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妊娠期间适度的母体营养减少会改变非人类灵长类胎儿肝脏中的脂肪酸氧化和 RNA 剪接。

Moderate maternal nutrient reduction in pregnancy alters fatty acid oxidation and RNA splicing in the nonhuman primate fetal liver.

机构信息

Center for Precision Medicine, Wake Forest University School of Medicine, Winston-Salem, NC, USA.

Southwest National Primate Research Center, Texas Biomedical Research Institute, San Antonio, TX, USA.

出版信息

J Dev Orig Health Dis. 2023 Jun;14(3):381-388. doi: 10.1017/S204017442300003X. Epub 2023 Mar 16.

Abstract

Fetal liver tissue collected from a nonhuman primate (NHP) baboon model of maternal nutrient reduction (MNR) at four gestational time points (90, 120, 140, and 165 days gestation [dG], term in the baboon is ∼185 dG) was used to quantify MNR effects on the fetal liver transcriptome. 28 transcripts demonstrated different expression patterns between MNR and control livers during the second half of gestation, a developmental period when the fetus undergoes rapid weight gain and fat accumulation. Differentially expressed transcripts were enriched for fatty acid oxidation and RNA splicing-related pathways. Increased RNA splicing activity in MNR was reflected in greater abundances of transcript splice variant isoforms in the MNR group. It can be hypothesized that the increase in splice variants is deployed in an effort to adapt to the poor environment and ensure near-normal development and energy metabolism. This study is the first to study developmental programming across four critical gestational stages during primate fetal liver development and reveals a potentially novel cellular response mechanism mediating fetal programming in response to MNR.

摘要

从非人灵长类(NHP)恒河猴模型的胎儿肝脏组织中收集了在四个妊娠时间点(妊娠 90、120、140 和 165 天[G],恒河猴的足月约为 185 G)的母体营养减少(MNR),用于定量分析 MNR 对胎儿肝脏转录组的影响。在妊娠后半期,即胎儿快速增重和脂肪积累的发育时期,28 个转录本在 MNR 和对照肝脏之间表现出不同的表达模式。差异表达的转录本富集了脂肪酸氧化和 RNA 剪接相关途径。MNR 中 RNA 剪接活性的增加反映在 MNR 组中转录本剪接变体同工型的丰度增加。可以假设,剪接变体的增加是为了适应恶劣的环境,确保正常的发育和能量代谢。本研究首次在灵长类动物胎儿肝脏发育的四个关键妊娠阶段研究了发育编程,并揭示了一种潜在的新型细胞反应机制,介导了胎儿对 MNR 的编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11db/10202844/2eeef98b70b9/nihms-1873073-f0001.jpg

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