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将有效的蛋白酪氨酸磷酸酶活性恢复到受体蛋白酪氨酸磷酸酶α的膜远端结构域中。

Restoration of potent protein-tyrosine phosphatase activity into the membrane-distal domain of receptor protein-tyrosine phosphatase alpha.

作者信息

Buist A, Zhang Y L, Keng Y F, Wu L, Zhang Z Y, den Hertog J

机构信息

Hubrecht Laboratory, Netherlands Institute for Developmental Biology, Utrecht.

出版信息

Biochemistry. 1999 Jan 19;38(3):914-22. doi: 10.1021/bi981936b.

Abstract

Most transmembrane, receptor-like protein-tyrosine phosphatases (RPTPs) contain two cytoplasmic catalytic protein-tyrosine phosphatase (PTP) domains, of which the membrane-proximal domain, D1, contains the majority of the activity, while the membrane-distal domain, D2, exhibits little or no activity. We have investigated the structural basis for reduced activity in RPTP-D2s, using RPTPalpha as a model system. Sequence alignment of PTP domains indicated that two motifs, the KNRY motif and the WpD motif, are highly conserved in all PTP domains, but not in RPTP-D2s. In RPTPalpha-D2, the Tyr in the KNRY motif is substituted by Val (position 555) and the Asp in the WpD motif by Glu (position 690). Mutation of Val555 and Glu690 had synergistic effects on RPTPalpha-D2 activity, in that the PTP activity of RPTPalpha-D2-V555Y/E690D was greatly enhanced to levels that were similar to or approaching those of RPTPalpha-D1. Therefore, Val555 and Glu690 are responsible in large part for reduced RPTPalpha-D2 activity. In addition, we established that the increased PTP activity is due to restoration of effective transition-state stabilization in RPTPalpha-D2-V555Y/E690D. Since the KNRY motif and the WpD motif are mutated in all RPTP-D2s, it is highly unlikely, due to lack of transition-state stabilization, that the residual RPTP-D2 catalytic activity plays a role in the function of RPTPs.

摘要

大多数跨膜的受体样蛋白酪氨酸磷酸酶(RPTPs)含有两个胞质催化蛋白酪氨酸磷酸酶(PTP)结构域,其中靠近膜的结构域D1具有大部分活性,而远离膜的结构域D2活性很低或没有活性。我们以RPTPα为模型系统,研究了RPTP-D2s活性降低的结构基础。PTP结构域的序列比对表明,两个基序,即KNRY基序和WpD基序,在所有PTP结构域中高度保守,但在RPTP-D2s中并非如此。在RPTPα-D2中,KNRY基序中的酪氨酸被缬氨酸取代(第555位),WpD基序中的天冬氨酸被谷氨酸取代(第690位)。缬氨酸555和谷氨酸690的突变对RPTPα-D2活性有协同作用,因为RPTPα-D2-V555Y/E690D的PTP活性大大提高到与RPTPα-D1相似或接近的水平。因此,缬氨酸555和谷氨酸690在很大程度上导致了RPTPα-D2活性的降低。此外,我们确定增加的PTP活性是由于RPTPα-D2-V555Y/E690D中有效过渡态稳定的恢复。由于所有RPTP-D2s中的KNRY基序和WpD基序都发生了突变,由于缺乏过渡态稳定,残留的RPTP-D2催化活性极不可能在RPTPs的功能中发挥作用。

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