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衣藻鞭毛运动分析:“通过野生型和突变型鞭毛的比较揭示了辐条系统的功能。”

Analysis of the movement of Chlamydomonas flagella:" the function of the radial-spoke system is revealed by comparison of wild-type and mutant flagella.

作者信息

Brokaw C J, Luck D J, Huang B

出版信息

J Cell Biol. 1982 Mar;92(3):722-32. doi: 10.1083/jcb.92.3.722.

Abstract

The mutation uni-1 gives rise to uniflagellate Chlamydomonas cells which rotate around a fixed point in the microscope field, so that the flagellar bending pattern can be photographed easily. This has allowed us to make a detailed analysis of the wild-type flagellar bending pattern and the bending patterns of flagella on several mutant strains. Cells containing uni-1, and recombinants of uni-1 with the suppressor mutations, suppf-1 and suppf-3, show the typical asymmetric bending pattern associated with forward swimming in Chlamydomonas, although suppf-1 flagella have about one-half the normal beta frequency, apparently as the result of defective function of the outer dynein arms. The pf-17 mutation has been shown to produce nonmotile flagella in which radial spoke heads and five characteristic axonemal polypeptides are missing. Recombinants containing pf-17 and either suppf-2 or suppf-3 have motile flagella, but still lack radial-spoke heads and the associated polypeptides. The flagellar bending pattern of these recombinants lacking radial-spoke heads is a nearly symmetric, large amplitude pattern which is quite unlike the wild-type pattern. However, the presence of an intact radial-spoke system is not required to convert active sliding into bending and is not required for bend initiation and bend propagation, since all of these processes are active in suppfpf-17 recombinants. The function of the radial-spoke system appears to be to convert the symmetric bending pattern displayed by these recombinants into the asymmetric bending pattern required for efficient swimming, by inhibiting the development of reverse bends during the recovery phase of the bending cycle.

摘要

突变体uni-1会产生单鞭毛的衣藻细胞,这些细胞在显微镜视野中围绕一个固定点旋转,这样鞭毛的弯曲模式就可以很容易地被拍摄下来。这使我们能够对野生型鞭毛弯曲模式以及几种突变菌株鞭毛的弯曲模式进行详细分析。含有uni-1的细胞,以及uni-1与抑制突变体suppf-1和suppf-3的重组体,呈现出与衣藻向前游动相关的典型不对称弯曲模式,尽管suppf-1鞭毛的β频率约为正常频率的一半,这显然是外动力蛋白臂功能缺陷的结果。pf-17突变已被证明会产生无运动能力的鞭毛,其中缺少径向辐条头部和五种特征性轴丝多肽。含有pf-17和suppf-2或suppf-3的重组体有可运动的鞭毛,但仍然缺少径向辐条头部和相关多肽。这些缺少径向辐条头部的重组体的鞭毛弯曲模式是一种近乎对称的大振幅模式,与野生型模式截然不同。然而,完整的径向辐条系统对于将主动滑动转化为弯曲并不是必需的,对于弯曲的起始和传播也不是必需的,因为所有这些过程在suppfpf-17重组体中都是活跃的。径向辐条系统的功能似乎是通过在弯曲周期的恢复阶段抑制反向弯曲的发展,将这些重组体所呈现的对称弯曲模式转化为有效游动所需的不对称弯曲模式。

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