Kentsis Alex, Gordon Ronald E, Borden Katherine L B
Structural Biology Program, Department of Physiology and Biophysics, Mount Sinai School of Medicine, New York University, New York 10029, USA.
Proc Natl Acad Sci U S A. 2002 Nov 26;99(24):15404-9. doi: 10.1073/pnas.202608799. Epub 2002 Nov 18.
RING domains act in a variety of unrelated biochemical reactions, with many of these domains forming key parts of supramolecular assemblies in cells. Here, we observe that purified RINGs from a variety of functionally unrelated proteins, including promyelocytic leukemia protein, KAP-1TIF1beta, Z, Mel18, breast cancer susceptibility gene product 1 (BRCA1), and BRCA1-associated RING domain (BARD1), self-assemble into supramolecular structures in vitro that resemble those they form in cells. RING bodies form polyvalent binding surfaces and scaffold multiple partner proteins. Separation of RING bodies from monomers reveals that self-assembly controls and amplifies their specific activities in two unrelated biochemistries: reduction of 5' mRNA cap affinity of eIF4E by promyelocytic leukemia protein and Z, and E3 ubiquitin conjugation activity of BARD1:BRCA1. Functional significance of self-assembly is underscored by partial restoration of assembly and E3 activity of cancer predisposing BRCA1 mutant by forced oligomerization. RING self-assembly creates bodies that act structurally as polyvalent scaffolds, thermodynamically by amplifying activities of partner proteins, and catalytically by spatiotemporal coupling of enzymatic reactions. These studies reveal a general paradigm of how supramolecular structures may function in cells.
环状结构域参与多种不相关的生化反应,其中许多结构域构成细胞中超分子组装体的关键部分。在此,我们观察到,从多种功能不相关的蛋白质中纯化得到的环状结构域,包括早幼粒细胞白血病蛋白、KAP-1 TIF1β、Z、Mel18、乳腺癌易感基因产物1(BRCA1)以及BRCA1相关环状结构域(BARD1),在体外自组装成超分子结构,类似于它们在细胞中形成的结构。环状聚集体形成多价结合表面并为多种伴侣蛋白提供支架。将环状聚集体与单体分离表明,自组装在两种不相关的生物化学过程中控制并放大了它们的特定活性:早幼粒细胞白血病蛋白和Z降低eIF4E的5' mRNA帽亲和力,以及BARD1:BRCA1的E3泛素连接活性。通过强制寡聚化部分恢复癌症易感BRCA1突变体的组装和E3活性,突出了自组装的功能意义。环状结构域自组装形成的聚集体在结构上作为多价支架起作用,在热力学上通过放大伴侣蛋白的活性起作用,在催化方面通过酶促反应的时空偶联起作用。这些研究揭示了超分子结构在细胞中发挥功能的一般模式。