Wilkerson C G, King S M, Witman G B
Cell Biology Group, Worcester Foundation for Experimental Biology, Shrewsbury, Massachusetts 01545.
J Cell Sci. 1994 Mar;107 ( Pt 3):497-506. doi: 10.1242/jcs.107.3.497.
We report here the complete sequence of the gamma dynein heavy chain of the outer arm of the Chlamydomonas flagellum, and partial sequences for six other dynein heavy chains. The gamma dynein heavy chain sequence contains four P-loop motifs, one of which is the likely hydrolytic site based on its position relative to a previously mapped epitope. Comparison with available cytoplasmic and flagellar dynein heavy chain sequences reveals regions that are highly conserved in all dynein heavy chains sequenced to date, regions that are conserved only among axonemal dynein heavy chains, and regions that are unique to individual dynein heavy chains. The presumed hydrolytic site is absolutely conserved among dyneins, two other P loops are highly conserved among cytoplasmic dynein heavy chains but not in axonemal dynein heavy chains, and the fourth P loop is invariant in axonemal dynein heavy chains but not in cytoplasmic dynein. One region that is very highly conserved in all dynein heavy chains is similar to a portion of the ATP-sensitive microtubule-binding domain of kinesin. Two other regions present in all dynein heavy chains are predicted to have high alpha-helical content and have a high probability of forming coiled-coil structures. Overall, the central one-third of the gamma dynein heavy chain is most conserved whereas the N-terminal one-third is least conserved; the fact that the latter region is divergent between the cytoplasmic dynein heavy chain and two different axonemal dynein heavy chains suggests that it is involved in chain-specific functions.
我们在此报告衣藻鞭毛外臂γ动力蛋白重链的完整序列,以及其他六种动力蛋白重链的部分序列。γ动力蛋白重链序列包含四个P环基序,其中一个基于其相对于先前绘制的表位的位置可能是水解位点。与现有的胞质和鞭毛动力蛋白重链序列进行比较,揭示了迄今测序的所有动力蛋白重链中高度保守的区域、仅在轴丝动力蛋白重链中保守的区域以及个别动力蛋白重链特有的区域。推测的水解位点在动力蛋白中绝对保守,另外两个P环在胞质动力蛋白重链中高度保守,但在轴丝动力蛋白重链中不保守,第四个P环在轴丝动力蛋白重链中不变,但在胞质动力蛋白中不保守。在所有动力蛋白重链中非常高度保守的一个区域类似于驱动蛋白的ATP敏感微管结合结构域的一部分。所有动力蛋白重链中存在的另外两个区域预计具有高α螺旋含量,并且极有可能形成卷曲螺旋结构。总体而言,γ动力蛋白重链的中央三分之一最保守,而N端三分之一最不保守;后一个区域在胞质动力蛋白重链和两种不同的轴丝动力蛋白重链之间存在差异,这一事实表明它参与链特异性功能。