Zhang Qiang, Muller Michaela, Chen Can Hao, Zeng Lei, Farooq Amjad, Zhou Ming-Ming
Department of Physiology and Biophysics, Mount Sinai School of Medicine, New York University, One Gustave L. Levy Place, New York, NY 10029, USA.
J Mol Biol. 2005 Dec 9;354(4):777-88. doi: 10.1016/j.jmb.2005.10.006. Epub 2005 Oct 21.
PAC-1 is an inducible, nuclear-specific, dual-specificity mitogen-activated protein (MAP) kinase phosphatase that has been shown recently to be a transcription target of the human tumor-suppressor protein p53 in signaling apoptosis and growth suppression. However, its substrate specificity and regulation of catalytic activity thus far remain elusive. Here, we report in vitro characterization of PAC-1 phosphatase activity with three distinct MAP kinase subfamilies. We show that the recombinant PAC-1 exists in a virtually inactive state when alone in vitro, and dephosphorylates extracellular signal-regulated kinase 2 (ERK2) but not p38alpha or c-Jun NH(2)-terminal kinase 2 (JNK2). ERK2 dephosphorylation by PAC-1 requires association of its amino-terminal domain with ERK2 that results in catalytic activation of the phosphatase. p38alpha also interacts with but does not activate PAC-1, whereas JNK2 does not bind to or cause catalytic activation by PAC-1. Moreover, our structure-based analysis reveals that individual mutation of the conserved Arg294 and Arg295 that likely comprise the phosphothreonine-binding pocket in PAC-1 to either alanine or lysine results in a nearly complete loss of its phosphatase activity even in the presence of ERK2. These results suggest that Arg294 and Arg295 play an important role in PAC-1 catalytic activation induced by ERK2 binding.
PAC-1是一种可诱导的、核特异性的双特异性丝裂原活化蛋白(MAP)激酶磷酸酶,最近已被证明是人类肿瘤抑制蛋白p53在信号传导凋亡和生长抑制中的转录靶点。然而,其底物特异性和催化活性的调节至今仍不清楚。在这里,我们报告了PAC-1磷酸酶活性与三个不同的MAP激酶亚家族的体外特性。我们表明,重组PAC-1在体外单独存在时实际上处于无活性状态,它能使细胞外信号调节激酶2(ERK2)去磷酸化,但不能使p38α或c-Jun NH2末端激酶2(JNK2)去磷酸化。PAC-1对ERK2的去磷酸化需要其氨基末端结构域与ERK2结合,从而导致磷酸酶的催化激活。p38α也与PAC-1相互作用但不激活它,而JNK2不与PAC-1结合或引起其催化激活。此外,我们基于结构的分析表明,PAC-1中可能构成磷酸苏氨酸结合口袋的保守Arg294和Arg295单独突变为丙氨酸或赖氨酸,即使在存在ERK2的情况下,其磷酸酶活性也几乎完全丧失。这些结果表明,Arg294和Arg295在ERK2结合诱导的PAC-1催化激活中起重要作用。