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Setdb1和Atf7IP形成一个异源三聚体复合物,该复合物会阻止Setdb1的核输出。

Setdb1 and Atf7IP form a hetero-trimeric complex that blocks Setdb1 nuclear export.

作者信息

Kariapper Leena, Marathe Ila A, Niesman Ashley B, Suino-Powell Kelly, Min Chook Yuh, Wysocki Vicki H, Worden Evan J

机构信息

Department of Structural Biology, Van Andel Institute, Grand Rapids, MI, USA.

School Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, GA USA.

出版信息

bioRxiv. 2024 Dec 23:2024.12.23.630145. doi: 10.1101/2024.12.23.630145.

Abstract

Histone H3K9 methylation (H3K9me) by Setdb1 silences retrotransposons (rTE) by sequestering them in constitutive heterochromatin. Atf7IP is a constitutive binding partner of Setdb1 and is responsible for Setdb1 nuclear localization, activation and chromatin recruitment. However, structural details of the Setdb1/Atf7IP interaction have not been evaluated. We used Alphafold2 predictions and biochemical reconstitutions to show that one copy of Setdb1 and two copies of Atf7IP form a hetero-trimeric complex and . We also find that Atf7IP self-associates, forming multimeric complexes that are resolved upon Setdb1 binding. Setdb1 binds to Atf7IP through coiled coil interactions that include both Setdb1 nuclear export signals (NES). Atf7IP directly competes with CRM1 to bind the Setdb1 NES motifs, explaining how Atf7IP prevents CRM1-mediated nuclear export of Setdb1. Setdb1 also forms hetero-trimeric complexes with the Atf7IP paralog Atf7IP2 and we show that Setdb1 can form mixed heterotrimers comprising one copy of each Setdb1, Atf7IP and Atf7IP2. Atf7IP and Atf7IP2 are co-expressed in many tissues suggesting that heterotrimers with different compositions of Atf7IP and Atf7IP2 may differentially regulate H3K9me by fine-tuning Setdb1 localization and activity.

摘要

Setdb1介导的组蛋白H3K9甲基化(H3K9me)通过将逆转座子(rTE)隔离在组成型异染色质中来使其沉默。Atf7IP是Setdb1的组成型结合伴侣,负责Setdb1的核定位、激活及染色质募集。然而,Setdb1与Atf7IP相互作用的结构细节尚未得到评估。我们利用Alphafold2预测和生化重组表明,一个Setdb1拷贝和两个Atf7IP拷贝形成一个异源三聚体复合物。我们还发现Atf7IP会自我缔合,形成多聚体复合物,该复合物在与Setdb1结合后会解离。Setdb1通过包含两个Setdb1核输出信号(NES)的卷曲螺旋相互作用与Atf7IP结合。Atf7IP直接与CRM1竞争以结合Setdb1的NES基序,这解释了Atf7IP如何阻止CRM1介导的Setdb1核输出。Setdb1还与Atf7IP旁系同源物Atf7IP2形成异源三聚体复合物,并且我们表明Setdb1可以形成由一个Setdb1、Atf7IP和Atf7IP2拷贝各一个组成的混合异源三聚体。Atf7IP和Atf7IP2在许多组织中共同表达,这表明具有不同Atf7IP和Atf7IP2组成的异源三聚体可能通过微调Setdb1的定位和活性来差异调节H3K9me。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ef7/11703210/8fe61a94b340/nihpp-2024.12.23.630145v1-f0001.jpg

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