Division of Molecular Carcinogenesis, Center for Neurological Diseases and Cancer, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan.
Biochem Biophys Res Commun. 2012 Nov 9;428(1):173-8. doi: 10.1016/j.bbrc.2012.10.036. Epub 2012 Oct 12.
Actomyosin filament assembly is a critical step in tumor cell migration. We previously found that myosin binding protein H (MYBPH) is directly transactivated by the TTF-1 lineage-survival oncogene in lung adenocarcinomas and inhibits phosphorylation of the myosin regulatory light chain (RLC) of non-muscle myosin IIA (NM IIA) via direct interaction with Rho kinase 1 (ROCK1). Here, we report that MYBPH also directly interacts with an additional molecule, non-muscle myosin heavy chain IIA (NMHC IIA), which was found to occur between MYBPH and the rod portion of NMHC IIA. MYBPH inhibited NMHC IIA assembly and reduced cell motility. Conversely, siMYBPH-induced increased motility was partially, yet significantly, suppressed by blebbistatin, a non-muscle myosin II inhibitor, while more profound effects were attained by combined treatment with siROCK1 and blebbistatin. Electron microscopy observations showed well-ordered paracrystals of NMHC IIA reflecting an assembled state, which were significantly less frequently observed in the presence of MYBPH. Furthermore, an in vitro sedimentation assay showed that a greater amount of NMHC IIA was in an unassembled state in the presence of MYBPH. Interestingly, treatment with a ROCK inhibitor that impairs transition of NM IIA from an assembly-incompetent to assembly-competent state reduced the interaction between MYBPH and NMHC IIA, suggesting that MYBPH has higher affinity to assembly-competent NM IIA. These results suggest that MYBPH inhibits RLC and NMHC IIA, independent components of NM IIA, and negatively regulates actomyosin organization at 2 distinct steps, resulting in firm inhibition of NM IIA assembly.
肌球蛋白结合蛋白 H(MYBPH)通过与 Rho 激酶 1(ROCK1)直接相互作用抑制非肌球蛋白 IIA(NM IIA)的肌球蛋白调节轻链(RLC)的磷酸化,我们先前发现 MYBPH 被 TTF-1 谱系存活癌基因直接反式激活,存在于 MYBPH 和 NM IIA 的杆部之间。这里,我们报告 MYBPH 还与另一种分子非肌球蛋白重链 IIA(NMHC IIA)直接相互作用,发现 MYBPH 抑制 NMHC IIA 组装并降低细胞迁移性。相反,siMYBPH 诱导的增加的迁移性部分显著,被肌球蛋白 II 抑制剂 blebbistatin 抑制,而通过 siROCK1 和 blebbistatin 的联合处理则获得更显著的效果。电子显微镜观察显示 NMHC IIA 的有序的准晶反映了组装状态,而在 MYBPH 存在下观察到这种状态明显减少。此外,体外沉淀实验表明,在 MYBPH 存在下,更多量的 NMHC IIA 处于未组装状态。有趣的是,用一种 ROCK 抑制剂处理会损害 NM IIA 从组装无能状态到组装有能状态的转变,这表明 MYBPH 对组装有能 NM IIA 具有更高的亲和力。这些结果表明,MYBPH 抑制 RLC 和 NMHC IIA,这是 NM IIA 的独立成分,并在 2 个不同步骤中负调节肌动球蛋白的组织,从而强烈抑制 NM IIA 的组装。
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