmacologic inhibition of PTPN11 protected HepG2 cell from APs-induced insulin resistance. These findings provide important insights into our understanding of the mechanism of the APs-induced Mets.

摘要

抗精神病药引起的代谢综合征(APs-induced Mets)是最常见的药物不良反应,影响超过 60%的精神科患者。尽管 APs-induced Mets 的病因已被广泛研究,但缺乏对遗传和表观遗传因素的综合分析。在这项研究中,我们对伴有或不伴有 APs-induced Mets 的精神分裂症(SCZ)患者进行了全基因组、外显子组测序(WES)和全基因组关联研究,以寻找潜在的机制,并进行了体外和体内功能验证。通过基于人群的组学分析,我们揭示了瘦素和过氧化物酶体增殖物激活受体(PPARs)基因座中罕见的功能变体在 APs-induced Mets 和 Non-Mets 队列中存在不平衡,此外,我们发现 APs-induced Mets 在 ABCG1 (chr21:43642166-43642366,调整后的 P<0.05)中比 Non-Mets 更甲基化,该区域的高甲基化与 HepG2 细胞中更高的 TC(总胆固醇)和 TG(甘油三酯)水平相关。从组学研究中筛选出候选基因,并在秀丽隐杆线虫中进一步验证,有 17 个基因已被验证与奥氮平(OLA)诱导的脂肪沉积有关。其中,一些基因在 Mets 队列和 APs 诱导的体外/体内模型中与对照组相比表达差异,证明了组学研究的有效性。过表达最显著的基因之一 PTPN11 会导致葡萄糖反应受损和胰岛素抵抗。PTPN11 的药理学抑制可保护 HepG2 细胞免受 APs 诱导的胰岛素抵抗。这些发现为我们理解 APs-induced Mets 的机制提供了重要的见解。

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