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首页> 外文期刊>Protein & Cell >Crystal structure of a PP2A B56-BubR1 complex and its implications for PP2A substrate recruitment and localization
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Crystal structure of a PP2A B56-BubR1 complex and its implications for PP2A substrate recruitment and localization

机译:PP2A B56-BubR1复合物的晶体结构及其对PP2A底物募集和定位的影响

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摘要

Protein phosphatase 2A (PP2A) accounts for the majority of total Ser/Thr phosphatase activities in most cell types and regulates many biological processes. PP2A holoenzymes contain a scaffold A subunit, a catalytic C subunit, and one of the regulatory/targeting B subunits. How the B subunit controls PP2A localization and substrate specificity, which is a crucial aspect of PP2A regulation, remains poorly understood. The kinetochore is a critical site for PP2A functioning, where PP2A orchestrates chromosome segregation through its interactions with BubR1. The PP2A-BubR1 interaction plays important roles in both spindle checkpoint silencing and stable microtubule-kinetochore attachment. Here we present the crystal structure of a PP2A B56-BubR1 complex, which demonstrates that a conserved BubR1 LxxIxE motif binds to the concave side of the B56 pseudo-HEAT repeats. The BubR1 motif binds to a groove formed between B56 HEAT repeats 3 and 4, which is quite distant from the B56 binding surface for PP2A catalytic C subunit and thus is unlikely to affect PP2A activity. In addition, the BubR1 binding site on B56 is far from the B56 binding site of shugoshin, another kinetochore PP2A-binding protein, and thus BubR1 and shugoshin can potentially interact with PP2A-B56 simultaneously. Our structural and biochemical analysis indicates that other proteins with the LxxIxE motif may also bind to the same PP2A B56 surface. Thus, our structure of the PP2A B56-BubR1 complex provides important insights into how the B56 subunit directs the recruitment of PP2A to specific targets.
机译:在大多数细胞类型中,蛋白质磷酸酶2A(PP2A)占总Ser / Thr磷酸酶活性的大部分,并调节许多生物学过程。 PP2A全酶含有一个支架A亚基,一个催化C亚基和一个调控/靶向B亚基。 B亚基如何控制PP2A的定位和底物特异性,这是PP2A调节的关键方面,仍然知之甚少。线粒体是PP2A功能的关键部位,在那里PP2A通过与BubR1的相互作用来协调染色体的分离。 PP2A-BubR1相互作用在纺锤体检查点沉默和稳定的微管-动线粒附着中都起着重要作用。在这里,我们介绍了PP2A B56-BubR1复合物的晶体结构,这表明保守的BubR1 LxxIxE基序与B56假HEAT重复序列的凹面结合。 BubR1基序与B56 HEAT重复序列3和4之间形成的凹槽结合,该凹槽与PP2A催化C亚基的B56结合表面相距很远,因此不太可能影响PP2A活性。此外,B56上的BubR1结合位点与守护神PP2A另一种结合蛋白shugoshin的B56结合位点相距甚远,因此BubR1和shugoshin可能同时与PP2A-B56相互作用。我们的结构和生化分析表明,具有LxxIxE基序的其他蛋白质也可能与相同的PP2A B56表面结合。因此,我们的PP2A B56-BubR1复合物结构为B56亚基如何将PP2A募集到特定目标提供了重要的见识。

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