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首页> 外文期刊>Molecular & cellular proteomics: MCP >Development of a chemical genetic approach for human aurora B kinase identifies novel substrates of the chromosomal passenger complex
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Development of a chemical genetic approach for human aurora B kinase identifies novel substrates of the chromosomal passenger complex

机译:人类极光B激酶化学遗传方法的开发确定了染色体乘客复合物的新型底物

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摘要

To understand how the chromosomal passenger complex ensures chromosomal stability, it is crucial to identify its substrates and to find ways to specifically inhibit the enzymatic core of the complex, Aurora B. We therefore developed a chemical genetic approach to selectively inhibit human Aurora B. By mutating the gatekeeper residue Leu-154 in the kinase active site, the ATP-binding pocket was enlarged, but kinase function was severely disrupted. A unique second site suppressor mutation was identified that rescued kinase activity in the Leu-154 mutant and allowed the accommodation of bulky N 6-substituted adenine analogs. Using this analog-sensitive Aurora B kinase, we found that retention of the chromosomal passenger complex at the centromere depends on Aurora B kinase activity. Furthermore, analog-sensitive Aurora B was able to use bulky ATPγS analogs and could thiophosphorylate multiple proteins in cell extracts. Utilizing an unbiased approach for kinase substrate mapping, we identified several novel substrates of Aurora B, including the nucleosomal- binding protein HMGN2. We confirmed that HMGN2 is a bona fide Aurora B substrate in vivo and show that its dynamic association to chromatin is controlled by Aurora B.
机译:为了了解染色体客体复合物如何确保染色体稳定性,至关重要的是确定其底物并找到特异性抑制复合物Aurora B酶核心的方法。因此,我们开发了一种化学遗传方法来选择性抑制人AuroraB。在激酶活性位点突变看门者残基Leu-154,ATP结合袋增大,但激酶功能受到严重破坏。鉴定出独特的第二位点抑制子突变,该突变拯救了Leu-154突变体中的激酶活性并允许容纳庞大的N 6取代的腺嘌呤类似物。使用这种类似物敏感的Aurora B激酶,我们发现染色体着丝粒在着丝粒处的保留取决于Aurora B激酶的活性。此外,对类似物敏感的Aurora B能够使用庞大的ATPγS类似物,并且可以硫磷酸化细胞提取物中的多种蛋白质。利用无偏见的激酶底物作图方法,我们鉴定了Aurora B的几种新型底物,包括核小体结合蛋白HMGN2。我们证实HMGN2在体内是真正的Aurora B底物,并表明其与染色质的动态关联受Aurora B控制。

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