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Voltage sensitive phosphatases: emerging kinship to protein tyrosine phosphatases from structure-function research

机译:电压敏感磷酸酶:结构功能研究中与蛋白质酪氨酸磷酸酶的亲缘关系

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The transmembrane protein Ci-VSP from the ascidian Ciona intestinalis was described as first member of a fascinating family of enzymes, the voltage sensitive phosphatases (VSPs). Ci-VSP and its voltage-activated homologs from other species are stimulated by positive membrane potentials and dephosphorylate the head groups of negatively charged phosphoinositide phosphates (PIPs). In doing so, VSPs act as control centers at the cytosolic membrane surface, because they intervene in signaling cascades that are mediated by PIP lipids. The characteristic motif CX_(5)RT/S in the active site classifies VSPs as members of the huge family of cysteine-based protein tyrosine phosphatases (PTPs). Although PTPs have already been well-characterized regarding both, structure and function, their relationship to VSPs has drawn only limited attention so far. Therefore, the intention of this review is to give a short overview about the extensive knowledge about PTPs in relation to the facts known about VSPs. Here, we concentrate on the structural features of the catalytic domain which are similar between both classes of phosphatases and their consequences for the enzymatic function. By discussing results obtained from crystal structures, molecular dynamics simulations, and mutagenesis studies, a possible mechanism for the catalytic cycle of VSPs is presented based on that one proposed for PTPs. In this way, we want to link the knowledge about the catalytic activity of VSPs and PTPs.
机译:来自海鞘Ciona intestinalis的跨膜蛋白Ci-VSP被描述为一种迷人的酶家族,即电压敏感磷酸酶(VSP)。正膜电位可刺激Ci-VSP及其其他物种的电压激活同源物,并使带负电荷的磷酸肌醇磷酸(PIP)的头基脱磷酸。这样做时,VSP充当了胞质膜表面的控制中心,因为它们干预了由PIP脂质介导的信号级联反应。活性位点中的特征性基序CX_(5)RT / S将VSP分类为基于半胱氨​​酸的蛋白酪氨酸磷酸酶(PTP)庞大家族的成员。尽管PTP在结构和功能方面都已被很好地表征,但是到目前为止,它们与VSP的关系仅引起了有限的关注。因此,本次审查的目的是简要介绍有关PTP的广泛知识以及有关VSP的已知事实。在这里,我们集中于两类磷酸酶之间的催化结构域结构特征及其对酶功能的影响。通过讨论从晶体结构,分子动力学模拟和诱变研究中获得的结果,基于对PTPs提出的一种机理,提出了VSPs催化循环的可能机理。这样,我们希望将有关VSP和PTP催化活性的知识联系起来。

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