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解码叉头转录因子Fkh1和Fkh2结构域的常见和不同细胞功能。

Decoding common and divergent cellular functions of the domains of forkhead transcription factors Fkh1 and Fkh2.

作者信息

Shi Bu-Jun

机构信息

School of Agriculture, Food and Wine, the University of Adelaide, Urrbrae, South Australia 5064, Australia.

出版信息

Biochem J. 2016 Nov 1;473(21):3855-3869. doi: 10.1042/BCJ20160609. Epub 2016 Aug 23.

Abstract

Forkhead transcription factors play a key role in embryonic patterning during development. In Saccharomyces cerevisiae, two forkhead transcription factors, Fkh1 and Fkh2, regulate the transcription of CLB2 cluster genes important for mitosis. Fkh1 reduces, whereas Fkh2 elevates, the transcription of CLB2 cluster genes. However, the mechanism for this observation remains unclear. Fkh1 and Fkh2 each contain a forkhead domain (DNA-binding domain, DBD) and a forkhead-associated domain (FHAD), whereas Fkh2 possesses an extra C' domain containing six consensus cyclin-dependent kinase phosphorylation sites. In the present study, roles of these domains in protein complexes, the regulation of cell growth and CLB2 cluster genes and protein interactions were investigated using various domain mutants. The result showed that the DBD was vital for ternary complex formation with Mcm1, whereas the FHAD was central for the regulation of cell growth and CLB2 cluster transcription and for interactions with Ndd1 and Clb2. However, the Fkh2 C' domain was dispensable for the above functions. Both DBDs and FHADs had functional divergences in the cell, and Ndd1 functioned via its phosphorylated form. These data provide important insights into the functional mechanism of Fkh1 and Fkh2 in cell cycle control.

摘要

叉头转录因子在发育过程中的胚胎模式形成中起关键作用。在酿酒酵母中,两个叉头转录因子Fkh1和Fkh2调节对有丝分裂重要的CLB2簇基因的转录。Fkh1降低CLB2簇基因的转录,而Fkh2则提高其转录。然而,这一观察结果的机制仍不清楚。Fkh1和Fkh2各自包含一个叉头结构域(DNA结合结构域,DBD)和一个叉头相关结构域(FHAD),而Fkh2拥有一个额外的C'结构域,包含六个共有细胞周期蛋白依赖性激酶磷酸化位点。在本研究中,使用各种结构域突变体研究了这些结构域在蛋白质复合物、细胞生长调节、CLB2簇基因以及蛋白质相互作用中的作用。结果表明,DBD对于与Mcm1形成三元复合物至关重要,而FHAD对于细胞生长调节、CLB2簇转录以及与Ndd1和Clb2的相互作用至关重要。然而,Fkh2的C'结构域对于上述功能是可有可无的。DBD和FHAD在细胞中都有功能差异,并且Ndd1通过其磷酸化形式发挥作用。这些数据为Fkh1和Fkh2在细胞周期控制中的功能机制提供了重要见解。

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