Mastronarde D N, O'Toole E T, McDonald K L, McIntosh J R, Porter M E
Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder 80309-0347.
J Cell Biol. 1992 Sep;118(5):1145-62. doi: 10.1083/jcb.118.5.1145.
We have used computer averaging of electron micrographs from longitudinal and cross-sections of wild-type and mutant axonemes to determine the arrangement of the inner dynein arms in Chlamydomonas reinhardtii. Based on biochemical and morphological data, the inner arms have previously been described as consisting of three distinct subspecies, I1, I2, and I3. Our longitudinal averages revealed 10 distinguishable lobes of density per 96-nm repeating unit in the inner row of dynein arms. These lobes occurred predominantly but not exclusively in two parallel rows. We have analyzed mutant strains that are missing I1 and I2 subspecies. Cross-sectional averages of pf9 axonemes, which are missing the I1 subspecies, showed a loss of density in both the inner and outer portions of the inner arm. Averages from longitudinal images showed that three distinct lobes were missing from a single region; two of the lobes were near the outer arms but one was more inward. Serial 24-nm cross-sections of pf9 axonemes showed a complete gap at the proximal end of the repeating unit, confirming that the I1 subunit spans both inner and outer portions of the inner arm region. Examination of pf23 axonemes, which are missing both I1 and I2 subspecies, showed an additional loss almost exclusively in the inner portion of the inner arm. In longitudinal view, this additional loss occurred in three separate locations and consisted of three inwardly placed lobes, one adjacent to each of the two radial spokes and the third at the distal end of the repeating unit. These same lobes were absent ida4 axonemes, which lack only the I2 subspecies. The I2 subspecies thus does not consist of a single dynein arm subunit in the middle of the repeating unit. The radial spoke suppressor mutation, pf2, is missing four polypeptides of previously unknown location. Averages of these axonemes were missing a portion of the structures remaining in pf23 axonemes. This result suggests that polypeptides of the radial spoke control system are close to the inner dynein arms.
我们通过对野生型和突变型轴丝纵切面与横切面的电子显微照片进行计算机平均处理,以确定莱茵衣藻内动力蛋白臂的排列方式。基于生化和形态学数据,内动力蛋白臂先前被描述为由三个不同的亚类I1、I2和I3组成。我们的纵向平均结果显示,在动力蛋白臂内排中,每96纳米重复单元有10个可区分的密度叶。这些叶主要但并非仅出现在两条平行的排中。我们分析了缺失I1和I2亚类的突变菌株。缺失I1亚类的pf9轴丝的横切面平均结果显示,内动力蛋白臂的内部和外部密度均降低。纵向图像的平均结果显示,单个区域缺少三个不同的叶;其中两个叶靠近外动力蛋白臂,但有一个更靠内。pf9轴丝的连续24纳米横切面显示,重复单元近端有一个完整的间隙,证实I1亚基横跨内动力蛋白臂区域的内部和外部。对缺失I1和I2亚类的pf23轴丝的检查显示,几乎仅在内动力蛋白臂的内部有额外的密度降低。在纵视图中,这种额外的密度降低发生在三个不同的位置,由三个向内放置的叶组成,一个与两条径向辐条中的每一条相邻,第三个在重复单元的远端。同样的叶在仅缺失I2亚类的ida4轴丝中也不存在。因此,I2亚类并非由重复单元中间的单个动力蛋白臂亚基组成。径向辐条抑制突变体pf2缺少四个位置先前未知的多肽。这些轴丝的平均结果缺少pf23轴丝中剩余的部分结构。这一结果表明,径向辐条控制系统的多肽靠近内动力蛋白臂。