泛素-去泛素酶复合物通过二硫键共结晶。

IF 2.6 4区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS Acta Crystallographica. Section D, Structural Biology Pub Date : 2023-11-01 Epub Date: 2023-10-25 DOI:10.1107/S2059798323008501
Kristos I Negron Teron, Chittaranjan Das
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引用次数: 0

摘要

去泛素酶(DUBs)识别泛素(Ub)的结构表征在很大程度上依赖于DUB通过其催化半胱氨酸与Ub C-末端亲电试剂的共价络合。Ub亲电试剂是通过内部化学结合化学合成获得的。在这里,有人问DUB-Ub共价复合物是否可以通过更简单的二硫化物化学来获得,使用Ub半胱氨酸突变体,其中最后一个甘氨酸被半胱氨酸取代。Ub半胱氨酸突变体在一组真核和原核DUB中显示出二硫化物形成的广泛可变性,其中一些没有显示出可检测的反应,而另一些则强烈产生二硫化物复合物。使用这种方法,结晶了两个二硫键连接的泛素结合复合物,一个涉及嗜肺军团菌效应子SdeA-DUB,另一个涉及Orientia效应子OtDUB。这些DUB之前分别使用C末端亲电策略和非共价络合以Ub结合的形式结晶。虽然二硫键连接的SdeA-DUB-Ub复合物如预期结晶,但在OtDUB复合物中,与Ub突变体的二硫键涉及不同于催化半胱氨酸的半胱氨酸。SdeA-DUB催化半胱氨酸形成的二硫化物伴随着携带活性位点半胱氨酸的螺旋的局部畸变,而OtDUB使用表面暴露的半胱氨酸与Ub突变体反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cocrystallization of ubiquitin-deubiquitinase complexes through disulfide linkage.

Structural characterization of the recognition of ubiquitin (Ub) by deubiquitinases (DUBs) has largely relied on covalent complexation of the DUB through its catalytic cysteine with a Ub C-terminal electrophile. The Ub electrophiles are accessed through intein chemistry in conjunction with chemical synthesis. Here, it was asked whether DUB-Ub covalent complexes could instead be accessed by simpler disulfide chemistry using a Ub cysteine mutant in which the last glycine has been replaced with a cysteine. The Ub cysteine mutant displayed a wide variability in disulfide formation across a panel of eukaryotic and prokaryotic DUBs, with some showing no detectable reaction while others robustly produced a disulfide complex. Using this approach, two disulfide-linked ubiquitin-bound complexes were crystallized, one involving the Legionella pneumophila effector SdeA DUB and the other involving the Orientia effector OtDUB. These DUBs had previously been crystallized in Ub-bound forms using the C-terminal electrophile strategy and noncovalent complexation, respectively. While the disulfide-linked SdeA DUB-Ub complex crystallized as expected, in the OtDUB complex the disulfide bond to the Ub mutant involved a cysteine that differed from the catalytic cysteine. Disulfide formation with the SdeA DUB catalytic cysteine was accompanied by local distortion of the helix carrying the active-site cysteine, whereas OtDUB reacted with the Ub mutant using a surface-exposed cysteine.

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来源期刊
Acta Crystallographica. Section D, Structural Biology
Acta Crystallographica. Section D, Structural Biology BIOCHEMICAL RESEARCH METHODSBIOCHEMISTRY &-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
4.50
自引率
13.60%
发文量
216
期刊介绍: Acta Crystallographica Section D welcomes the submission of articles covering any aspect of structural biology, with a particular emphasis on the structures of biological macromolecules or the methods used to determine them. Reports on new structures of biological importance may address the smallest macromolecules to the largest complex molecular machines. These structures may have been determined using any structural biology technique including crystallography, NMR, cryoEM and/or other techniques. The key criterion is that such articles must present significant new insights into biological, chemical or medical sciences. The inclusion of complementary data that support the conclusions drawn from the structural studies (such as binding studies, mass spectrometry, enzyme assays, or analysis of mutants or other modified forms of biological macromolecule) is encouraged. Methods articles may include new approaches to any aspect of biological structure determination or structure analysis but will only be accepted where they focus on new methods that are demonstrated to be of general applicability and importance to structural biology. Articles describing particularly difficult problems in structural biology are also welcomed, if the analysis would provide useful insights to others facing similar problems.
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