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TIP120A与未被NEDD8修饰且不与Skp1相关联的Cul1之间的优先相互作用。

Preferential interaction of TIP120A with Cul1 that is not modified by NEDD8 and not associated with Skp1.

作者信息

Oshikawa Kiyotaka, Matsumoto Masaki, Yada Masayoshi, Kamura Takumi, Hatakeyama Shigetsugu, Nakayama Keiichi I

机构信息

Department of Molecular and Cellular Biology, Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka, Japan.

出版信息

Biochem Biophys Res Commun. 2003 Apr 18;303(4):1209-16. doi: 10.1016/s0006-291x(03)00501-1.

Abstract

The SCF complex, which consists of the invariable components Skp1, Cul1, and Rbx1 as well as a variable F-box protein, functions as an E3 ubiquitin ligase. The mechanism by which the activity of this complex is regulated, however, has been unclear. The application of tandem affinity purification has now resulted in the identification of a novel Cul1-binding protein: TATA-binding protein-interacting protein 120A (TIP120A, also called CAND1). Immunoprecipitation, immunoblot, and immunofluorescence analyses with mammalian cells revealed that TIP120A physically associates with Cul1 in the nucleus and that this interaction is mediated by a central region of Cul1 distinct from its binding sites for Skp1 and Rbx1. Furthermore, TIP120A was shown to interact selectively with Cul1 that is not modified by NEDD8. The Cul1-TIP120A complex does not include Skp1, raising the possibility that TIP120A competes with Skp1 for binding to Cul1. These observations thus suggest that TIP120A may function as a negative regulator of the SCF complex by binding to nonneddylated Cul1 and thereby preventing assembly of this ubiquitin ligase.

摘要

SCF复合物由恒定组分Skp1、Cul1和Rbx1以及可变的F-box蛋白组成,作为一种E3泛素连接酶发挥作用。然而,该复合物活性的调控机制尚不清楚。串联亲和纯化技术的应用现已鉴定出一种新的Cul1结合蛋白:TATA结合蛋白相互作用蛋白120A(TIP120A,也称为CAND1)。对哺乳动物细胞进行的免疫沉淀、免疫印迹和免疫荧光分析表明,TIP120A在细胞核中与Cul1发生物理结合,且这种相互作用由Cul1的一个中央区域介导,该区域不同于其与Skp1和Rbx1的结合位点。此外,研究表明TIP120A选择性地与未被NEDD8修饰的Cul1相互作用。Cul1-TIP120A复合物不包含Skp1,这增加了TIP120A与Skp1竞争结合Cul1的可能性。因此,这些观察结果表明,TIP120A可能通过与未被NEDD化的Cul1结合,从而阻止这种泛素连接酶的组装,进而作为SCF复合物的负调节因子发挥作用。

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