Casey Diane M, Yagi Toshiki, Kamiya Ritsu, Witman George B
Department of Cell Biology, University of Massachusetts Medical School, 55 Lake Avenue North, Worcester, MA 01655, USA.
J Biol Chem. 2003 Oct 24;278(43):42652-9. doi: 10.1074/jbc.M303064200. Epub 2003 Aug 14.
The outer dynein arm-docking complex (ODA-DC) targets the outer dynein arm to its correct binding site on the flagellar axoneme. The Chlamydomonas ODA-DC contains three proteins; loss of any one prevents normal assembly of the outer arm, leading to a slow, jerky swimming phenotype. We showed previously that the smallest ODA-DC subunit, DC3, has four EF-hands (Casey, D. M., Inaba, K., Pazour, G. J., Takada, S., Wakabayashi, K., Wilkerson, C. G., Kamiya, R., and Witman, G. B. (2003) Mol. Biol. Cell 14, 3650-3663). Two of the EF-hands fit the consensus pattern for calcium binding, and one of these contains two cysteine residues within its binding loop. To determine whether the predicted EF-hands are functional, we purified bacterially expressed wild-type DC3 and analyzed its calcium-binding potential in the presence and absence of dithiothreitol and Mg2+. The protein bound one calcium ion with an affinity (Kd) of approximately 1 x 10-5 m. Calcium binding was observed only in the presence of dithiothreitol and thus is redox-sensitive. DC3 also bound Mg2+ at physiological concentrations but with a much lower affinity. Changing the essential glutamate to glutamine in both EF-hands eliminated the calcium binding activity of the bacterially expressed protein. To investigate the role of the EF-hands in vivo, we transformed the modified DC3 gene into a Chlamydomonas insertional mutant lacking DC3. The transformed strain swam normally, assembled a normal number of outer arms, and had a normal photoshock response, indicating that the Glu to Gln mutations did not affect ODA-DC assembly, outer arm assembly, or Ca2+-mediated outer arm activity. Thus, DC3 is a true calcium-binding protein, but the function of this activity remains unknown.
外动力蛋白臂对接复合体(ODA-DC)将外动力蛋白臂靶向到鞭毛轴丝上其正确的结合位点。衣藻的ODA-DC包含三种蛋白质;任何一种蛋白质的缺失都会阻止外臂的正常组装,导致缓慢、不平稳的游动表型。我们之前表明,最小的ODA-DC亚基DC3有四个EF手结构域(凯西,D.M.,稻叶,K.,帕祖尔,G.J.,高田,S.,若林,K.,威尔克森,C.G.,神谷,R.,和威特曼,G.B.(2003年)《分子生物学细胞》14卷,3650 - 3663页)。其中两个EF手结构域符合钙结合的共有模式,并且其中一个在其结合环内含有两个半胱氨酸残基。为了确定预测的EF手结构域是否具有功能,我们纯化了细菌表达的野生型DC3,并分析了在存在和不存在二硫苏糖醇及Mg2+的情况下其钙结合潜力。该蛋白质以约1×10 - 5 m的亲和力(Kd)结合一个钙离子。仅在存在二硫苏糖醇的情况下观察到钙结合,因此是氧化还原敏感的。DC3在生理浓度下也结合Mg2+,但亲和力低得多。将两个EF手结构域中的必需谷氨酸替换为谷氨酰胺消除了细菌表达蛋白质的钙结合活性。为了研究EF手结构域在体内的作用,我们将修饰后的DC3基因转化到缺乏DC3的衣藻插入突变体中。转化后的菌株游动正常,组装了正常数量的外臂,并且具有正常的光休克反应,表明谷氨酸到谷氨酰胺的突变不影响ODA-DC组装、外臂组装或Ca2+介导的外臂活性。因此,DC3是一种真正的钙结合蛋白,但其这种活性的功能仍然未知。