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体内后期B阶段星射线力的存在、结构基础及功能的直接实验证据。

Direct experimental evidence for the existence, structural basis and function of astral forces during anaphase B in vivo.

作者信息

Aist J R, Bayles C J, Tao W, Berns M W

机构信息

Department of Plant Pathology, Cornell University, Ithaca, NY 14853.

出版信息

J Cell Sci. 1991 Oct;100 ( Pt 2):279-88. doi: 10.1242/jcs.100.2.279.

Abstract

The existence, structural basis and function of astral forces that are active during anaphase B in the fungus, Nectria haematococca, were revealed by experiments performed on living cells. When one of the two asters of a mitotic apparatus was damaged, the entire mitotic apparatus migrated rapidly in the direction of the opposing astral forces, showing that the force that accelerated spindle pole body separation in earlier experiments is located in the asters. When a strong solution of the antimicrotubule drug, MBC, was applied at anaphase A, tubulin immunocytochemistry showed that both astral and spindle microtubules were destroyed completely in less than a minute. As a result, separation of the spindle pole bodies during anaphase B almost stopped. By contrast, disrupting only the spindle microtubules with a laser microbeam increased the rate of spindle pole body separation more than fourfold. Taken together, these two experiments show that the astral forces are microtubule-dependent. When only one of the two or three bundles of spindle microtubules was broken at very early anaphase B, most such diminished spindles elongated at a normal rate, whereas others elongated at an increased rate. This result suggests that only a critical mass or number of spindle microtubules needs be present for the rate of spindle elongation to be fully governed, and that astral forces can accelerate the elongation of a weakened or diminished spindle.

摘要

通过对活细胞进行的实验,揭示了在真菌血球壳菌后期B活跃的星体力的存在、结构基础和功能。当有丝分裂装置的两个星体之一受损时,整个有丝分裂装置会朝着相反的星体力方向快速迁移,这表明在早期实验中加速纺锤极体分离的力位于星体中。当在后期A施加抗微管药物MBC的浓溶液时,微管蛋白免疫细胞化学显示,星体微管和纺锤体微管在不到一分钟内就被完全破坏。结果,后期B期间纺锤极体的分离几乎停止。相比之下,用激光微束仅破坏纺锤体微管会使纺锤极体分离速率提高四倍以上。综合这两个实验表明,星体力是依赖微管的。当在后期B非常早期仅两束或三束纺锤体微管中的一束被破坏时,大多数这种受损的纺锤体以正常速率伸长,而其他的则以增加的速率伸长。这一结果表明,对于纺锤体伸长速率得到完全控制而言,只需要存在临界数量或质量的纺锤体微管,并且星体力可以加速减弱或受损纺锤体的伸长。

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