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一个对混合谱系白血病蛋白-1核心复合物的组装和酶活性至关重要的保守含精氨酸基序。

A conserved arginine-containing motif crucial for the assembly and enzymatic activity of the mixed lineage leukemia protein-1 core complex.

作者信息

Patel Anamika, Vought Valarie E, Dharmarajan Venkatasubramanian, Cosgrove Michael S

机构信息

Department of Biology, Syracuse University, Syracuse, New York 13244, USA.

出版信息

J Biol Chem. 2008 Nov 21;283(47):32162-75. doi: 10.1074/jbc.M806317200. Epub 2008 Oct 1.

Abstract

The mixed lineage leukemia protein-1 (MLL1) belongs to the SET1 family of histone H3 lysine 4 methyltransferases. Recent studies indicate that the catalytic subunits of SET1 family members are regulated by interaction with a conserved core group of proteins that include the WD repeat protein-5 (WDR5), retinoblastoma-binding protein-5 (RbBP5), and the absent small homeotic-2-like protein (Ash2L). It has been suggested that WDR5 functions to bridge the interactions between the catalytic and regulatory subunits of SET1 family complexes. However, the molecular details of these interactions are unknown. To gain insight into the interactions among these proteins, we have determined the biophysical basis for the interaction between the human WDR5 and MLL1. Our studies reveal that WDR5 preferentially recognizes a previously unidentified and conserved arginine-containing motif, called the "Win" or WDR5 interaction motif, which is located in the N-SET region of MLL1 and other SET1 family members. Surprisingly, our structural and functional studies show that WDR5 recognizes arginine 3765 of the MLL1 Win motif using the same arginine binding pocket on WDR5 that was previously shown to bind histone H3. We demonstrate that WDR5's recognition of arginine 3765 of MLL1 is essential for the assembly and enzymatic activity of the MLL1 core complex in vitro.

摘要

混合谱系白血病蛋白-1(MLL1)属于组蛋白H3赖氨酸4甲基转移酶的SET1家族。最近的研究表明,SET1家族成员的催化亚基通过与一组保守的核心蛋白相互作用来调节,这些蛋白包括WD重复蛋白-5(WDR5)、视网膜母细胞瘤结合蛋白-5(RbBP5)和无小同源-2样蛋白(Ash2L)。有人提出,WDR5的功能是在SET1家族复合物的催化亚基和调节亚基之间建立相互作用。然而,这些相互作用的分子细节尚不清楚。为了深入了解这些蛋白质之间的相互作用,我们确定了人类WDR5与MLL1之间相互作用的生物物理基础。我们的研究表明,WDR5优先识别一个以前未被鉴定的保守含精氨酸基序,称为“Win”或WDR5相互作用基序,它位于MLL1和其他SET1家族成员的N-SET区域。令人惊讶的是,我们的结构和功能研究表明,WDR5使用其先前显示可结合组蛋白H3的相同精氨酸结合口袋识别MLL1 Win基序的精氨酸3765。我们证明,WDR5对MLL1精氨酸3765的识别对于体外MLL1核心复合物的组装和酶活性至关重要。

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