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Identification of the N-glycosylation sites on glutamate carboxypeptidase II necessary for proteolytic activity

机译:鉴定蛋白水解活性所必需的谷氨酸羧肽酶II上的N-糖基化位点

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摘要

Glutamate carboxypeptidase II (GCPII) is a membrane peptidase expressed in the prostate, central and peripheral nervous system, kidney, small intestine, and tumor-associated neovasculature. The GCPII form expressed in the central nervous system, termed NAALADase, is responsible for the cleavage of N-acetylL-aspartyl-L-glutamate (NAAG) yielding free glutamate in the synaptic cleft, and is implicated in various pathologic conditions associated with glutamate excitotoxicity. The prostate form of GCPII, termed prostate-specific membrane antigen (PSMA), is up-regulated in cancer and used as an effective prostate cancer marker. Little is known about the structure of this important pharmaceutical target. As a type II membrane protein, GCPII is heavily glycosylated. In this paper we show that N-glycosylation is vital for proper folding and subsequent secretion of human GCPII. Analysis of the predicted N-glycosylation sites also provides evidence that these sites are critical for GCPII carboxypeptidase activity. We confirm that all predicted N-glycosylation sites are occupied by an oligosaccharide moiety and show that glycosylation at sites distant from the putative catalytic domain is critical for the NAAG-hydrolyzing activity of GCPII calling the validity of previously described structural models of GCPII into question.
机译:谷氨酸羧肽酶II(GCPII)是一种在前列腺,中枢和外周神经系统,肾脏,小肠和与肿瘤相关的新脉管系统中表达的膜肽酶。在中枢神经系统中表达的GCPII形式称为NAALADase,负责裂解N-乙酰基L-天冬氨酰-L-谷氨酸(NAAG),在突触裂隙中产生游离谷氨酸,并涉及与谷氨酸兴奋性毒性相关的各种病理状况。 GCPII的前列腺形式,称为前列腺特异性膜抗原(PSMA),在癌症中上调,并用作有效的前列腺癌标志物。关于这一重要药物靶的结构知之甚少。作为II型膜蛋白,GCPII被高度糖基化。在本文中,我们显示N-糖基化对于人类GCPII的正确折叠和随后的分泌至关重要。对预测的N-糖基化位点的分析也提供了证据,这些位点对GCPII羧肽酶活性至关重要。我们确认所有预测的N-糖基化位点均被寡糖部分占据,并表明远离假定的催化结构域的位点的糖基化对于GCPII的NAAG水解活性至关重要,这使先前描述的GCPII结构模型的有效性受到质疑。

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