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人源MST3激酶与腺嘌呤、ADP和Mn2+结合的结构。

Structures of human MST3 kinase in complex with adenine, ADP and Mn2+.

作者信息

Ko Tzu-Ping, Jeng Wen-Yih, Liu Chia-I, Lai Ming-Derg, Wu Chun-Lan, Chang Wei-Jung, Shr Hui-Lin, Lu Te-Jung, Wang Andrew H-J

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei 115, Taiwan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2010 Feb;66(Pt 2):145-54. doi: 10.1107/S0907444909047507. Epub 2010 Jan 22.

Abstract

The MST family is a subclass of mammalian serine/threonine kinases that are related to the yeast sterile-20 protein and are implicated in regulating cell growth and transformation. The MST3 protein contains a 300-residue catalytic domain and a 130-residue regulatory domain, which can be cleaved by caspase and activated by autophosphorylation, promoting apoptosis. Here, five crystal structures of the catalytic domain of MST3 are presented, including a complex with ADP and manganese, a unique cofactor preferred by the enzyme, and a complex with adenine. Similar to other protein kinases, the catalytic domain of MST3 folds into two lobes: the smaller N lobe forms the nucleotide-binding site and the larger C lobe recognizes the polypeptide substrate. The bound ADP and Mn(2+) ions are covered by a glycine-rich loop and held in place by Asn149 and Asp162. A different orientation was observed for the ligand in the MST3-adenine complex. In the activation loop, the side chain of Thr178 is phosphorylated and is sandwiched by Arg143 and Arg176. Comparison of this structure with other similar kinase structures shows a 180 degrees rotation of the loop, leading to activation of the enzyme. The well defined protein-ligand interactions also provide useful information for the design of potent inhibitors.

摘要

MST家族是哺乳动物丝氨酸/苏氨酸激酶的一个亚类,与酵母不育20蛋白相关,参与调节细胞生长和转化。MST3蛋白包含一个由300个残基组成的催化结构域和一个由130个残基组成的调节结构域,该调节结构域可被半胱天冬酶切割并通过自磷酸化激活,从而促进细胞凋亡。本文展示了MST3催化结构域的五个晶体结构,包括与ADP和锰形成的复合物(锰是该酶优先选择的一种独特辅因子)以及与腺嘌呤形成的复合物。与其他蛋白激酶类似,MST3的催化结构域折叠成两个叶:较小的N叶形成核苷酸结合位点,较大的C叶识别多肽底物。结合的ADP和Mn(2+)离子被一个富含甘氨酸的环覆盖,并由Asn149和Asp162固定在位。在MST3-腺嘌呤复合物中观察到配体的方向不同。在激活环中,Thr178的侧链被磷酸化,并夹在Arg143和Arg176之间。将该结构与其他类似激酶结构进行比较,发现该环旋转了180度,从而导致酶的激活。明确的蛋白质-配体相互作用也为设计强效抑制剂提供了有用信息。

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