Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Acta Biochim Biophys Sin (Shanghai). 2011 Nov;43(11):867-76. doi: 10.1093/abbs/gmr081. Epub 2011 Sep 10.
Calmodulin (CaM) transduces the increase in cytosolic Ca(2+) concentrations by binding to and altering the activities of target proteins, thereby affecting the physiological responses to the vast array of stimuli. Here, we examined the purified recombinant proteins encoded by three Cam and eight Cam-like (CML) genes from rice. With the exception of one OsCML, all recombinant proteins could be purified by Ca(2+)-dependent hydrophobic chromatography and exhibited an electrophoretic mobility shift when incubated with Ca(2+). The three CaMs all bound CaM kinase II peptide, but none of the eight CMLs did, suggesting a possible differential target binding between the CaM and CML proteins. In addition, their conformational changes upon Ca(2+)-binding were evaluated by circular dichroism spectroscopy and fluorescence spectroscopy using 8-Anilino-1-naphthalene-sulfonic acid. Taken together, OsCMLs were found exhibiting a spectrum of both structural and functional characteristics that ranged from typical to atypical of CaMs. From structural comparison, the OsCMLs have overall main-chain conformation nearly identical to OsCaMs, but with distinct distribution of some charged and hydrophobic amino acids on their target-binding site. These results suggest that genetic polymorphism has promoted the functional diversity of the OsCML family, whose members possess modes of actions probably different from, though maybe overlapping with, those of OsCaMs.
钙调蛋白(CaM)通过与靶蛋白结合并改变其活性来传递细胞质 Ca2+浓度的增加,从而影响对各种刺激的生理反应。在这里,我们研究了来自水稻的三个 Cam 和八个 Cam 样(CML)基因的纯化重组蛋白。除了一个 OsCML 外,所有重组蛋白都可以通过 Ca2+依赖性疏水性色谱法纯化,并在与 Ca2+孵育时表现出电泳迁移率的变化。这三种 Cam 都能与钙调蛋白激酶 II 肽结合,但八种 CML 都不能结合,这表明 Cam 和 CML 蛋白之间可能存在靶结合的差异。此外,通过使用 8-苯胺-1-萘磺酸的圆二色性光谱和荧光光谱评估了它们在 Ca2+结合时的构象变化。总之,OsCMLs 表现出一系列结构和功能特征,其范围从典型的 Cam 到非典型的 Cam。从结构比较来看,OsCMLs 的主链构象几乎与 OsCaMs 相同,但在其靶结合位点上的一些带电和疏水性氨基酸的分布上存在明显差异。这些结果表明,遗传多态性促进了 OsCML 家族的功能多样性,其成员的作用模式可能与 OsCaMs 不同,但可能重叠。