Sanabria Hugo, Swulius Matthew T, Kolodziej Steven J, Liu Jun, Waxham M Neal
Departments of Neurobiology and Anatomy and Pathology and Laboratory Medicine, University of Texas Health Science Center, Houston, Texas 77030, USA.
J Biol Chem. 2009 Apr 10;284(15):9770-80. doi: 10.1074/jbc.M809518200. Epub 2009 Feb 10.
Ca(2+)-Calmodulin-dependent protein kinase II (CaMKII) is an abundant synaptic protein that was recently shown to regulate the organization of actin filaments leading to structural modifications of synapses. CaMKII is a dodecameric complex with a special architecture that provides it with unique potential for organizing the actin cytoskeleton. We report using biochemical assays that the beta isoform of CaMKII binds to and bundles actin filaments, and the disposition of betaCaMKII within the actin bundles was revealed by cryoelectron tomography. In addition, betaCaMKII was found to inhibit actin polymerization, suggesting that it either serves as a capping protein or binds monomeric actin, reducing the amount of freely available monomers to nucleate polymer assembly. By means of fluorescent cross-correlation spectroscopy, we determined that betaCaMKII does indeed bind to monomeric actin, reaching saturation at a stoichiometry of 12:1 actin monomers per betaCaMKII holoenzyme with a binding constant of 2.4 x 10(5) m(-1). In cells, betaCaMKII has a dual functional role; it can sequester monomeric actin to reduce actin polymerization and can also bundle actin filaments. Together, these effects would impact both the dynamics of actin filament assembly and enhance the rigidity of the filaments once formed, significantly impacting the structure of synapses.
钙离子/钙调蛋白依赖性蛋白激酶II(CaMKII)是一种丰富的突触蛋白,最近的研究表明它能调节肌动蛋白丝的组织,从而导致突触的结构改变。CaMKII是一种具有特殊结构的十二聚体复合物,这种结构赋予了它组织肌动蛋白细胞骨架的独特潜力。我们通过生化分析报告称,CaMKII的β亚型能结合并捆绑肌动蛋白丝,冷冻电子断层扫描揭示了βCaMKII在肌动蛋白束中的分布情况。此外,发现βCaMKII能抑制肌动蛋白聚合,这表明它要么作为一种封端蛋白,要么结合单体肌动蛋白,减少可用于引发聚合物组装的游离单体数量。通过荧光交叉相关光谱法,我们确定βCaMKII确实能结合单体肌动蛋白,以每βCaMKII全酶12:1的肌动蛋白单体化学计量比达到饱和,结合常数为2.4×10⁵ m⁻¹。在细胞中,βCaMKII具有双重功能作用;它既能隔离单体肌动蛋白以减少肌动蛋白聚合,又能捆绑肌动蛋白丝。这些作用共同影响肌动蛋白丝组装的动力学,并增强一旦形成的肌动蛋白丝的刚性,从而显著影响突触的结构。