Jiang Y P, Wang H, D'Eustachio P, Musacchio J M, Schlessinger J, Sap J
Department of Pharmacology, New York University Medical Center, New York 10016.
Mol Cell Biol. 1993 May;13(5):2942-51. doi: 10.1128/mcb.13.5.2942-2951.1993.
We describe a new member of the receptor protein tyrosine phosphatase family, R-PTP-kappa, cDNA cloning predicts that R-PTP-kappa is synthesized from a precursor protein of 1,457 amino acids. Its intracellular domain displays the classical tandemly repeated protein tyrosine phosphatase homology, separated from the transmembrane segment by an uncharacteristically large juxta-membrane region. The extracellular domain of the R-PTP-kappa precursor protein contains an immunoglobulin-like domain and four fibronectin type III-like repeats, preceded by a signal peptide and a region of about 150 amino acids with similarity to the Xenopus A5 antigen, a putative neuronal recognition molecule (S. Takagi, T. Hsrata, K. Agata, M. Mochii, G. Eguchi, and H. Fujisawa, Neuron 7:295-307, 1991). Antibodies directed against the intra- and extracellular domains reveal that the R-PTP-kappa precursor protein undergoes proteolytic processing, following which both cleavage products remain associated. By site-directed mutagenesis, the likely cleavage site was shown to be a consensus sequence for cleavage by the processing endopeptidase furin, located in the fourth fibronectin type III-like repeat. In situ hybridization analysis indicates that expression of R-PTP-kappa in the central nervous system is developmentally regulated, with highest expression seen in actively developing areas and, in the adult, in areas capable of developmental plasticity such as the hippocampal formation and cerebral cortex. The mouse R-PTP-kappa gene maps to chromosome 10, at approximately 21 centimorgans from the centromere.
我们描述了受体蛋白酪氨酸磷酸酶家族的一个新成员R-PTP-κ,cDNA克隆预测R-PTP-κ由一个1457个氨基酸的前体蛋白合成。其细胞内结构域呈现典型的串联重复蛋白酪氨酸磷酸酶同源性,通过一个异常大的近膜区域与跨膜区段分隔开。R-PTP-κ前体蛋白的细胞外结构域包含一个免疫球蛋白样结构域和四个纤连蛋白III型样重复序列,前面有一个信号肽以及一个与非洲爪蟾A5抗原(一种假定的神经元识别分子)相似的约150个氨基酸的区域(S. Takagi、T. Hsrata、K. Agata、M. Mochii、G. Eguchi和H. Fujisawa,《神经元》7:295 - 307,1991)。针对细胞内和细胞外结构域的抗体显示R-PTP-κ前体蛋白经历蛋白水解加工,加工后两个裂解产物仍保持结合状态。通过定点诱变,显示可能的裂解位点是加工内肽酶弗林蛋白酶裂解的共有序列,位于第四个纤连蛋白III型样重复序列中。原位杂交分析表明R-PTP-κ在中枢神经系统中的表达受发育调控,在活跃发育区域表达最高,在成体中,在具有发育可塑性的区域如海马结构和大脑皮层中表达也较高。小鼠R-PTP-κ基因定位于10号染色体,距着丝粒约21厘摩。