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衣藻鞭毛的弯曲模式:IV. 内、外动力蛋白臂存在缺陷的突变体表明动力蛋白臂功能存在差异。

Bending patterns of Chlamydomonas flagella: IV. Mutants with defects in inner and outer dynein arms indicate differences in dynein arm function.

作者信息

Brokaw C J, Kamiya R

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

Cell Motil Cytoskeleton. 1987;8(1):68-75. doi: 10.1002/cm.970080110.

Abstract

Mutants with outer dynein arm defects or deficiencies all show a major reduction in beat frequency to about half the normal value; some of these mutants show an additional decrease in sliding velocity associated with reduced shear amplitude and an additional reduction in beat frequency, as well as other more minor modifications of the normal forward mode bending pattern. New mutants (ida98, pf30), which appear to be deficient in a subset of inner dynein arms show a reduction in sliding velocity that is primarily associated with a reduction in shear amplitude, with only a small reduction in beat frequency. These differences in motility phenotype between inner and outer dynein arm mutants suggest that inner and outer dynein arms may have distinct functions. The relatively large decrease in sliding velocity associated with partial loss of inner arms is consistent with earlier observations on pf23, a nonmotile mutant lacking inner arms, suggesting that inner arms may have an essential function in motility. The ability to generate reverse mode bending patterns is retained in some inner or outer dynein arm mutants, but appears to be decreased in those mutants which show reduced shear amplitude for the forward mode bending pattern.

摘要

具有外动力蛋白臂缺陷或缺失的突变体,其搏动频率均大幅降低至正常值的一半左右;其中一些突变体的滑动速度还会进一步降低,同时剪切幅度减小,搏动频率进一步降低,以及正常向前模式弯曲模式的其他一些较小改变。新的突变体(ida98、pf30)似乎在内动力蛋白臂的一个子集中存在缺陷,其滑动速度降低,主要与剪切幅度减小有关,搏动频率仅有小幅降低。内、外动力蛋白臂突变体在运动表型上的这些差异表明,内、外动力蛋白臂可能具有不同的功能。与内臂部分缺失相关的滑动速度相对大幅降低,与早期对pf23(一种缺乏内臂的无运动能力突变体)的观察结果一致,表明内臂可能在运动中具有重要功能。在一些内或外动力蛋白臂突变体中,产生反向模式弯曲模式的能力得以保留,但在那些向前模式弯曲模式的剪切幅度降低的突变体中,这种能力似乎有所下降。

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