首页> 美国卫生研究院文献>The EMBO Journal >The receptor-like protein tyrosine phosphatase HPTP alpha has two active catalytic domains with distinct substrate specificities.
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The receptor-like protein tyrosine phosphatase HPTP alpha has two active catalytic domains with distinct substrate specificities.

机译:受体样蛋白酪氨酸磷酸酶HPTPα具有两个具有不同底物特异性的活性催化域。

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摘要

Cloning and expression of the homologous domains of the receptor-like tyrosine phosphatase HPTP alpha shows that both domain 1 (D1) and domain 2 (D2) are enzymatically active. The two domains display different substrate specificities with D1 preferentially dephosphorylating MBP approximately RR-src greater than PNPP while D2 favours PNPP much much greater than RR-src and is inactive towards MBP. Each domain has lower activity than an expressed protein containing both domains. Analysis of chimaeric D1/2 proteins suggests that no particular region of D2 is responsible for the low activity of D2 on RR-src and that the specificity differences of D1 and D2 reflect overall sequence dissimilarities. Activities of D1 and D2 are inhibited by zinc, vanadate and EDTA and differentially susceptible to inhibition by heparin and poly(Glu4:Tyr1). Unusually, the activity of the protein containing both domains is stimulated by these polyanions. Regions amino-terminal to each domain are important for catalysis since deletion of these sequences abolishes phosphatase activity. Activity of the double domain polypeptide was also lost upon deletion of the sequence amino-terminal to D1, indicating that inactivation of D1 may suppress D2 activity. Differences in substrate specificity and responses to effectors and the interdependence between the two domains are likely important properties in the function of this PTPase in signal transduction.
机译:受体样酪氨酸磷酸酶HPTPα的同源域的克隆和表达表明,域1(D1)和域2(D2)都具有酶活性。这两个结构域显示出不同的底物特异性,其中D1优先使MBP脱磷酸,比RRPP的RR-src大大约RR-src,而D2比RR-src的PNPP优先大得多,并且对MBP无活性。每个结构域的活性均低于包含两个结构域的表达蛋白。嵌合D1 / 2蛋白的分析表明,D2的任何特定区域都不是D2对RR-src活性低的原因,并且D1和D2的特异性差异反映了整体序列的差异。 D1,D2的活性受到锌,钒酸盐和EDTA的抑制,并且对肝素和聚(Glu4:Tyr1)的抑制作用敏感。异常地,这些聚阴离子刺激包含两个结构域的蛋白质的活性。每个结构域氨基末端的区域对于催化很重要,因为这些序列的缺失消除了磷酸酶的活性。在缺失D1氨基末端的序列时,双结构域多肽的活性也丢失,表明D1的失活可以抑制D2活性。底物特异性和对效应子的反应以及两个结构域之间的相互依赖性方面的差异可能是该PTPase在信号转导中的功能中的重要特性。

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