Kim Sung-Eun, Kim Sun-Hong, Choi Kang-Yell
Department of Biotechnology, Protein Research Center, Yonsei University College of Engineering, Seoul 120-752, South Korea.
Ann N Y Acad Sci. 2003 Dec;1010:51-61. doi: 10.1196/annals.1299.007.
DMKP-3 is a Drosophila dual-specificity phosphatase, which has high substrate specificity for Drosophila extracellular signal-regulated kinases (DERK). By in vitro reconstitution experiments, we found that DERK activates DMKP-3. Moreover, DMKP-3 was specifically activated by the addition of DERK but not by DJNK, Dp38, or Sevenmaker DERK D334N, a DMKP-3- binding mutant. The phosphatase activity of DMKP-3-R56A/R57A, a DERK-binding mutant, was not increased by DERK. Significantly, mammalian MKP-3 was also found to be activated by DERK. This cross-reactivity suggests a high level of conservation of the activation mechanism of ERK-specific phosphatases in Drosophila and mammals. When DMKP-3 was co-expressed with DERK in Drosophila Schneider cells, DMKP-3 protein levels increased, but this was not observed for the co-expressions of DJNK or Dp38. The stabilizations of the DERK binding mutants (DMKP-3-RR and DMKP-3-CA-RR) were not increased by DERK co-expression. Our results suggest that DERK specifically regulates DMKP-3 in terms of its enzyme activity and protein stability, and that direct protein-protein interaction is an essential aspect of this regulation.
DMKP-3是一种果蝇双特异性磷酸酶,对果蝇细胞外信号调节激酶(DERK)具有高底物特异性。通过体外重组实验,我们发现DERK激活DMKP-3。此外,通过添加DERK可特异性激活DMKP-3,但添加JNK、Dp38或Sevenmaker DERK D334N(一种DMKP-3结合突变体)则不能激活。DERK结合突变体DMKP-3-R56A/R57A的磷酸酶活性不会因DERK而增加。值得注意的是,还发现哺乳动物的MKP-3也可被DERK激活。这种交叉反应表明果蝇和哺乳动物中ERK特异性磷酸酶激活机制具有高度保守性。当DMKP-3与DERK在果蝇Schneider细胞中共表达时,DMKP-3蛋白水平升高,但在与JNK或Dp38共表达时未观察到这种情况。DERK共表达不会增加DERK结合突变体(DMKP-3-RR和DMKP-3-CA-RR)的稳定性。我们的结果表明,DERK在酶活性和蛋白质稳定性方面特异性调节DMKP-3,并且直接的蛋白质-蛋白质相互作用是这种调节的一个重要方面。