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首页> 外文期刊>Biochemistry >Insights into the Mechanism of Deubiquitination by JAMM Deubiquitinases from Cocrystal Structures of the Enzyme with the Substrate and Product
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Insights into the Mechanism of Deubiquitination by JAMM Deubiquitinases from Cocrystal Structures of the Enzyme with the Substrate and Product

机译:从酶与底物和产物的共晶结构中了解JAMM去泛素酶的去泛素化机理

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摘要

AMSH, a conserved zinc metallo deubiquitinase, controls downregulation and degradation of cell-surface receptors mediated by the endosomal sorting complexes required for transport (ESCRT) machinery. It displays high specificity toward the Lys63-linked polyubiquitin chain, which is used as a signal for ESCRT-mediated endosomal?lysosomal sorting of receptors. Herein, we report the crystal structures of the catalytic domain of AMSH orthologue Sst2 from fission yeast, its ubiquitin (product)-bound form, and its Lys63-linked diubiquitin (substrate)-bound form at 1.45, 1.7, and 2.3 ?, respectively. The structures reveal that the P-side product fragment maintains nearly all the contacts with the enzyme as seen with the P portion (distal ubiquitin) of the Lys63-linked diubiquitin substrate, with additional coordination of the Gly76 carboxylate group of the product with the active-site Zn~(2+). One of the product-bound structures described herein is the result of an attempt to cocrystallize the diubiquitin substrate bound to an active site mutant presumed to render the enzyme inactive, instead yielding a cocrystal structure of the enzyme bound to the P-side ubiquitin fragment of the substrate (distal ubiquitin). This fragment was generated in situ from the residual activity of the mutant enzyme. In this structure, the catalytic water is seen placed between the active-site Zn~(2+) and the carboxylate group of Gly76 of ubiquitin, providing what appears to be a snapshot of the active site when the product is about to depart. Comparison of this structure with that of the substrate-bound form suggests the importance of dynamics of a flexible flap near the active site in catalysis. The crystal structure of the Thr319Ile mutant of the catalytic domain of Sst2 provides insight into structural basis of microcephaly capillary malformation syndrome. Isothermal titration calorimetry yields a dissociation constant (K_D) of 10.2 ± 0.6 μM for the binding of ubiquitin to the enzyme, a value comparable to the K_M of the enzyme catalyzing hydrolysis of the Lys63- linked diubiquitin substrate (~20 μM). These results, together with the previously reported observation that the intracellular concentration of free ubiquitin (~20 μM) exceeds that of Lys63-linked polyubiquitin chains, imply that the free, cytosolic form of the enzyme remains inhibited by being tightly bound to free ubiquitin. We propose that when AMSH associates with endosomes, inhibition would be relieved because of ubiquitin binding domains present on its endosomal binding partners that would shift the balance toward better recognition of polyubiquitin chains via the avidity effect.
机译:AMSH是一种保守的锌金属去泛素化锌,可控制运输(ESCRT)所需的内体分选复合物介导的细胞表面受体的下调和降解。它对Lys63连接的聚泛素链显示出高特异性,该链被用作ESCRT介导的内体溶酶体受体分类信号。在此,我们报道了裂变酵母中AMSH直向同源物Sst2催化结构域的晶体结构,其泛素(产物)结合形式和其Lys63连接的双泛素(底物)结合形式分别在1.45、1.7和2.3? 。结构表明,与Lys63连接的双泛素底物的P部分(远端泛素)所见,P侧产物片段几乎维持了与酶的所有接触,并且产物的Gly76羧酸酯基团与活性物质具有额外的配位作用位Zn〜(2+)。本文所述的产物结合的结构之一是尝试使结合于假定使该酶失活的活性位点突变体的双泛素底物共结晶的结果,而不是产生与该蛋白的P-侧泛素片段结合的酶的共晶结构。底物(远端泛素)。该片段是由突变酶的残留活性原位产生的。在这种结构中,可以看到催化水位于活性位点Zn〜(2+)和泛素Gly76的羧酸根之间,提供了当产品即将离开时活性位点的快照。该结构与底物结合形式的结构的比较表明,催化中活性位点附近的柔性瓣的动力学的重要性。 Sst2的催化域的Thr319Ile突变体的晶体结构提供了洞察小头毛细血管畸形综合征的结构基础。等温滴定量热法得出的泛素与酶结合的解离常数(K_D)为10.2±0.6μM,该值与催化Lys63连接的双泛素底物水解的酶的K_M相当(〜20μM)。这些结果以及先前报道的观察结果表明,细胞内游离泛素的浓度(〜20μM)超过了与Lys63连接的多聚泛素链的浓度,这表明该酶的游离,胞浆形式仍然与游离泛素紧密结合而受到抑制。我们提出,当AMSH与内体结合时,由于其内体结合伴侣上存在泛素结合结构域,从而使平衡朝着通过亲和力效应更好地识别多泛素链的方向转移,因此抑制作用将得以缓解。

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