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利用化学修饰掺入的非天然氨基酸深入了解 Aurora-A 激酶的激活。

Insights into Aurora-A kinase activation using unnatural amino acids incorporated by chemical modification.

机构信息

Cancer Research UK Cancer Therapeutics Unit, Division of Cancer Therapeutics, The Institute of Cancer Research , 15 Cotswold Road, Sutton, Surrey, SM2 5NG, U.K.

出版信息

ACS Chem Biol. 2013 Oct 18;8(10):2184-91. doi: 10.1021/cb400425t. Epub 2013 Aug 7.

Abstract

Most protein kinases are regulated through activation loop phosphorylation, but the contributions of individual sites are largely unresolved due to insufficient control over sample phosphorylation. Aurora-A is a mitotic Ser/Thr protein kinase that has two regulatory phosphorylation sites on its activation loop, T287 and T288. While phosphorylation of T288 is known to activate the kinase, the function of T287 phosphorylation is unclear. We applied site-directed mutagenesis and selective chemical modification to specifically introduce bioisosteres for phospho-threonine and other unnatural amino acids at these positions. Modified Aurora-A proteins were characterized using a biochemical assay measuring substrate phosphorylation. Replacement of T288 with glutamate and aspartate weakly stimulated activity. Phospho-cysteine, installed by chemical synthesis from a corresponding cysteine residue introduced at position 288, showed catalytic activity approaching that of the comparable phospho-serine protein. Unnatural amino acid residues, with longer side chains, inserted at position 288 were autophosphorylated and supported substrate phosphorylation. Aurora-A activity is enhanced by phosphorylation at position 287 alone but is suppressed when position 288 is also phosphorylated. This is rationalized by competition between phosphorylated T287 and T288 for a binding site composed of arginines, based on a structure of Aurora-A in which phospho-T287 occupies this site. This is, to our knowledge, the first example of a Ser/Thr kinase whose activity is controlled by the phosphorylation state of adjacent residues in its activation loop. Overall we demonstrate an approach that combines mutagenesis and selective chemical modification of selected cysteine residues to investigate otherwise impenetrable aspects of kinase regulation.

摘要

大多数蛋白激酶通过激活环磷酸化进行调节,但由于对样品磷酸化的控制不足,个别位点的贡献在很大程度上仍未得到解决。Aurora-A 是一种有丝分裂丝氨酸/苏氨酸蛋白激酶,其激活环上有两个调节磷酸化位点,T287 和 T288。虽然 T288 的磷酸化已知能激活激酶,但 T287 磷酸化的功能尚不清楚。我们应用定点突变和选择性化学修饰,专门在这些位置引入磷酸苏氨酸的生物等排体和其他非天然氨基酸。使用测量底物磷酸化的生化测定法对修饰的 Aurora-A 蛋白进行了表征。用谷氨酸和天冬氨酸替代 T288 会弱刺激活性。用化学合成方法从引入 288 位的相应半胱氨酸残基安装的磷酸半胱氨酸,显示出接近可比磷酸丝氨酸蛋白的催化活性。插入 288 位的侧链较长的非天然氨基酸残基会自动磷酸化并支持底物磷酸化。单独在位置 287 磷酸化可增强 Aurora-A 活性,但当位置 288 也被磷酸化时,活性会受到抑制。这可以通过磷酸化的 T287 和 T288 之间的竞争来解释,因为它们竞争一个由精氨酸组成的结合位点,这是基于 Aurora-A 的结构,其中磷酸化的 T287 占据了这个位点。这是我们所知的第一个其活性由激活环中相邻残基的磷酸化状态控制的 Ser/Thr 激酶的例子。总的来说,我们展示了一种结合突变和对选定半胱氨酸残基的选择性化学修饰的方法,以研究激酶调节中原本无法穿透的方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9371/3805324/1dc291488e9d/cb-2013-00425t_0001.jpg

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