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酵母PIAS型Ull1/Siz1由小泛素样修饰蛋白连接酶和调节结构域组成。

Yeast PIAS-type Ull1/Siz1 is composed of SUMO ligase and regulatory domains.

作者信息

Takahashi Yoshimitsu, Kikuchi Yoshiko

机构信息

Department of Biological Sciences, Graduate School of Science, University of Tokyo, 7-3-1, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Biol Chem. 2005 Oct 28;280(43):35822-8. doi: 10.1074/jbc.M506794200. Epub 2005 Aug 17.

Abstract

SUMO (small ubiquitin-like modifier)/Smt3 (suppressor of mif two) is a member of the ubiquitin-related protein family and is known to conjugate with many proteins. In the sumoylation pathway, SUMO/Smt3 is transferred to substrate lysine residues through the thioester cascade of E1 (activating enzyme) and E2 (conjugating enzyme), and E3 (SUMO ligase) functions as an adaptor between E2 and each substrate. Yeast Ull1 (ubiquitin-like protein ligase 1)/Siz1, a PIAS (protein inhibitor of activated STAT)-type SUMO ligase, modifies both cytoplasmic and nuclear proteins. In this paper, we performed a domain analysis of Ull1/Siz1 by constructing various deletion mutants. A novel conserved N-terminal domain, called PINIT, as well as the RING-like domain (SP-RING) were required for the SUMO ligase activity in the in vitro conjugation system and for interaction with Smt3 in an in vitro binding assay. The most distal N-terminal region, which contains a putative DNA-binding SAF-A/B, Acinus, and PIAS (SAP) motif, was not required for the ligase activity but was involved in nuclear localization. A strong SUMO-binding motif was identified, which interacted with Smt3 in the two-hybrid system but was not necessary for the ligase activity. The most distal C-terminal domain was important for stable localization at the bud neck region and thereby for the substrate recognition of septins. Furthermore, the C-terminal half conferred protein instability on Ull1/Siz1. Taken together, we conclude that the SP-RING and PINIT of Ull1/Siz1 are core domains of the SUMO ligase, and the other domains are regulatory for protein stability and subcellular localization.

摘要

SUMO(小泛素样修饰物)/Smt3(mif two抑制因子)是泛素相关蛋白家族的成员,已知可与多种蛋白质结合。在SUMO化途径中,SUMO/Smt3通过E1(激活酶)和E2(结合酶)的硫酯级联反应转移至底物赖氨酸残基上,而E3(SUMO连接酶)则作为E2与各底物之间的衔接子发挥作用。酵母Ull1(泛素样蛋白连接酶1)/Siz1是一种PIAS(信号转导和转录激活因子蛋白抑制剂)型SUMO连接酶,可修饰细胞质和细胞核中的蛋白质。在本文中,我们通过构建各种缺失突变体对Ull1/Siz1进行了结构域分析。在体外结合系统的SUMO连接酶活性以及体外结合试验中与Smt3的相互作用方面,一个名为PINIT的新型保守N端结构域以及类RING结构域(SP-RING)是必需的。最远端的N端区域包含一个推定的DNA结合SAF-A/B、Acinus和PIAS(SAP)基序,该区域对于连接酶活性并非必需,但参与核定位。我们鉴定出一个强SUMO结合基序,其在双杂交系统中与Smt3相互作用,但对于连接酶活性并非必需。最远端的C端结构域对于在芽颈区域的稳定定位很重要,从而对于隔膜蛋白的底物识别也很重要。此外,C端的后半部分赋予Ull1/Siz1蛋白质不稳定性。综上所述,我们得出结论,Ull1/Siz1的SP-RING和PINIT是SUMO连接酶的核心结构域,而其他结构域则对蛋白质稳定性和亚细胞定位起调节作用。

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