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锌通过调节 SUMO1 中特定于同源物的自身抑制来控制 PML 核体形成。

Zinc controls PML nuclear body formation through regulation of a paralog specific auto-inhibition in SUMO1.

机构信息

Département de Biochimie et Médicine Moléculaire, Université de Montréal, Montréal, QC, Canada.

Department of Biochemistry, Beni-Suef University, Beni-Suef, Egypt.

出版信息

Nucleic Acids Res. 2022 Aug 12;50(14):8331-8348. doi: 10.1093/nar/gkac620.

Abstract

SUMO proteins are important regulators of many key cellular functions in part through their ability to form interactions with other proteins containing SUMO interacting motifs (SIMs). One characteristic feature of all SUMO proteins is the presence of a highly divergent intrinsically disordered region at their N-terminus. In this study, we examine the role of this N-terminal region of SUMO proteins in SUMO-SIM interactions required for the formation of nuclear bodies by the promyelocytic leukemia (PML) protein (PML-NBs). We demonstrate that the N-terminal region of SUMO1 functions in a paralog specific manner as an auto-inhibition domain by blocking its binding to the phosphorylated SIMs of PML and Daxx. Interestingly, we find that this auto-inhibition in SUMO1 is relieved by zinc, and structurally show that zinc stabilizes the complex between SUMO1 and a phospho-mimetic form of the SIM of PML. In addition, we demonstrate that increasing cellular zinc levels enhances PML-NB formation in senescent cells. Taken together, these results provide important insights into a paralog specific function of SUMO1, and suggest that zinc levels could play a crucial role in regulating SUMO1-SIM interactions required for PML-NB formation and function.

摘要

SUMO 蛋白是许多关键细胞功能的重要调节剂,部分原因是它们能够与含有 SUMO 相互作用基序 (SIM) 的其他蛋白形成相互作用。所有 SUMO 蛋白的一个特征是其 N 端存在高度离散的固有无序区域。在这项研究中,我们研究了 SUMO 蛋白 N 端区域在 PML 蛋白(PML-NBs)形成核体所必需的 SUMO-SIM 相互作用中的作用。我们证明 SUMO1 的 N 端区域以一种平行物特异性的方式作为自动抑制结构域发挥作用,阻止其与 PML 和 Daxx 的磷酸化 SIM 结合。有趣的是,我们发现锌可以解除 SUMO1 中的这种自动抑制作用,并从结构上表明锌稳定了 SUMO1 与 PML SIM 的磷酸模拟形式之间的复合物。此外,我们证明增加细胞内锌水平可增强衰老细胞中 PML-NB 的形成。总之,这些结果为 SUMO1 的平行物特异性功能提供了重要的见解,并表明锌水平可能在调节 PML-NB 形成和功能所必需的 SUMO1-SIM 相互作用中发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d927/9371903/954fd524ba01/gkac620figgra1.jpg

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