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纺锤体微管的总长度取决于存在的染色体数量。

The total length of spindle microtubules depends on the number of chromosomes present.

作者信息

Nicklas R B, Gordon G W

出版信息

J Cell Biol. 1985 Jan;100(1):1-7. doi: 10.1083/jcb.100.1.1.

Abstract

We extracted chromosomes by micromanipulation from Melanoplus differentialis spermatocytes, producing metaphase spindles with only one or a few chromosomes instead of the usual complement of 23. Cells with various numbers of chromosomes were prepared for electron microscopy, and spindle microtubule length was measured. A constant increment of microtubule length was lost upon the removal of each chromosome; we estimate that only approximately 40% of the original length would remain in the total absence of chromosomes. Unexpectedly, kinetochore microtubules were not the only ones affected when chromosomes were removed: nonkinetochore microtubules accounted for a substantial fraction of the total length lost. No compensatory increase in microtubule length outside the spindle was found. Studies by others show that the kinetochore microtubules of extracted chromosomes are left behind in the cell and dissassemble. The resulting increase in subunit concentration would be expected from in vitro studies to drive microtubule assembly until the original total microtubule length was restored, but that did not happen in these living cells. We conclude that the assembly of a certain, large fraction of microtubule subunits into stable microtubules is dependent on the presence of chromosomes. Possible explanations include (a) limits on microtubule length that prevent any net assembly of the subunits released after chromosomes are removed or (b) a promotion of microtubule assembly by chromosomes, which therefore is reduced in their absence. Chromosome-dependent regulation of microtubule length may account for some features of normal mitosis.

摘要

我们通过显微操作从不同黑蝗精母细胞中提取染色体,得到的中期纺锤体只有一条或几条染色体,而非通常的23条染色体的完整组合。将含有不同数量染色体的细胞制备用于电子显微镜观察,并测量纺锤体微管的长度。每去除一条染色体,微管长度的恒定增量就会减少;我们估计,在完全没有染色体的情况下,微管长度仅会保留约40%的原始长度。出乎意料的是,去除染色体时受影响的并非只有动粒微管:非动粒微管在总长度减少中占了相当大的比例。在纺锤体外未发现微管长度有补偿性增加。其他人的研究表明,提取的染色体的动粒微管会留在细胞中并解体。根据体外研究,由此导致的亚基浓度增加预计会驱动微管组装,直到恢复原始的微管总长度,但在这些活细胞中并未发生这种情况。我们得出结论,一定比例的大量微管亚基组装成稳定微管依赖于染色体的存在。可能的解释包括:(a) 微管长度的限制阻止了染色体去除后释放的亚基进行任何净组装,或者 (b) 染色体对微管组装有促进作用,因此在没有染色体时这种促进作用会减弱。染色体对微管长度的依赖性调节可能解释了正常有丝分裂的一些特征。

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