Hill C P, Johnston N L, Cohen R E
Department of Chemistry and Biochemistry, University of California, Los Angeles 90024-1570.
Proc Natl Acad Sci U S A. 1993 May 1;90(9):4136-40. doi: 10.1073/pnas.90.9.4136.
Covalent attachment of ubiquitin marks substrates for proteolysis, but features that identify ubiquitination targets such as chicken egg white lysozyme are poorly understood. Recognition of lysozyme first requires reduction of Cys-6 Cys-127, one of its four native disulfide bonds, and Cys-6,Cys-127-carboxymethylated (6,127-rcm) lysozyme can mimic this three-disulfide intermediate. The 6,127-rcm form of lysozyme is known to retain a substantially native-like conformation in solution, and we demonstrate that it is this folded structure that is recognized for ubiquitination. Because native lysozyme is not a substrate, differences between the native and three-disulfide structures must include features responsible for selective ubiquitination. The 1.9-A resolution crystal structure of 6,127-rcm-lysozyme, reported here, affords a view of this ubiquitin-dependent degradation substrate. Two conformers of 6,127-rcm-lysozyme were obtained in the crystal. These differ uniquely from crystal forms of native lysozyme by displacement of the C-terminal residues. The structures suggest that localized unfolding at the C terminus of three-disulfide lysozyme allows the complex of E3 alpha (ubiquitin-protein ligase) and E2 (ubiquitin-carrier protein) to bind to a surface that includes Lys-1 and the putative ubiquitination site Lys-13. From this we infer that the N-terminal and internal substrate recognition sites on the E3 alpha.E2 complex are separated by approximately 20 A.
泛素的共价连接标记底物以便进行蛋白水解,但识别泛素化靶标的特征,如鸡蛋白溶菌酶,却鲜为人知。溶菌酶的识别首先需要还原其四个天然二硫键之一的Cys-6与Cys-127,而Cys-6、Cys-127-羧甲基化(6,127-rcm)的溶菌酶可以模拟这种三硫键中间体。已知6,127-rcm形式的溶菌酶在溶液中保留了基本类似天然的构象,并且我们证明正是这种折叠结构被识别用于泛素化。由于天然溶菌酶不是底物,天然结构与三硫键结构之间的差异必定包括负责选择性泛素化的特征。本文报道的6,127-rcm-溶菌酶的1.9 Å分辨率晶体结构,提供了这种依赖泛素降解底物的视图。在晶体中获得了6,127-rcm-溶菌酶的两种构象。这些构象与天然溶菌酶的晶体形式唯一不同之处在于C末端残基的位移。这些结构表明,三硫键溶菌酶C末端的局部去折叠允许E3α(泛素-蛋白连接酶)和E2(泛素载体蛋白)复合物结合到包括Lys-1和假定的泛素化位点Lys-13的表面。由此我们推断,E3α.E2复合物上的N末端和内部底物识别位点相隔约20 Å。