酵母THO复合体形成一个5个亚基组合,直接与活性染色质相互作用。

Bioarchitecture Pub Date : 2012-07-01 DOI:10.4161/bioa.21181
Kamil Gewartowski, Jorge Cuéllar, Andrzej Dziembowski, José María Valpuesta
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引用次数: 13

摘要

THO复合物是一种结构保守的核结构,在mRNP生物发生中起着连接转录延伸与mRNA成熟和输出的重要作用。最近的数据表明,THO复合体对于某些基因的正确表达是必要的,通过防止转录相关的重组来保证遗传稳定性。酵母THO被描述为一种异源四聚体(th2, Hpr1, Mft1和Thp2),通过与其他蛋白质如Tex1或mRNA输出因子Sub2和Yra1的相互作用发挥多种功能,与之形成转录和输出复合物(TREX)。在本文中,我们回顾了THO的细胞作用,我们发现THO由五个亚基组成,Tex1也是该复合体的组成部分。我们还展示了THO的低分辨率结构,并对其部分成分进行了定位。我们讨论了THO通过未折叠的th2 c端区域与核酸相互作用的后果,强调了未折叠区域在真核蛋白中的重要性。最后,我们评论了THO对活性染色质的招募,这一作用与mRNA的生物发生有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The yeast THO complex forms a 5-subunit assembly that directly interacts with active chromatin.

The yeast THO complex forms a 5-subunit assembly that directly interacts with active chromatin.

The yeast THO complex forms a 5-subunit assembly that directly interacts with active chromatin.

The THO complex is a nuclear structure whose architecture is conserved among all kingdoms and plays an important role in mRNP biogenesis connecting transcription elongation with mRNA maturation and export. Recent data indicates that the THO complex is necessary for the proper expression of some genes, assurance of genetic stability by preventing transcription-associated recombination. Yeast THO has been described as a heterotetramer (Tho2, Hpr1, Mft1 and Thp2) that performs several functions through the interaction with other proteins like Tex1 or the mRNA export factors Sub2 and Yra1, with which it forms the TRanscription and EXport complex (TREX). In this article we review the cellular role of THO, which we show to be composed of five subunits with Tex1 being also an integral part of the complex. We also show a low-resolution structure of THO and localize some of its components. We discuss the consequences of THO interaction with nucleic acids through the unfolded C-terminal region of Tho2, highlighting the importance of unfolded regions in eukaryotic proteins. Finally, we comment on THO recruitment to active chromatin, a role that is linked to mRNA biogenesis.

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