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衣藻突变体鞭毛轴丝中微管滑动,这些突变体缺失内臂或外臂动力蛋白:通过改进方法对新型突变体进行速度测量。

Microtubule sliding in flagellar axonemes of Chlamydomonas mutants missing inner- or outer-arm dynein: velocity measurements on new types of mutants by an improved method.

作者信息

Kurimoto E, Kamiya R

机构信息

Department of Molecular Biology, School of Science, Nagoya University, Japan.

出版信息

Cell Motil Cytoskeleton. 1991;19(4):275-81. doi: 10.1002/cm.970190406.

Abstract

To help understand the functional properties of inner and outer dynein arms in axonemal motility, sliding velocities of outer doublets were measured in disintegrating axonemes of Chlamydomonas mutants lacking either of the arms. Measurements under improved solution conditions yielded significantly higher sliding velocities than those observed in a previous study [Okagaki and Kamiya, 1986, J. Cell Biol. 103:1895-1902]. As in the previous study, it was found that the velocities in axonemes of wild type (wt) and a mutant (oda1) missing the outer arm differ greatly: 18.5 +/- 4.1 microns/sec for wt and 4.4 +/- 2.3 microns/sec for oda1 at 0.5 mM Mg-ATP. In contrast, axonemes of two types of mutants (ida2 and ida4) that lacked different sets of two inner-arm heavy chains displayed velocities almost identical with the wild-type velocity. Moreover, axonemes of a non-motile double mutant ida2 X ida4 underwent sliding disintegration at a similar high velocity, although less frequently than in axonemes of single mutants. These observations support the hypothesis that the inner and outer dynein arms in disintegrating axonemes drive microtubules at different speeds and it is the faster outer arm that determines the overall speed when both arms are present. The inner arm may be important for the initiation of sliding. The axoneme thus appears to be equipped with two (or more) types of motors with different intrinsic speeds.

摘要

为了帮助理解轴丝运动中内、外动力蛋白臂的功能特性,在缺乏任一臂的衣藻突变体的解体轴丝中测量了外双联体的滑动速度。在改良的溶液条件下进行的测量产生的滑动速度明显高于先前研究中观察到的速度[冈垣和神谷,1986年,《细胞生物学杂志》103:1895 - 1902]。与先前的研究一样,发现野生型(wt)和缺失外臂的突变体(oda1)的轴丝速度差异很大:在0.5 mM Mg - ATP条件下,wt为18.5±4.1微米/秒,oda1为4.4±2.3微米/秒。相比之下,缺乏两组不同内臂重链的两种突变体(ida2和ida4)的轴丝速度与野生型速度几乎相同。此外,无运动能力的双突变体ida2 X ida4的轴丝以类似的高速进行滑动解体,尽管频率低于单突变体的轴丝。这些观察结果支持了这样的假设,即在解体轴丝中,内、外动力蛋白臂以不同速度驱动微管,并且当双臂都存在时,是速度较快的外臂决定了整体速度。内臂可能对滑动的启动很重要。因此,轴丝似乎配备了两种(或更多)具有不同固有速度的马达。

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