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首页> 外文期刊>Biochemistry >Multimeric complexes among ankyrin-repeat and SOCS-box protein 9 (ASB9), ElonginBC, and cullin 5: Insights into the structure and assembly of ECS-type Cullin-RING E3 ubiquitin ligases
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Multimeric complexes among ankyrin-repeat and SOCS-box protein 9 (ASB9), ElonginBC, and cullin 5: Insights into the structure and assembly of ECS-type Cullin-RING E3 ubiquitin ligases

机译:锚蛋白重复序列​​和SOCS-box蛋白9(ASB9),ElonginBC和cullin 5之间的多聚体复合物:对ECS型Cullin-RING E3泛素连接酶的结构和组装的了解

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摘要

Proteins of the ankyrin-repeat and SOCS-box (ASB) family act as the substrate-recognition subunits of ECS-type (ElonginBC-Cullin-SOCS-box) Cullin RING E3 ubiquitin ligase (CRL) complexes that catalyze the specific polyubiquitination of cellular proteins to target them for degradation by the proteasome. Therefore, ASB multimeric complexes are involved in numerous cell processes and pathways; however, their interactions, assembly, and biological roles remain poorly understood. To enhance our understanding of ASB CRL systems, we investigated the structure, affinity, and assembly of the quaternary multisubunit complex formed by ASB9, Elongin B, Elongin C (EloBC), and Cullin 5. Here, we describe the application of several biophysical techniques including differential scanning fluorimetry, isothermal titration calorimetry (ITC), nanoelectrospray ionization, and ion-mobility mass spectrometry (IM-MS) to provide structural and thermodynamic information for a quaternary ASB CRL complex. We find that ASB9 is unstable alone but forms a stable ternary complex with EloBC that binds with high affinity to the Cullin 5 N-terminal domain (Cul5_(NTD)) but not to Cul2_(NTD). The structure of the monomeric ASB9-EloBC-Cul5_(NTD) quaternary complex is revealed by molecular modeling and is consistent with IM-MS and temperature-dependent ITC data. This is the first experimental study to validate structural information for the assembly of the quaternary N-terminal region of an ASB CRL complex. The results suggest that ASB E3 ligase complexes function and assemble in an analogous manner to that of other CRL systems and provide a platform for further molecular investigation of this important protein family. The data reported here will also be of use for the future development of chemical probes to examine the biological function and modulation of other ECS-type CRL systems.
机译:锚蛋白重复和SOCS-box(ASB)家族的蛋白质充当ECS型(ElonginBC-Cullin-SOCS-box)Cullin RING E3泛素连接酶(CRL)复合物的底物识别亚基,可催化细胞的特异性多泛素化蛋白质靶向它们以被蛋白酶体降解。因此,ASB多聚体复合物涉及许多细胞过程和途径。但是,它们的相互作用,组装和生物学作用仍然知之甚少。为了增强我们对ASB CRL系统的理解,我们研究了由ASB9,Elongin B,Elongin C(EloBC)和Cullin 5形成的四级亚基复合物的结构,亲和力和组装。在这里,我们描述了几种生物物理技术的应用包括差示扫描荧光法,等温滴定热法(ITC),纳米电喷雾电离和离子迁移质谱(IM-MS),以提供有关四级ASB CRL配合物的结构和热力学信息。我们发现,ASB9本身是不稳定的,但与EloBC形成稳定的三元复合物,该复合物与Cullin 5 N末端结构域(Cul5_(NTD))高亲和力结合,但对Cul2_(NTD)没有高结合力。分子建模揭示了单体ASB9-EloBC-Cul5_(NTD)四元配合物的结构,并与IM-MS和温度依赖性ITC数据一致。这是第一个验证结构信息以用于ASB CRL络合物的四级N末端区域组装的实验研究。结果表明,ASB E3连接酶复合物的功能和组装方式与其他CRL系统类似,并为对该重要蛋白家族的进一步分子研究提供了平台。此处报告的数据也将用于化学探针的未来开发,以检查其他ECS型CRL系统的生物学功能和调节。

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