首页> 外文期刊>Acta crystallographica, Section D. Biological crystallography >The crystal structure of phosphorylated MAPK13 reveals common structural features and differences in p38 MAPK family activation
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The crystal structure of phosphorylated MAPK13 reveals common structural features and differences in p38 MAPK family activation

机译:磷酸化的MAPK13的晶体结构揭示了p38 MAPK家族激活的共同结构特征和差异

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The p38 MAP kinases (p38 MAPKs) represent an important family centrally involved in mediating extracellular signaling. Recent studies indicate that family members such as MAPK13 (p38 delta) display a selective cellular and tissue expression and are therefore involved in specific diseases. Detailed structural studies of all p38 MAPK family members are crucial for the design of specific inhibitors. In order to facilitate such ventures, the structure of MAPK13 was determined in both the inactive (unphosphorylated; MAPK13) and active (dual phosphorylated; MAPK13/pTpY) forms. Here, the first preparation, crystallization and structure determination of MAPK13/pTpY are presented and the structure is compared with the previously reported structure of MAPK13 in order to facilitate studies for structure-based drug design. A comprehensive analysis of inactive versus active structures for the p38 MAPK family is also presented. It is found that MAPK13 undergoes a larger interlobe configurational rearrangement upon activation compared with MAPK14. Surprisingly, the analysis of activated p38 MAPK structures (MAP12/pTpY, MAPK13/pTpY and MAPK14/pTpY) reveals that, despite a high degree of sequence similarity, different side chains are used to coordinate the phosphorylated residues. There are also differences in the rearrangement of the hinge region that occur in MAPK14 compared with MAPK13 which would affect inhibitor binding. A thorough examination of all of the active (phosphorylated) and inactive (unphosphorylated) p38 MAPK family member structures was performed to reveal a common structural basis of activation for the p38 MAP kinase family and to identify structural differences that may be exploited for developing family member-specific inhibitors.
机译:p38 MAP激酶(p38 MAPKs)代表了一个重要的家族,主要参与介导细胞外信号传导。最近的研究表明,诸如MAPK13(p38 delta)的家庭成员表现出选择性的细胞和组织表达,因此与特定疾病有关。所有p38 MAPK家族成员的详细结构研究对于特异性抑制剂的设计至关重要。为了促进这种冒险,以非活性形式(未磷酸化; MAPK13)和活性形式(双磷酸化; MAPK13 / pTpY)形式确定了MAPK13的结构。在此,介绍了MAPK13 / pTpY的首次制备,结晶和结构确定,并将该结构与先前报道的MAPK13的结构进行了比较,以便于进行基于结构的药物设计研究。还介绍了针对p38 MAPK家族的非活动结构与活动结构的综合分析。发现与MAPK14相比,MAPK13在激活时经历更大的叶间构型重排。出乎意料的是,对激活的p38 MAPK结构(MAP12 / pTpY,MAPK13 / pTpY和MAPK14 / pTpY)的分析表明,尽管序列高度相似,但仍使用不同的侧链来协调磷酸化的残基。与MAPK13相比,MAPK14中发生的铰链区重排也存在差异,这会影响抑制剂的结合。对所有活动的(磷酸化的)和非活动的(非磷酸化的)p38 MAPK家族成员结构进行了彻底检查,以揭示p38 MAP激酶家族激活的常见结构基础,并确定可用于发育中的家族成员的结构差异特异性抑制剂。

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