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鉴定新型营养敏感的人类卵黄囊功能,这些功能对胚胎发生是必需的。

Identification of novel nutrient sensitive human yolk sac functions required for embryogenesis.

机构信息

Department of Health Sciences, Carleton University, Ottawa, ON, Canada.

Departamento de Morfologia, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.

出版信息

Sci Rep. 2024 Nov 29;14(1):29734. doi: 10.1038/s41598-024-81061-2.

Abstract

The human yolk sac (hYS) is essential for embryo nutrient biosynthesis/transport and development. However, there lacks a comprehensive study of hYS nutrient-gene interactions. Here we performed a secondary analysis of hYS transcript profiles (n = 9 samples) to identify nutrient-sensitive hYS genes and regulatory networks, including those that associate with adverse perinatal phenotypes with embryonic origins. Overall, 14.8% highly expressed hYS genes are nutrient-sensitive; the most common nutrient cofactors for hYS genes are metals and B vitamins. Functional analysis of highly expressed hYS genes reveals that nutrient-sensitive hYS genes are more likely to be involved in metabolic functions than hYS genes that are not nutrient-sensitive. Through nutrient-sensitive gene network analysis, we find that four nutrient-sensitive transcription regulators in the hYS (with zinc and/or magnesium cofactors) are predicted to collectively regulate 30.9% of highly expressed hYS genes. Lastly, we identify 117 nutrient-sensitive hYS genes that associate with an adverse perinatal outcome with embryonic origins. Among these, the greatest number of nutrient-sensitive hYS genes are linked to congenital heart defects (n = 54 genes), followed by microcephaly (n = 37). Collectively, our study characterises nutrient-sensitive hYS functions and improves understanding of the ways in which nutrient-gene interactions in the hYS may influence both typical and pathological development.

摘要

人类卵黄囊(hYS)对于胚胎营养物质的生物合成/运输和发育至关重要。然而,目前缺乏对 hYS 营养基因相互作用的综合研究。在这里,我们对 hYS 转录谱(n=9 个样本)进行了二次分析,以鉴定营养敏感的 hYS 基因和调控网络,包括那些与具有胚胎起源的不良围产儿表型相关的基因和网络。总的来说,14.8%高度表达的 hYS 基因是营养敏感的;hYS 基因最常见的营养辅助因子是金属和 B 族维生素。对高度表达的 hYS 基因的功能分析表明,与非营养敏感的 hYS 基因相比,营养敏感的 hYS 基因更可能参与代谢功能。通过营养敏感基因网络分析,我们发现 hYS 中四个具有锌和/或镁辅助因子的营养敏感转录调节因子,预计共同调节 30.9%的高度表达 hYS 基因。最后,我们鉴定了 117 个与具有胚胎起源的不良围产儿结局相关的营养敏感 hYS 基因。在这些基因中,与先天性心脏缺陷相关的营养敏感 hYS 基因数量最多(n=54 个),其次是小头畸形(n=37 个)。总之,我们的研究描述了营养敏感的 hYS 功能,并提高了对 hYS 中营养基因相互作用可能影响典型和病理发育的方式的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33fe/11607434/693ef20bf314/41598_2024_81061_Fig1_HTML.jpg

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