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通过 NMR 和肽阵列分析的组合揭示了小分子泛素样修饰物 (SUMO) 相互作用基序 (SIM) 对高亲和力 SUMO 的识别。

Insights into high affinity small ubiquitin-like modifier (SUMO) recognition by SUMO-interacting motifs (SIMs) revealed by a combination of NMR and peptide array analysis.

机构信息

Department of Molecular Medicine, Beckman Research Institute of City of Hope, Duarte, California 91010, USA.

出版信息

J Biol Chem. 2012 Jan 27;287(5):3231-40. doi: 10.1074/jbc.M111.293118. Epub 2011 Dec 6.

Abstract

The small ubiquitin-like modifiers (SUMOs) regulate many essential cellular functions. Only one type of SUMO-interacting motif (SIM) has been identified that can extend the β-sheet of SUMO as either a parallel or an antiparallel strand. The molecular determinants of the bound orientation and paralogue specificity of a SIM are unclear. To address this question, we have conducted structural studies of SUMO1 in complex with a SUMO1-specific SIM that binds to SUMO1 with high affinity without post-translational modifications using nuclear magnetic resonance methods. In addition, the SIM sequence requirements have been investigated by peptide arrays in comparison with another high affinity SIM that binds in the opposing orientation. We found that antiparallel binding SIMs tolerate more diverse sequences, whereas the parallel binding SIMs prefer the more strict sequences consisting of (I/V)DLT that have a preference in high affinity SUMO2 and -3 binding. Comparison of two high affinity SUMO1-binding SIMs that bind in opposing orientations has revealed common SUMO1-specific interactions needed for high affinity binding. This study has significantly advanced our understanding of the molecular determinants underlining SUMO-SIM recognition.

摘要

小泛素样修饰物(SUMOs)调节许多基本的细胞功能。目前只鉴定出一种 SUMO 相互作用基序(SIM),它可以作为平行或反平行链延伸 SUMO 的 β-折叠。SIM 结合取向和同工型特异性的分子决定因素尚不清楚。为了解决这个问题,我们使用核磁共振方法对与 SUMO1 特异性 SIM 结合的 SUMO1 进行了结构研究,该 SIM 无需翻译后修饰即可与 SUMO1 高亲和力结合。此外,通过肽阵列与另一个结合方向相反的高亲和力 SIM 进行了比较,研究了 SIM 序列要求。我们发现反平行结合的 SIM 可以容忍更多样的序列,而平行结合的 SIM 则更喜欢更严格的序列(I/V)DLT,这些序列在高亲和力 SUMO2 和 -3 结合中具有偏好性。比较两个结合方向相反的高亲和力 SUMO1 结合 SIM,揭示了高亲和力结合所需的共同 SUMO1 特异性相互作用。这项研究极大地提高了我们对 SUMO-SIM 识别的分子决定因素的理解。

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