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哺乳动物心脏发育所需必需基因的功能多样性。

The functional diversity of essential genes required for mammalian cardiac development.

作者信息

Clowes Christopher, Boylan Michael G S, Ridge Liam A, Barnes Emma, Wright Jayne A, Hentges Kathryn E

机构信息

Faculty of Life Sciences, University of Manchester, Michael Smith Building, Oxford Road, Manchester, United Kingdom.

出版信息

Genesis. 2014 Aug;52(8):713-37. doi: 10.1002/dvg.22794. Epub 2014 Jun 24.

Abstract

Genes required for an organism to develop to maturity (for which no other gene can compensate) are considered essential. The continuing functional annotation of the mouse genome has enabled the identification of many essential genes required for specific developmental processes including cardiac development. Patterns are now emerging regarding the functional nature of genes required at specific points throughout gestation. Essential genes required for development beyond cardiac progenitor cell migration and induction include a small and functionally homogenous group encoding transcription factors, ligands and receptors. Actions of core cardiogenic transcription factors from the Gata, Nkx, Mef, Hand, and Tbx families trigger a marked expansion in the functional diversity of essential genes from midgestation onwards. As the embryo grows in size and complexity, genes required to maintain a functional heartbeat and to provide muscular strength and regulate blood flow are well represented. These essential genes regulate further specialization and polarization of cell types along with proliferative, migratory, adhesive, contractile, and structural processes. The identification of patterns regarding the functional nature of essential genes across numerous developmental systems may aid prediction of further essential genes and those important to development and/or progression of disease.

摘要

生物体发育至成熟所必需的基因(不存在其他可代偿的基因)被视为必需基因。小鼠基因组持续的功能注释使得人们能够鉴定出许多特定发育过程(包括心脏发育)所需的必需基因。目前,关于整个妊娠期特定阶段所需基因的功能性质,正在浮现出一些模式。心脏祖细胞迁移和诱导之后的发育所需的必需基因包括一小类功能同源的基因,它们编码转录因子、配体和受体。从妊娠中期开始,来自Gata、Nkx、Mef、Hand和Tbx家族的核心心脏发生转录因子的作用引发了必需基因功能多样性的显著扩展。随着胚胎体积和复杂性的增加,维持功能性心跳、提供肌肉力量和调节血流所需的基因大量出现。这些必需基因调节细胞类型的进一步特化和极化以及增殖、迁移、黏附、收缩和结构过程。识别众多发育系统中必需基因的功能性质模式,可能有助于预测更多的必需基因以及对疾病发展和/或进展重要的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6286/4141749/b875cc448712/dvg0052-0713-f1.jpg

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