Suppr超能文献

大蚊精母细胞中的动粒微管:未处理的、2摄氏度处理的和6摄氏度培养的纺锤体。

Kinetochore microtubules in crane-fly spermatocytes: untreated, 2 degrees C-treated, and 6 degrees C-grown spindles.

作者信息

Scarcello L A, Janicke M A, LaFountain J R

出版信息

Cell Motil Cytoskeleton. 1986;6(4):428-38. doi: 10.1002/cm.970060408.

Abstract

We investigated the involvement of kinetochore microtubules (kMTs) in mediating chromosome-to-pole connections in crane-fly (Nephrotoma suturalis and Nephrotoma ferruginea) spermatocytes. Two experimental treatments were used to yield spindles with reduced numbers of nonkinetochore microtubules (nkMTs). Short-term (10-15 min) exposure of spermatocytes to 2 degrees C caused depolymerization of the majority of nkMTs, resulting in a kMT:(kMT + nkMT) ratio of 0.76. Long-term (24h) exposure to 2 degrees C followed by recovery at 6 degrees C resulted in a kMT:(kMT + nkMT) ratio of 0.55, the spindle having more nkMTs than a 2 degrees C-treated spindle but fewer than an untreated spindle, in which the kMT:(kMT + nkMT) ratio was 0.27. The numbers and lengths of kMTs in 6 degrees C-grown spindles were similar to those in untreated cells, suggesting that the overall inhibition of MT assembly at 6 degrees C apparently did not affect the mechanism by which kMTs are formed. We observed most kMTs of early anaphase spindles to be long (greater than 3 microns), and many extended to the polar regions of the spindle. Thus, the crane-fly spindle appears not to be as atypical as it was previously suggested to be.

摘要

我们研究了动粒微管(kMTs)在大蚊(Nephrotoma suturalis和Nephrotoma ferruginea)精母细胞中介导染色体与纺锤体极连接的作用。采用两种实验处理方法来获得非动粒微管(nkMTs)数量减少的纺锤体。将精母细胞短期(10 - 15分钟)暴露于2摄氏度会导致大多数nkMTs解聚,从而使kMT:(kMT + nkMT)的比例为0.76。长期(24小时)暴露于2摄氏度后在6摄氏度恢复,导致kMT:(kMT + nkMT)的比例为0.55,该纺锤体的nkMTs比经2摄氏度处理的纺锤体多,但比未处理的纺锤体少,未处理纺锤体的kMT:(kMT + nkMT)比例为0.27。在6摄氏度下生长的纺锤体中kMTs的数量和长度与未处理细胞中的相似,这表明在6摄氏度下微管组装的总体抑制显然并未影响kMTs形成的机制。我们观察到后期早期纺锤体的大多数kMTs都很长(大于3微米),并且许多延伸到纺锤体的极区。因此,大蚊的纺锤体似乎并不像之前所认为的那样不典型。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验