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BTB蛋白MEL-26是CUL-3泛素连接酶的底物特异性衔接子。

The BTB protein MEL-26 is a substrate-specific adaptor of the CUL-3 ubiquitin-ligase.

作者信息

Pintard Lionel, Willis John H, Willems Andrew, Johnson Jacque-Lynne F, Srayko Martin, Kurz Thimo, Glaser Sarah, Mains Paul E, Tyers Mike, Bowerman Bruce, Peter Matthias

机构信息

Institute of Biochemistry ETH, Hönggerberg 8093, Zürich, Switzerland.

出版信息

Nature. 2003 Sep 18;425(6955):311-6. doi: 10.1038/nature01959. Epub 2003 Sep 3.

Abstract

Many biological processes, such as development and cell cycle progression are tightly controlled by selective ubiquitin-dependent degradation of key substrates. In this pathway, the E3-ligase recognizes the substrate and targets it for degradation by the 26S proteasome. The SCF (Skp1-Cul1-F-box) and ECS (Elongin C-Cul2-SOCS box) complexes are two well-defined cullin-based E3-ligases. The cullin subunits serve a scaffolding function and interact through their C terminus with the RING-finger-containing protein Hrt1/Roc1/Rbx1, and through their N terminus with Skp1 or Elongin C, respectively. In Caenorhabditis elegans, the ubiquitin-ligase activity of the CUL-3 complex is required for degradation of the microtubule-severing protein MEI-1/katanin at the meiosis-to-mitosis transition. However, the molecular composition of this cullin-based E3-ligase is not known. Here we identified the BTB-containing protein MEL-26 as a component required for degradation of MEI-1 in vivo. Importantly, MEL-26 specifically interacts with CUL-3 and MEI-1 in vivo and in vitro, and displays properties of a substrate-specific adaptor. Our results suggest that BTB-containing proteins may generally function as substrate-specific adaptors in Cul3-based E3-ubiquitin ligases.

摘要

许多生物学过程,如发育和细胞周期进程,都受到关键底物选择性泛素依赖性降解的严格调控。在这条途径中,E3连接酶识别底物并将其靶向26S蛋白酶体进行降解。SCF(Skp1-Cul1-F-box)和ECS(Elongin C-Cul2-SOCS box)复合物是两种明确的基于cullin的E3连接酶。cullin亚基起支架作用,通过其C末端与含RING结构域的蛋白Hrt1/Roc1/Rbx1相互作用,并分别通过其N末端与Skp1或Elongin C相互作用。在秀丽隐杆线虫中,CUL-3复合物的泛素连接酶活性是减数分裂到有丝分裂转变时微管切断蛋白MEI-1/katanin降解所必需的。然而,这种基于cullin的E3连接酶的分子组成尚不清楚。在这里,我们鉴定出含BTB结构域的蛋白MEL-26是体内MEI-1降解所需的一个组分。重要的是,MEL-26在体内和体外都能特异性地与CUL-3和MEI-1相互作用,并表现出底物特异性衔接子的特性。我们的结果表明,含BTB结构域的蛋白可能通常在基于Cul3的E3泛素连接酶中作为底物特异性衔接子发挥作用。

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