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Tra1的假激酶结构域是核定位以及整合到SAGA和NuA4复合物所必需的。

The Pseudokinase Domain of Tra1 Is Required for Nuclear Localization and Incorporation into the SAGA and NuA4 Complexes.

作者信息

Berg Matthew D, Genereaux Julie, Karagiannis Jim, Brandl Christopher J

机构信息

Department of Biochemistry, Schulich School of Medicine & Dentistry, Western University, London, Ontario, Canada N6A5C1

Department of Biochemistry, Schulich School of Medicine & Dentistry, Western University, London, Ontario, Canada N6A5C1.

出版信息

G3 (Bethesda). 2018 May 31;8(6):1943-1957. doi: 10.1534/g3.118.200288.

Abstract

Tra1 is an essential component of the SAGA/SLIK and NuA4 complexes in , recruiting these co-activator complexes to specific promoters. As a PIKK family member, Tra1 is characterized by a C-terminal phosphoinositide 3-kinase (PI3K) domain. Unlike other PIKK family members (, Tor1, Tor2, Mec1, Tel1), Tra1 has no demonstrable kinase activity. We identified three conserved arginine residues in Tra1 that reside proximal or within the cleft between the N- and C-terminal subdomains of the PI3K domain. To establish a function for Tra1's PI3K domain and specifically the cleft region, we characterized a allele where these three arginine residues are mutated to glutamine. The half-life of the Tra1[Formula: see text] protein is reduced but its steady state level is maintained at near wild-type levels by a transcriptional feedback mechanism. The [Formula: see text] allele results in slow growth under stress and alters the expression of genes also regulated by other components of the SAGA complex. Tra1[Formula: see text] is less efficiently transported to the nucleus than the wild-type protein. Likely related to this, Tra1[Formula: see text] associates poorly with SAGA/SLIK and NuA4. The ratio of Spt7 to Spt7 increases in the [Formula: see text] strain and truncated forms of Spt20 become apparent upon isolation of SAGA/SLIK. Intragenic suppressor mutations of [Formula: see text] map to the cleft region further emphasizing its importance. We propose that the PI3K domain of Tra1 is directly or indirectly important for incorporating Tra1 into SAGA and NuA4 and thus the biosynthesis and/or stability of the intact complexes.

摘要

Tra1是酿酒酵母中SAGA/SLIK和NuA4复合物的重要组成部分,可将这些共激活复合物招募到特定启动子上。作为PIKK家族成员,Tra1的特征是具有一个C端磷酸肌醇3激酶(PI3K)结构域。与其他PIKK家族成员(如Tor1、Tor2、Mec1、Tel1)不同,Tra1没有可证明的激酶活性。我们在Tra1中鉴定出三个保守的精氨酸残基,它们位于PI3K结构域的N端和C端亚结构域之间的裂隙附近或裂隙内。为了确定Tra1的PI3K结构域特别是裂隙区域的功能,我们对一个等位基因进行了表征,其中这三个精氨酸残基被突变为谷氨酰胺。Tra1[公式:见正文]蛋白的半衰期缩短,但其稳态水平通过转录反馈机制维持在接近野生型的水平。该等位基因导致在应激条件下生长缓慢,并改变了也受SAGA复合物其他成分调控的基因的表达。与野生型蛋白相比,Tra1[公式:见正文]转运到细胞核的效率较低。与此可能相关的是,Tra1[公式:见正文]与SAGA/SLIK和NuA4的结合较差。在该菌株中,Spt7与Spt7的比例增加,并且在分离SAGA/SLIK时,Spt20的截短形式变得明显。该等位基因的基因内抑制突变映射到裂隙区域,进一步强调了其重要性。我们提出,Tra1的PI3K结构域对于将Tra1整合到SAGA和NuA4中,从而对于完整复合物的生物合成和/或稳定性直接或间接具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e42e/5982823/8de047dc5f64/1943f1.jpg

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