Ramachandran C, Aebersold R, Tonks N K, Pot D A
Department of Biochemistry, Merck Frosst Centre for Therapeutic Research, Kirkland, Quebec, Canada.
Biochemistry. 1992 May 5;31(17):4232-8. doi: 10.1021/bi00132a012.
The question of whether protein tyrosine phosphatases (PTPases) dephosphorylate a multiply phosphorylated peptide in a random or ordered manner was investigated using the synthetic triphosphotyrosyl peptide TRDIY(P)ETDY(P)Y(P)RK, corresponding to the major sites of autophosphorylation of the insulin receptor, as a substrate for four purified PTPases. All four enzymes dephosphorylated the triphospho peptide to produce diphospho, monophospho, and nonphosphorylated forms. Partially dephosphorylated peptides were separated by reverse-phase HPLC, and the di- and monophospho peptides were collected and analyzed by solid-phase sequencing to determine the order of dephosphorylation of the three sites by each of the PTPases. The quantitative analysis of the signals for derivatives of tyrosine and phosphotyrosine generated at positions 5, 9, and 10 of the peptide showed that the low molecular weight human placental PTPase 1B preferentially dephosphorylated the two phosphotyrosines at positions 9 and 10 whereas the integral membrane enzyme CD45 (from human spleen) and the bacterially expressed rat LAR preferentially dephosphorylated the phosphotyrosine at position 5. A second low molecular weight enzyme, termed TCPTPase, did not display any specificity for a particular phosphotyrosyl residue. These results demonstrate that different PTPases exhibit a characteristic pattern of dephosphorylation of the triphospho peptide model substrate, raising the possibility that features in the primary structure surrounding the dephosphorylation site may contribute to substrate specificity.
利用合成的三磷酸酪氨酸肽TRDIY(P)ETDY(P)Y(P)RK(对应胰岛素受体自身磷酸化的主要位点)作为四种纯化的蛋白酪氨酸磷酸酶(PTPases)的底物,研究了PTPases是以随机还是有序的方式使多磷酸化肽去磷酸化的问题。所有这四种酶都使三磷酸肽去磷酸化,产生二磷酸、单磷酸和非磷酸化形式。通过反相高效液相色谱法分离部分去磷酸化的肽,并收集二磷酸和单磷酸肽,通过固相测序进行分析,以确定每种PTPases对三个位点去磷酸化的顺序。对肽的第5、9和10位产生的酪氨酸和磷酸酪氨酸衍生物信号的定量分析表明,低分子量的人胎盘PTPase 1B优先使第9和10位的两个磷酸酪氨酸去磷酸化,而完整膜酶CD45(来自人脾脏)和细菌表达的大鼠LAR优先使第5位的磷酸酪氨酸去磷酸化。第二种低分子量酶,称为TCPTPase,对特定的磷酸酪氨酸残基没有显示出任何特异性。这些结果表明,不同的PTPases对三磷酸肽模型底物表现出特征性的去磷酸化模式,这增加了去磷酸化位点周围一级结构的特征可能有助于底物特异性的可能性。