Winborn Brett J, Travis Sue M, Todi Sokol V, Scaglione K Matthew, Xu Ping, Williams Aislinn J, Cohen Robert E, Peng Junmin, Paulson Henry L
Department of Neurology, University of Michigan, Ann Arbor, Michigan 48108, USA.
J Biol Chem. 2008 Sep 26;283(39):26436-43. doi: 10.1074/jbc.M803692200. Epub 2008 Jul 3.
Ubiquitin chain complexity in cells is likely regulated by a diverse set of deubiquitinating enzymes (DUBs) with distinct ubiquitin chain preferences. Here we show that the polyglutamine disease protein, ataxin-3, binds and cleaves ubiquitin chains in a manner suggesting that it functions as a mixed linkage, chain-editing enzyme. Ataxin-3 cleaves ubiquitin chains through its amino-terminal Josephin domain and binds ubiquitin chains through a carboxyl-terminal cluster of ubiquitin interaction motifs neighboring the pathogenic polyglutamine tract. Ataxin-3 binds both Lys(48)- or Lys(63)-linked chains yet preferentially cleaves Lys(63) linkages. Ataxin-3 shows even greater activity toward mixed linkage polyubiquitin, cleaving Lys(63) linkages in chains that contain both Lys(48) and Lys(63) linkages. The ubiquitin interaction motifs regulate the specificity of this activity by restricting what can be cleaved by the protease domain, demonstrating that linkage specificity can be determined by elements outside the catalytic domain of a DUB. These findings establish ataxin-3 as a novel DUB that edits topologically complex chains.
细胞中泛素链的复杂性可能受多种具有不同泛素链偏好的去泛素化酶(DUBs)调控。我们在此表明,多聚谷氨酰胺疾病蛋白ataxin-3以一种表明其作为混合连接链编辑酶发挥作用的方式结合并切割泛素链。Ataxin-3通过其氨基末端的Josephin结构域切割泛素链,并通过与致病性多聚谷氨酰胺序列相邻的羧基末端泛素相互作用基序簇结合泛素链。Ataxin-3既能结合赖氨酸(48)或赖氨酸(63)连接的链,又优先切割赖氨酸(63)连接。Ataxin-3对混合连接的多聚泛素表现出更高的活性,切割同时包含赖氨酸(48)和赖氨酸(63)连接的链中的赖氨酸(63)连接。泛素相互作用基序通过限制蛋白酶结构域能够切割的底物来调节这种活性的特异性,这表明连接特异性可由DUB催化结构域之外的元件决定。这些发现确立了ataxin-3作为一种编辑拓扑结构复杂链的新型DUB。