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进化中的碱性螺旋-环-螺旋转录因子:在中胚层和神经组织发育中的作用

Basic helix-loop-helix transcription factors in evolution: Roles in development of mesoderm and neural tissues.

作者信息

Gyoja Fuki

机构信息

Marine Genomics Unit, Okinawa Institute of Science and Technology Graduate University, Onna, Okinawa, 904-0495, Japan.

Department of Biology, Faculty of Science and Engineering, Konan University, 8-9-1 Okamoto, Higashinada, Kobe, 658-8501, Japan.

出版信息

Genesis. 2017 Sep;55(9). doi: 10.1002/dvg.23051. Epub 2017 Aug 30.

Abstract

Basic helix-loop-helix (bHLH) transcription factors have attracted the attention of developmental and evolutionary biologists for decades because of their conserved functions in mesodermal and neural tissue formation in both vertebrates and fruit flies. Their evolutionary history is of special interest because it will likely provide insights into developmental processes and refinement of metazoan-specific traits. This review briefly considers advances in developmental biological studies on bHLHs/HLHs. I also discuss recent genome-wide surveys and molecular phylogenetic analyses of these factors in a wide range of metazoans. I hypothesize that interactions between metazoan-specific Group A, D, and E bHLH/HLH factors enabled a sophisticated transition system from cell proliferation to differentiation in multicellular development. This control mechanism probably emerged initially to organize a multicellular animal body and was subsequently recruited to form evolutionarily novel tissues, which differentiated during a later ontogenetic phase.

摘要

几十年来,基本螺旋-环-螺旋(bHLH)转录因子一直吸引着发育生物学家和进化生物学家的关注,因为它们在脊椎动物和果蝇的中胚层及神经组织形成中具有保守功能。它们的进化历史特别引人关注,因为这可能会为发育过程及后生动物特有性状的完善提供见解。本综述简要回顾了关于bHLHs/HLHs的发育生物学研究进展。我还讨论了近期对多种后生动物中这些因子的全基因组调查和分子系统发育分析。我推测,后生动物特有的A、D和E组bHLH/HLH因子之间的相互作用促成了多细胞发育中从细胞增殖到分化的复杂转换系统。这种控制机制可能最初是为了构建多细胞动物体而出现的,随后被用于形成在个体发育后期分化的进化上新颖的组织。

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