King S J, Dutcher S K
Department of Molecular, Cellular, and Developmental Biology, University of Colorado at Boulder 80309-0347, USA.
J Cell Biol. 1997 Jan 13;136(1):177-91. doi: 10.1083/jcb.136.1.177.
To gain a further understanding of axonemal dynein regulation, mutant strains of Chlamydomonas reinhardtii that had defects in both phototactic behavior and flagellar motility were identified and characterized. ptm1, ptm2, and ptm3 mutant strains exhibited motility phenotypes that resembled those of known inner dynein arm region mutant strains, but did not have biochemical or genetic phenotypes characteristic of other inner dynein arm mutations. Three other mutant strains had defects in the f class of inner dynein arms. Dynein extracts from the pf9-4 strain were missing the entire f complex. Strains with mutations in pf9/ida1, ida2, or ida3 failed to assemble the f dynein complex and did not exhibit phototactic behavior. Fractionated dynein from mia1-1 and mia2-1 axonemes exhibited a novel f class inner dynein arm biochemical phenotype; the 138-kD f intermediate chain was present in altered phosphorylation forms. In vitro axonemal dynein activity was reduced by the mia1-1 and mia2-1 mutations. The addition of kinase inhibitor restored axonemal dynein activity concomitant with the dephosphorylation of the 138-kD f intermediate chain. Dynein extracts from uni1-1 axonemes, which specifically assemble only one of the two flagella, contained relatively high levels of the altered phosphorylation forms of the 138-kD intermediate chain. We suggest that the f dynein complex may be phosphoregulated asymmetrically between the two flagella to achieve phototactic turning.
为了进一步了解轴丝动力蛋白的调控机制,我们鉴定并表征了莱茵衣藻中在趋光行为和鞭毛运动方面均存在缺陷的突变株。ptm1、ptm2和ptm3突变株表现出的运动表型类似于已知的内动力臂区域突变株,但不具有其他内动力臂突变的生化或遗传表型。另外三个突变株在内动力臂的f类中存在缺陷。pf9 - 4菌株的动力蛋白提取物缺失了整个f复合体。在pf9/ida1、ida2或ida3中发生突变的菌株无法组装f动力蛋白复合体,并且不表现出趋光行为。来自mia1 - 1和mia2 - 1轴丝的分级分离的动力蛋白表现出一种新的f类内动力臂生化表型;138-kD的f中间链以改变的磷酸化形式存在。mia1 - 1和mia2 - 1突变降低了体外轴丝动力蛋白的活性。添加激酶抑制剂可恢复轴丝动力蛋白的活性,同时伴随着对138-kD的f中间链的去磷酸化。uni1 - 1轴丝的动力蛋白提取物(uni1 - 1轴丝仅特异性组装两根鞭毛中的一根)含有相对较高水平的138-kD中间链的改变的磷酸化形式。我们认为,f动力蛋白复合体可能在两根鞭毛之间受到不对称的磷酸化调节,以实现趋光转向。