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首页> 外文期刊>Acta crystallographica. Section D, Structural biology. >Structural elucidation of the NADP(H) phosphatase activity of staphylococcal dual-specific IMPase/NADP(H) phosphatase
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Structural elucidation of the NADP(H) phosphatase activity of staphylococcal dual-specific IMPase/NADP(H) phosphatase

机译:NADP (H)磷酸酶的结构说明葡萄球菌dual-specific活动IMPase / NADP (H)磷酸酶

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摘要

NADP(H)/NAD(H) homeostasis has long been identified to play a pivotal role in the mitigation of reactive oxygen stress (ROS) in the intracellular milieu and is therefore critical for the progression and pathogenesis of many diseases. NAD(H) kinases and NADP(H) phosphatases are two key players in this pathway. Despite structural evidence demonstrating the existence and mode of action of NAD(H) kinases, the specific annotation and the mode of action of NADP(H) phosphatases remains obscure. Here, structural evidence supporting the alternative role of inositol monophosphatase (IMPase) as an NADP(H) phosphatase is reported. Crystal structures of staphylococcal dual-specific IMPase/NADP(H) phosphatase (SaIMPase-I) in complex with the substrates d-myo-inositol-1-phosphate and NADP(+) have been solved. The structure of the SaIMPase-I-Ca2+-NADP(+) ternary complex reveals the catalytic mode of action of NADP(H) phosphatase. Moreover, structures of SaIMPase-I-Ca2+-substrate complexes have reinforced the earlier proposal that the length of the active-site-distant helix alpha 4 and its preceding loop are the predisposing factors for the promiscuous substrate specificity of SaIMPase-I. Altogether, the evidence presented suggests that IMPase-family enzymes with a shorter alpha 4 helix could be potential candidates for previously unreported NADP(H) phosphatase activity.
机译:是NAD (H) / NAD (H)体内平衡一直确定中发挥关键作用减轻活性氧(ROS)的压力细胞内环境,因此至关重要对于许多的进展和发病机理疾病。在这个途径两个关键的球员。结构的证据证明存在和行动模式的NAD (H)激酶具体的注释和行动的模式是nad (H)磷酸酶仍然是模糊的。结构的证据支持的选择肌醇的作用monophosphatase (IMPase)作为一个NADP (H)磷酸酶是报道葡萄球菌dual-specific结构IMPase / NADP (H)磷酸酶(SaIMPase-I复杂的基质d-myo-inositol-1-phosphate和辅酶ii (+)解决了。SaIMPase-I-Ca2 +辅酶ii(+)三元复杂的显示的催化作用方式是nad (H)磷酸酶。SaIMPase-I-Ca2 +底物复合物钢筋长度的早些时候提议active-site-distant螺旋alpha 4及其前循环的诱发因素滥交的底物特异性SaIMPase-I。表明IMPase-family酶用短4α螺旋可能是潜在的以前未报告的候选人是nad (H)磷酸酶活性。

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