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细胞质中的ATXN7L3B干扰SAGA去泛素化酶模块的核功能。

Cytoplasmic ATXN7L3B Interferes with Nuclear Functions of the SAGA Deubiquitinase Module.

作者信息

Li Wenqian, Atanassov Boyko S, Lan Xianjiang, Mohan Ryan D, Swanson Selene K, Farria Aimee T, Florens Laurence, Washburn Michael P, Workman Jerry L, Dent Sharon Y R

机构信息

Department of Epigenetics and Molecular Carcinogenesis, The University of Texas MD Anderson Cancer Center, Smithville, Texas, USA.

Center for Cancer Epigenetics, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.

出版信息

Mol Cell Biol. 2016 Oct 28;36(22):2855-2866. doi: 10.1128/MCB.00193-16. Print 2016 Nov 15.

Abstract

The SAGA complex contains two enzymatic modules, which house histone acetyltransferase (HAT) and deubiquitinase (DUB) activities. USP22 is the catalytic subunit of the DUB module, but two adaptor proteins, ATXN7L3 and ENY2, are necessary for DUB activity toward histone H2Bub1 and other substrates. ATXN7L3B shares 74% identity with the N-terminal region of ATXN7L3, but the functions of ATXN7L3B are not known. Here we report that ATXN7L3B interacts with ENY2 but not other SAGA components. Even though ATXN7L3B localizes in the cytoplasm, ATXN7L3B overexpression increases H2Bub1 levels, while overexpression of ATXN7L3 decreases H2Bub1 levels. In vitro, ATXN7L3B competes with ATXN7L3 to bind ENY2, and in vivo, knockdown of ATXN7L3B leads to concomitant loss of ENY2. Unlike the ATXN7L3 DUB complex, a USP22-ATXN7L3B-ENY2 complex cannot deubiquitinate H2Bub1 efficiently in vitro Moreover, ATXN7L3B knockdown inhibits migration of breast cancer cells in vitro and limits expression of ER target genes. Collectively, our studies suggest that ATXN7L3B regulates H2Bub1 levels and SAGA DUB activity through competition for ENY2 binding.

摘要

SAGA复合物包含两个酶模块,分别具有组蛋白乙酰转移酶(HAT)和去泛素酶(DUB)活性。USP22是DUB模块的催化亚基,但两个衔接蛋白ATXN7L3和ENY2对于DUB针对组蛋白H2Bub1和其他底物的活性是必需的。ATXN7L3B与ATXN7L3的N端区域有74%的同源性,但ATXN7L3B的功能尚不清楚。在此我们报道,ATXN7L3B与ENY2相互作用,但不与其他SAGA组分相互作用。尽管ATXN7L3B定位于细胞质中,但ATXN7L3B的过表达会增加H2Bub1水平,而ATXN7L3的过表达则会降低H2Bub1水平。在体外,ATXN7L3B与ATXN7L3竞争结合ENY2,在体内,敲低ATXN7L3B会导致ENY2同时缺失。与ATXN7L3 DUB复合物不同,USP22-ATXN7L3B-ENY2复合物在体外不能有效地使H2Bub1去泛素化。此外,敲低ATXN7L3B会抑制体外乳腺癌细胞的迁移,并限制雌激素受体(ER)靶基因的表达。总的来说,我们的研究表明,ATXN7L3B通过竞争结合ENY2来调节H2Bub1水平和SAGA DUB活性。

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