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A Cancer-associated Aurora A Mutant Is Mislocalized and Misregulated Due to Loss of Interaction with TPX2

机译:癌症相关的极光突变体由于与TPX2相互作用的丧失而被错误定位和错误调节。

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摘要

Mutations in protein kinases can drive cancer through alterations of the kinase activity or by uncoupling kinase activity from regulation. Changes to protein expression in Aurora A, a mitotic Ser/Thr kinase, are associated with the development of several human cancers, but the effects of somatic cancer-associated mutations have not been determined. In this study we show that Aurora A kinase activity is altered in different ways in three somatic cancer-associated mutations located within the catalytic domain; Aurora A(V174M) shows constitutively increased kinase activity, Aurora A(S155R) activity is decreased primarily due to misregulation, and Aurora A(S361*) activity is ablated due to loss of structural integrity. These alterations suggest vastly different mechanisms for the role of these three mutations in human cancer. We have further characterized the Aurora A(S155R) mutant protein, found that its reduced cellular activity and mislocalization are due to loss of interaction with TPX2, and deciphered the structural basis of the disruption at 2.5 Å resolution. Previous studies have shown that disruption of the Aurora A/TPX2 interaction results in defective spindles that generate chromosomal abnormalities. In a panel of 40 samples from microsatellite instability-positive colon cancer patients, we found one example in which the tumor contained only Aurora A(S155R), whereas the normal tissue contained only wild-type Aurora A. We propose that the S155R mutation is an example of a somatic mutation associated with this tumor type, albeit at modest frequency, that could promote aneuploidy through the loss of regulated interactions between Aurora A and its protein partners.
机译:蛋白激酶的突变可通过激酶活性的改变或使激酶活性与调节脱钩来驱动癌症。 Aurora A(一种有丝分裂的Ser / Thr激酶)中蛋白质表达的变化与几种人类癌症的发生有关,但尚未确定与体癌相关的突变的影响。在这项研究中,我们显示了位于催化域内的三种与体细胞癌相关的突变以不同的方式改变了Aurora A激酶的活性。 Aurora A(V174M)显示出组成性增加的激酶活性,Aurora A(S155R)活性主要是由于调节失调而降低,而Aurora A(S361 *)活性由于结构完整性的丧失而被消除。这些改变表明这三种突变在人类癌症中的作用机理大不相同。我们进一步表征了Aurora A(S155R)突变蛋白,发现其细胞活性降低和定位错误是由于与TPX2相互作用的丧失,并以2.5Å的分辨率破译了破坏的结构基础。先前的研究表明,Aurora A / TPX2相互作用的破坏会导致纺锤出现缺陷,从而产生染色体异常。在一组来自微卫星不稳定性阳性结肠癌患者的40个样本中,我们发现了一个例子,其中肿瘤仅包含Aurora A(S155R),而正常组织仅包含野生型AuroraA。我们建议S155R突变为与这种肿瘤类型相关的体细胞突变的一个例子,尽管其发生频率适中,但它可能会通过丢失Aurora A及其蛋白伴侣之间的调节相互作用而促进非整倍性。

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