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Crystal Structure of the Ca2+/Calmodulin-dependent Protein Kinase Kinase in Complex with the Inhibitor STO-609

机译:Ca2 + /钙调蛋白依赖性蛋白激酶激酶与抑制剂STO-609的复合物的晶体结构

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摘要

Ca2+/calmodulin (CaM)-dependent protein kinase (CaMK) kinase (CaMKK) is a member of the CaMK cascade that mediates the response to intracellular Ca2+ elevation. CaMKK phosphorylates and activates CaMKI and CaMKIV, which directly activate transcription factors. In this study, we determined the 2.4 Å crystal structure of the catalytic kinase domain of the human CaMKKβ isoform complexed with its selective inhibitor, STO-609. The structure revealed that CaMKKβ lacks the αD helix and that the equivalent region displays a hydrophobic molecular surface, which may reflect its unique substrate recognition and autoinhibition. Although CaMKKβ lacks the activation loop phosphorylation site, the activation loop is folded in an active-state conformation, which is stabilized by a number of interactions between amino acid residues conserved among the CaMKK isoforms. An in vitro analysis of the kinase activity confirmed the intrinsic activity of the CaMKKβ kinase domain. Structure and sequence analyses of the STO-609-binding site revealed amino acid replacements that may affect the inhibitor binding. Indeed, mutagenesis demonstrated that the CaMKKβ residue Pro274, which replaces the conserved acidic residue of other protein kinases, is an important determinant for the selective inhibition by STO-609. Therefore, the present structure provides a molecular basis for clarifying the known biochemical properties of CaMKKβ and for designing novel inhibitors targeting CaMKKβ and the related protein kinases.
机译:Ca 2 + /钙调蛋白(CaM)依赖性蛋白激酶(CaMK)激酶(CaMKK)是CaMK级联的成员,介导对细胞内Ca 2 + 升高的反应。 CaMKK磷酸化并激活直接激活转录因子的CaMKI和CaMKIV。在这项研究中,我们确定了与其选择性抑制剂STO-609复合的人CaMKKβ同工型的催化激酶结构域的2.4Å晶体结构。该结构表明,CaMKKβ缺少αD螺旋,并且等效区域显示疏水分子表面,这可能反映了其独特的底物识别和自抑制作用。尽管CaMKKβ缺少激活环的磷酸化位点,但激活环以活性态构象折叠,该构象由CaMKK同工型之间保守的氨基酸残基之间的许多相互作用所稳定。激酶活性的体外分析证实了CaMKKβ激酶结构域的固有活性。 STO-609结合位点的结构和序列分析揭示了可能影响抑制剂结合的氨基酸置换。实际上,诱变表明,CaMKKβ残基Pro 274 取代了其他蛋白激酶的保守酸性残基,是STO-609选择性抑制的重要决定因素。因此,本结构为阐明CaMKKβ的已知生化特性和设计靶向CaMKKβ和相关蛋白激酶的新型抑制剂提供了分子基础。

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