Smooth Muscle Research Group and the Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, Alberta T2N 4Z6, Canada.
J Biol Chem. 2011 Oct 21;286(42):36978-91. doi: 10.1074/jbc.M111.257949. Epub 2011 Aug 31.
Zipper-interacting protein kinase (ZIPK) has been implicated in Ca(2+)-independent smooth muscle contraction, although its specific role is unknown. The addition of ZIPK to demembranated rat caudal arterial strips induced an increase in force, which correlated with increases in LC(20) and MYPT1 phosphorylation. However, because of the number of kinases capable of phosphorylating LC(20) and MYPT1, it has proven difficult to identify the mechanism underlying ZIPK action. Therefore, we set out to identify bona fide ZIPK substrates using a chemical genetics method that takes advantage of ATP analogs with bulky substituents at the N(6) position and an engineered ZIPK capable of utilizing such substrates. (32)P-Labeled 6-phenyl-ATP and ZIPK-L93G mutant protein were added to permeabilized rat caudal arterial strips, and substrate proteins were detected by autoradiography following SDS-PAGE. Mass spectrometry identified LC(20) as a direct target of ZIPK in situ for the first time. Tissues were also exposed to 6-phenyl-ATP and ZIPK-L93G in the absence of endogenous ATP, and putative ZIPK substrates were identified by Western blotting. LC(20) was thereby confirmed as a direct target of ZIPK; however, no phosphorylation of MYPT1 was detected. We conclude that ZIPK is involved in the regulation of smooth muscle contraction through direct phosphorylation of LC(20).
拉链蛋白激酶(ZIPK)已被牵连到钙离子非依赖性平滑肌收缩中,尽管其具体作用尚不清楚。在去膜的大鼠尾动脉条中添加 ZIPK 会引起力的增加,这与 LC(20)和 MYPT1 磷酸化的增加相关。然而,由于能够磷酸化 LC(20)和 MYPT1 的激酶数量众多,因此很难确定 ZIPK 作用的机制。因此,我们采用了一种化学遗传学方法来鉴定真正的 ZIPK 底物,该方法利用了在 N(6)位置具有大取代基的 ATP 类似物和能够利用这种底物的工程 ZIPK。(32)P 标记的 6-苯基-ATP 和 ZIPK-L93G 突变蛋白被添加到通透的大鼠尾动脉条中,SDS-PAGE 后通过放射自显影检测底物蛋白。质谱首次在原位鉴定 LC(20)为 ZIPK 的直接靶标。组织还在没有内源性 ATP 的情况下暴露于 6-苯基-ATP 和 ZIPK-L93G 中,通过 Western blot 鉴定可能的 ZIPK 底物。从而证实 LC(20)是 ZIPK 的直接靶标;然而,没有检测到 MYPT1 的磷酸化。我们得出结论,ZIPK 通过直接磷酸化 LC(20)参与平滑肌收缩的调节。