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泛素结合酶的尾部将多聚泛素链的合成从赖氨酸48连接构型重定向为一种新的非赖氨酸连接形式。

The tail of a ubiquitin-conjugating enzyme redirects multi-ubiquitin chain synthesis from the lysine 48-linked configuration to a novel nonlysine-linked form.

作者信息

Hodgins R, Gwozd C, Arnason T, Cummings M, Ellison M J

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Alberta, T6G 2H7 Canada.

出版信息

J Biol Chem. 1996 Nov 15;271(46):28766-71. doi: 10.1074/jbc.271.46.28766.

Abstract

The UBC1 ubiquitin-conjugating enzyme from Saccharomyces cerevisiae has an overlapping function with the UBC4 and UBC5 enzymes in the yeast stress response and an important role in the G0 to G1 transition that accompanies spore germination (Seufert, W., McGrath, J. P., and Jentsch, S. (1990) EMBO J. 9, 4573-4541). In the present work we report that the UBC1 enzyme assembles onto itself a multi-ubiquitin chain in vitro whose linkage configuration is dependent on the unconserved carboxyl-terminal extension or tail that is appended to its catalytic domain. Using chemical cleavage and site-specific mutagenesis, we have mapped the location of the chain to lysine 93 which lies near the active site within the catalytic domain. The ubiquitin molecule that anchors the chain is transferred to this lysine from the active site of the same UBC1 molecule. When the tail of UBC1 is deleted, the catalytic domain synthesizes a chain that consists of ubiquitin molecules uniformly linked to one another via lysine 48. In the presence of the tail, however, a chain is assembled that is composed of linkages that are stable to alkali but which do not utilize lysines. Furthermore, when the amino terminus of ubiquitin is blocked by an appended peptide tag, chain assembly reverts from this alternative configuration to the canonical lysine 48 variety. Taken together, these results suggest that the alternative chain is composed of linkages in which one ubiquitin molecule forms a peptide bond with the alpha-amino terminus of another, thereby supporting the emerging view that Ub can be attached to itself or other proteins in a variety of ways.

摘要

来自酿酒酵母的UBC1泛素结合酶在酵母应激反应中与UBC4和UBC5酶具有重叠功能,并且在孢子萌发伴随的G0到G1转变中起重要作用(Seufert, W., McGrath, J. P., and Jentsch, S. (1990) EMBO J. 9, 4573 - 4541)。在本研究中,我们报道UBC1酶在体外自身组装形成一条多泛素链,其连接构型取决于附加在其催化结构域上的非保守羧基末端延伸或尾巴。通过化学切割和位点特异性诱变,我们已将该链的位置定位到位于催化结构域活性位点附近的赖氨酸93。锚定该链的泛素分子从同一个UBC1分子的活性位点转移到这个赖氨酸上。当UBC1的尾巴缺失时,催化结构域合成一条由泛素分子通过赖氨酸48彼此均匀连接而成的链。然而,在有尾巴存在的情况下,会组装形成一条由对碱稳定但不利用赖氨酸的连接组成的链。此外,当泛素的氨基末端被附加的肽标签阻断时,链组装从这种替代构型恢复为典型的赖氨酸48类型。综上所述,这些结果表明替代链由一种连接组成,其中一个泛素分子与另一个泛素分子的α - 氨基末端形成肽键,从而支持了一种新出现的观点,即泛素可以以多种方式附着于自身或其他蛋白质。

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