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硬骨鱼视网膜中视锥肌样细胞伸长过程中的微管

Microtubules in cone myoid elongation in the teleost retina.

作者信息

Warren R H, Brunside B

出版信息

J Cell Biol. 1978 Jul;78(1):247-59. doi: 10.1083/jcb.78.1.247.

Abstract

The myoids of retinal cone cells of the blue-striped grunt (Haemulon sciurus) undergo significant elongation during dark adaptation of the retina. Longitudinally oriented microtubules are present in myoids both before and after elongation. Injection of colchicine into the vitreous of the eye in vivo disrupts the microtubules in the myoids and prevents dark-adaptive myoid elongation. Counts of microtubules in transverse sections along the lengths of elongating myoids show that there is a uniform decrease in the number of microtubules at any one point along the myoid as the myoid elongates. The magnitude of the decrease is proportional to the extent of the elogation. The product of the mean myoid microtubule number (determined from counts at progressive intervals along the myoid) and the myoid length remains essentially constant during myoid elongation, indicating that the total quantity of microtubules in the myoid does not increase with elogation. Serial section tracings of the microtubules along the myoids suggest that individual microtubules do not extend the length of the myoid and that the myoid microtubular apparatus consists of bundles of overlapping shorter microtubules. We propose that elongation of the myoid is accompanied by sliding redistribution of microtubules along the length of the myoid, and that the sliding may be generated by interaction between microtubules in regions where they closely overlap in bundles. We find no evidence for the involvement of discrete, electron-dense microtubular organizing centers in myoid elogation.

摘要

蓝条石鲈(Haemulon sciurus)视网膜锥体细胞的肌样在视网膜暗适应过程中会经历显著伸长。在伸长前后,肌样中均存在纵向排列的微管。在体内向眼玻璃体注射秋水仙碱会破坏肌样中的微管,并阻止暗适应时肌样的伸长。对伸长肌样长度方向横切面的微管计数显示,随着肌样伸长,肌样上任何一点的微管数量都会均匀减少。减少的幅度与伸长程度成正比。在肌样伸长过程中,平均肌样微管数量(通过沿肌样逐渐增加的间隔计数确定)与肌样长度的乘积基本保持不变,这表明肌样中微管的总量不会随着伸长而增加。沿肌样对微管进行连续切片追踪表明,单个微管不会延伸至肌样的全长,并且肌样微管装置由重叠的较短微管束组成。我们提出,肌样的伸长伴随着微管沿肌样长度的滑动重新分布,并且这种滑动可能是由微管束中紧密重叠区域的微管之间的相互作用产生的。我们没有发现离散的、电子致密的微管组织中心参与肌样伸长的证据。

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