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Dynamic Conformations of Nucleophosmin (NPM1) at a Key Monomer-Monomer Interface Affect Oligomer Stability and Interactions with Granzyme B

机译:关键单体-单体界面上核糖蛋白(NPM1)的动态构象影响寡聚物的稳定性和与颗粒酶B的相互作用。

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摘要

Nucleophosmin (NPM1) is an abundant, nucleolar tumor antigen with important roles in cell proliferation and putative contributions to oncogenesis. Wild-type NPM1 forms pentameric oligomers through interactions at the amino-terminal core domain. A truncated form of NPM1 found in some hepatocellular carcinoma tissue formed an unusually stable oligomer and showed increased susceptibility to cleavage by granzyme B. Initiation of translation at the seventh methionine generated a protein (M7-NPM) that shared all these properties. We used deuterium exchange mass spectrometry (DXMS) to perform a detailed structural analysis of wild-type NPM1 and M7-NPM, and found dynamic conformational shifts or local “unfolding” at a specific monomer-monomer interface which included the β-hairpin “latch.” We tested the importance of interactions at the β-hairpin “latch” by replacing a conserved tyrosine in the middle of the β-hairpin loop with glutamic acid, generating Y67E-NPM. Y67E-NPM did not form stable oligomers and further, prevented wild-type NPM1 oligomerization in a dominant-negative fashion, supporting the critical role of the β-hairpin “latch” in monomer-monomer interactions. Also, we show preferential cleavage by granzyme B at one of two available aspartates (either D161 or D122) in M7-NPM and Y67E-NPM, whereas wild-type NPM1 was cleaved at both sites. Thus, we observed a correlation between the propensity to form oligomers and granzyme B cleavage site selection in nucleophosmin proteins, suggesting that a small change at an important monomer-monomer interface can affect conformational shifts and impact protein-protein interactions.
机译:核蛋白(NPM1)是一种丰富的核仁肿瘤抗原,在细胞增殖中起重要作用,并可能对肿瘤发生做出贡献。野生型NPM1通过氨基末端核心结构域上的相互作用形成五聚体寡聚物。在一些肝细胞癌组织中发现的NPM1的截短形式形成了异常稳定的寡聚物,并显示出对颗粒酶B裂解的敏感性增加。第七个蛋氨酸的翻译起始产生了具有所有这些特性的蛋白质(M7-NPM)。我们使用氘交换质谱(DXMS)对野生型NPM1和M7-NPM进行了详细的结构分析,发现在特定的单体-单体界面(包括β-发夹“闩锁”)上存在动态构象变化或局部“展开” 。”我们通过用谷氨酸替换β-发夹环中间的保守酪氨酸,生成Y67E-NPM,测试了在β-发夹“闩锁”处相互作用的重要性。 Y67E-NPM没有形成稳定的低聚物,并且进一步以显性负性方式阻止了野生型NPM1的低聚,从而支持了β-发夹“闩锁”在单体-单体相互作用中的关键作用。同样,我们在M7-NPM和Y67E-NPM中的两个可用天冬氨酸之一(D161或D122)之一上显示了由颗粒酶B的优先切割,而野生型NPM1在两个位点均被切割。因此,我们观察到了形成寡聚体的倾向与核磷蛋白中粒酶B裂解位点选择之间的相关性,表明在重要的单体-单体界面上的微小变化会影响构象转变并影响蛋白质-蛋白质相互作用。

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