Dosemeci A, Reese T S, Petersen J, Tao-Cheng J H
Laboratory of Neurobiology, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Neurosci. 2000 May 1;20(9):3076-84. doi: 10.1523/JNEUROSCI.20-09-03076.2000.
Cytoskeletal and postsynaptic density (PSD) fractions from forebrain contain discrete spherical structures that are immunopositive for Ca(2+)/calmodulin-dependent protein kinase II (CaMKII). Spherical structures viewed by rotary shadow electron microscopy have an average diameter of approximately 100 nm and, in distinction to postsynaptic densities, do not immunolabel for PSD-95. These structures were purified to near homogeneity by extraction with the detergent N-lauryl sarcosinate. Biochemical analysis revealed that CaMKII accounts for virtually all of the protein in the purified preparation, suggesting that spherical structures are clusters of self-associated CaMKII. Exposure of cultured hippocampal neurons to a mitochondrial uncoupler in glucose-free medium promotes the formation of numerous CaMKII-immunopositive structures identical in size and shape to the CaMKII clusters observed in subcellular fractions. Clustering of CaMKII would reduce its kinase function by preventing its access to fixed substrates. On the other hand, clustering would not affect the ability of the large cellular pool of CaMKII to act as a calmodulin sink, as demonstrated by the Ca(2+)-dependent binding of gold-conjugated calmodulin to CaMKII clusters. We propose that the observed clustering of CaMKII into spherical structures is a protective mechanism preventing excessive protein phosphorylation upon loss of Ca(2+) homeostasis, without compromising calmodulin regulation.
来自前脑的细胞骨架和突触后致密物(PSD)组分包含离散的球形结构,这些结构对Ca(2+)/钙调蛋白依赖性蛋白激酶II(CaMKII)呈免疫阳性。通过旋转阴影电子显微镜观察到的球形结构平均直径约为100nm,与突触后致密物不同,它们对PSD-95不进行免疫标记。通过用去污剂N-月桂酰肌氨酸钠提取,将这些结构纯化至接近均一性。生化分析表明,CaMKII几乎占纯化制剂中所有蛋白质,这表明球形结构是自缔合CaMKII的簇。在无葡萄糖培养基中将培养的海马神经元暴露于线粒体解偶联剂可促进形成许多CaMKII免疫阳性结构,其大小和形状与在亚细胞组分中观察到的CaMKII簇相同。CaMKII的聚集会通过阻止其接触固定底物来降低其激酶功能。另一方面,聚集不会影响大量细胞内CaMKII作为钙调蛋白汇的能力,如金偶联钙调蛋白与CaMKII簇的Ca(2+)依赖性结合所证明的那样。我们提出,观察到的CaMKII聚集成球形结构是一种保护机制,可防止在Ca(2+)稳态丧失时过度的蛋白质磷酸化,而不会损害钙调蛋白调节。