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酵母假菌丝生长的复杂遗传基础与多层次调控

The Complex Genetic Basis and Multilayered Regulatory Control of Yeast Pseudohyphal Growth.

作者信息

Kumar Anuj

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, Michigan 48109, USA; email:

出版信息

Annu Rev Genet. 2021 Nov 23;55:1-21. doi: 10.1146/annurev-genet-071719-020249. Epub 2021 Jul 19.

Abstract

Eukaryotic cells are exquisitely responsive to external and internal cues, achieving precise control of seemingly diverse growth processes through a complex interplay of regulatory mechanisms. The budding yeast provides a fascinating model of cell growth in its stress-responsive transition from planktonic single cells to a filamentous pseudohyphal growth form. During pseudohyphal growth, yeast cells undergo changes in morphology, polarity, and adhesion to form extended and invasive multicellular filaments. This pseudohyphal transition has been studied extensively as a model of conserved signaling pathways regulating cell growth and for its relevance in understanding the pathogenicity of the related opportunistic fungus , wherein filamentous growth is required for virulence. This review highlights the broad gene set enabling yeast pseudohyphal growth, signaling pathways that regulate this process, the role and regulation of proteins conferring cell adhesion, and interesting regulatory mechanisms enabling the pseudohyphal transition.

摘要

真核细胞对外部和内部信号极为敏感,通过复杂的调控机制相互作用,实现对看似多样的生长过程的精确控制。芽殖酵母在从浮游单细胞向丝状假菌丝生长形式的应激反应转变过程中,提供了一个引人入胜的细胞生长模型。在假菌丝生长过程中,酵母细胞在形态、极性和黏附方面发生变化,形成延伸且具有侵袭性的多细胞丝状体。这种假菌丝转变作为调节细胞生长的保守信号通路模型以及在理解相关机会性真菌致病性方面的相关性,已得到广泛研究,其中丝状生长是毒力所必需的。本综述重点介绍了使酵母假菌丝生长成为可能的广泛基因集、调节这一过程的信号通路、赋予细胞黏附能力的蛋白质的作用和调节,以及实现假菌丝转变的有趣调控机制。

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