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SCFMet30 介导的 Met4 转录激活因子多泛素化和蛋白水解的新兴调控潜力。

The emerging regulatory potential of SCFMet30 -mediated polyubiquitination and proteolysis of the Met4 transcriptional activator.

机构信息

Edward A, Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St, Louis, MO, 63104, USA.

出版信息

Cell Div. 2008 Jul 25;3:11. doi: 10.1186/1747-1028-3-11.

Abstract

The yeast SCFMet30 ubiquitin ligase plays a critical role in cell division by regulating the Met4 transcriptional activator of genes that control the uptake and assimilation of sulfur into methionine and S-adenosyl-methionine. The initial view on how SCFMet30 performs its function has been driven by the assumption that SCFMet30 acts exclusively as Met4 inhibitor when high levels of methionine drive an accumulation of cysteine. We revisit this model in light of the growing evidence that SCFMet30 can also activate Met4. The notion that Met4 can be inhibited or activated depending on the sulfur metabolite context is not new, but for the first time both aspects have been linked to SCFMet30, creating an interesting regulatory paradigm in which polyubiquitination and proteolysis of a single transcriptional activator can play different roles depending on context. We discuss the emerging molecular basis and the implications of this new regulatory phenomenon.

摘要

酵母 SCFMet30 泛素连接酶通过调节 Met4 转录激活因子,在细胞分裂中发挥关键作用,Met4 转录激活因子控制着将硫吸收并同化到蛋氨酸和 S-腺苷甲硫氨酸中。最初关于 SCFMet30 如何发挥其功能的观点是基于这样的假设,即当甲硫氨酸水平升高导致半胱氨酸积累时,SCFMet30 仅作为 Met4 的抑制剂发挥作用。鉴于越来越多的证据表明 SCFMet30 也可以激活 Met4,我们重新审视了这一模型。根据硫代谢物背景,Met4 可以被抑制或激活的观点并不新鲜,但这是第一次将这两个方面都与 SCFMet30 联系起来,在这个有趣的调控范式中,单个转录激活因子的多泛素化和蛋白水解可以根据背景发挥不同的作用。我们讨论了这一新调控现象的新兴分子基础及其意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2440/2526995/bfb6c6d61616/1747-1028-3-11-1.jpg

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