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发育编程:多囊卵巢综合征绵羊模型中产前睾酮过多对脂肪组织特异性转录的调节

Developmental programming: Adipose depot-specific transcriptional regulation by prenatal testosterone excess in a sheep model of PCOS.

机构信息

Department of Epidemiology, School of Public Health, University of Michigan, Ann Arbor, MI, USA.

Department of Pediatrics, University of Michigan, Ann Arbor, MI, USA.

出版信息

Mol Cell Endocrinol. 2021 Mar 1;523:111137. doi: 10.1016/j.mce.2020.111137. Epub 2020 Dec 25.

Abstract

Prenatal testosterone (T)-treated female sheep manifest adipose depot-specific disruptions in inflammatory/oxidative state, adipocyte differentiation and thermogenic adipocyte distribution. The objective of this study was to identify common and divergent gene pathways underlying prenatal T excess-induced adipose depot-specific disruptions. RNA sequencing and network analyses were undertaken with visceral (VAT), subcutaneous (SAT), epicardiac (ECAT) and perirenal (PRAT) adipose tissues from control and prenatal T-treated (100 mg T propionate twice a week from days 30-90 of gestation) female sheep at 21 months of age. Increased expression of adiposity and inflammation-related genes in VAT and genes that promote differentiation of white adipocytes in SAT were congruous with their metabolic roles with SAT favoring uptake/storage of free fatty acids and triglycerides and VAT favoring higher rate of fatty acid turnover and lipolysis. Selective upregulation of cardiac muscle and renoprotection genes in ECAT and PRAT respectively are suggestive of protective paracrine actions. Expression profile in prenatal T-treated sheep paralleled depot-specific dysfunctions with increased proinflammatory genes in VAT, reduced adipocyte differentiation genes in VAT and SAT and increased vascular related gene expression in PRAT. The high expression of genes involved in cardiomyocyte function in ECAT is suggestive of cardioprotective function being maintained to overcome the prenatal T-induced cardiac dysfunction and hypertension. These findings coupled with changes in gene pathways and networks involved in chromatin modification, extracellular matrix, immune and mitochondrial function, and endoplasmic reticulum to Golgi transport suggest that dysregulation in gene expression underlie prenatal T-treatment induced functional differences among adipose depots and manifestation of metabolic dysfunction.

摘要

产前睾酮(T)处理的雌性绵羊表现出脂肪组织库特有的炎症/氧化状态、脂肪细胞分化和产热脂肪细胞分布紊乱。本研究的目的是确定导致产前 T 过多引起的脂肪组织库特异性破坏的常见和不同的基因途径。对来自对照组和产前 T 处理(从妊娠第 30-90 天每周两次给予 100mg T 丙酸酯)的 21 月龄雌性绵羊的内脏(VAT)、皮下(SAT)、心脏外膜(ECAT)和肾周(PRAT)脂肪组织进行 RNA 测序和网络分析。VAT 和 SAT 中与肥胖和炎症相关的基因表达增加,以及促进白色脂肪细胞分化的基因表达增加,与它们的代谢作用一致,即 SAT 有利于游离脂肪酸和甘油三酯的摄取/储存,而 VAT 则有利于脂肪酸周转率和脂肪分解的提高。ECAT 和 PRAT 中分别上调心肌和肾保护基因提示存在保护性旁分泌作用。产前 T 处理绵羊的表达谱与脂肪组织库特异性功能障碍平行,VAT 中促炎基因表达增加,VAT 和 SAT 中脂肪细胞分化基因减少,PRAT 中血管相关基因表达增加。ECAT 中涉及心肌功能的基因表达较高提示维持了心脏保护功能,以克服产前 T 引起的心脏功能障碍和高血压。这些发现加上涉及染色质修饰、细胞外基质、免疫和线粒体功能以及内质网到高尔基体运输的基因途径和网络的变化表明,基因表达的失调是导致产前 T 处理引起脂肪组织库之间功能差异和代谢功能障碍的原因。

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