酵母AP-1样转录因子(Yap)与应激反应:当前综述
Yeast AP-1 like transcription factors (Yap) and stress response: a current overview.
作者信息
Rodrigues-Pousada Claudina, Devaux Frédéric, Caetano Soraia M, Pimentel Catarina, da Silva Sofia, Cordeiro Ana Carolina, Amaral Catarina
机构信息
Instituto de Tecnologia Química e Biológica Anónio Xavier, Universidade Nova de Lisboa, Avenida da República, EAN, Oeiras 2781-901, Oeiras, Portugal.
Sorbonne Université, CNRS, Institut de Biologie Paris-Seine, Laboratory of Computational and Quantitative Biology, F-75005, Paris, France.
出版信息
Microb Cell. 2019 May 28;6(6):267-285. doi: 10.15698/mic2019.06.679.
Yeast adaptation to stress has been extensively studied. It involves large reprogramming of genome expression operated by many, more or less specific, transcription factors. Here, we review our current knowledge on the function of the eight Yap transcription factors (Yap1 to Yap8) in , which were shown to be involved in various stress responses. More precisely, Yap1 is activated under oxidative stress, Yap2/Cad1 under cadmium, Yap4/Cin5 and Yap6 under osmotic shock, Yap5 under iron overload and Yap8/Arr1 by arsenic compounds. Yap3 and Yap7 seem to be involved in hydroquinone and nitrosative stresses, respectively. The data presented in this article illustrate how much knowledge on the function of these Yap transcription factors is advanced. The evolution of the Yap family and its roles in various pathogenic and non-pathogenic fungal species is discussed in the last section.
酵母对压力的适应性已得到广泛研究。它涉及由许多或多或少具有特异性的转录因子对基因组表达进行的大规模重编程。在此,我们综述了目前关于八个Yap转录因子(Yap1至Yap8)在其中的功能的认识,这些转录因子已被证明参与各种应激反应。更确切地说,Yap1在氧化应激下被激活,Yap2/Cad1在镉胁迫下被激活,Yap4/Cin5和Yap6在渗透休克下被激活,Yap5在铁过载下被激活,Yap8/Arr1被砷化合物激活。Yap3和Yap7似乎分别参与对苯二酚和亚硝化应激反应。本文所呈现的数据说明了关于这些Yap转录因子功能的知识有了多大的进展。最后一部分讨论了Yap家族的进化及其在各种致病和非致病真菌物种中的作用。
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