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中体和成膜体微管的极性

Polarity of midbody and phragmoplast microtubules.

作者信息

Euteneuer U, McIntosh J R

出版信息

J Cell Biol. 1980 Nov;87(2 Pt 1):509-15. doi: 10.1083/jcb.87.2.509.

Abstract

A newly discovered method (Heidemann and McIntosh, 1980, Nature [Lond.] 286:517) for displaying the molecular polarity of microtubules (MTs) has been slightly modified and applied to the midbodies of cultured mammalian cells and the phragmoplasts of Haemanthus endosperm. The method involves the decoration of preexisting MTs in lysed cells with curved ribbons of tubulin protofilaments; the direction of curvature of these C-shaped appendages as seen in cross section reflects the intrinsic polarity of the MTs. In travsverse sections of midbodies from HeLa and PtK cells, we find that essentially all the MTs in a given region of the structures have the same direction of hook curvature, and hence the same polarity. The midbody MTs that lie on one side of the spindle equator show the opposite polarity from those on the other side, indicating that the midbody is constructed from two families of antiparallel MTs. Midbody MTs are arranged with their fast-growing ends overlapping at the spindle equator, consistent with the hypothesis that the midbody is formed by the interdigitation of aster MTs. The polarities of the MTs from the phragmoplast of endosperm cells are the same as those found in the mammalian midbody. Our results eliminate one model for mitosis, but are consistent with others. The systematic and reproducible polarities observed favor the concept that MT polarity is an important factor in the formation and/or the function of these two mitotic structures.

摘要

一种新发现的显示微管(MTs)分子极性的方法(Heidemann和McIntosh,1980,《自然》[伦敦]286:517)已稍作修改,并应用于培养的哺乳动物细胞的中间体和血根草胚乳的成膜体。该方法包括用微管蛋白原纤维的弯曲带装饰裂解细胞中预先存在的MTs;这些C形附属物在横截面中看到的弯曲方向反映了MTs的固有极性。在来自HeLa和PtK细胞的中间体的横切面中,我们发现结构给定区域内基本上所有的MTs都具有相同的钩弯曲方向,因此具有相同的极性。位于纺锤体赤道一侧的中间体MTs与另一侧的MTs极性相反,这表明中间体由两个反平行MTs家族构成。中间体MTs以其快速生长的末端在纺锤体赤道处重叠的方式排列,这与中间体由星体MTs相互交错形成的假设一致。胚乳细胞成膜体的MTs极性与在哺乳动物中间体中发现的极性相同。我们的结果排除了一种有丝分裂模型,但与其他模型一致。观察到的系统且可重复的极性支持了MT极性是这两种有丝分裂结构形成和/或功能中的一个重要因素的观点。

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Polarity of midbody and phragmoplast microtubules.中体和成膜体微管的极性
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