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绒泡菌正常及经咖啡因处理的原生质滴中的质膜内陷、收缩与运动

Plasmalemma invaginations, contraction and locomotion in normal and caffeine-treated protoplasmic drops of Physarum.

作者信息

Achenbach F, Achenbach U, Wohlfarth-Bottermann K E

出版信息

Eur J Cell Biol. 1979 Oct;20(1):12-23.

PMID:520328
Abstract

The de novo formation of plasmalemma invaginations and vacuoles of light microscopic dimension in protoplasmic drops at different age-stages was studied quantitatively by applying morphometric methods and marker techniques. The study includes: i) the normal morphogenetic development to a drop age of 1 hour, ii) the influence of caffeine treatment, and iii) the effects of removal of this drug. In untreated drops, formation of invaginations and vacuoles is accomplished within 10 to 15 min. By application of 5 mM caffeine, the formation of plasmalemma invaginations is inhibited for 20 to 30 min. The onset of oscillating contraction activity is delayed, but not hindered by the drug. Drug removal 20 min after drop generation leads to an immediate initiation of plasmalemma infolding. Although caffeine does not hinder initiation of normal contraction activity, the locomotory ability of the drop is blocked if the drug is not removed from the drop and the substrate. Thus, caffeine uncouples motive force generation from locomotion in all plasmodial stages of Physarum. The cellular sites of drug action are discussed.

摘要

通过应用形态计量学方法和标记技术,对不同年龄阶段原生质滴中光镜尺寸的质膜内陷和液泡的从头形成进行了定量研究。该研究包括:i)到液滴年龄1小时的正常形态发生发育,ii)咖啡因处理的影响,以及iii)去除该药物的效果。在未处理的液滴中,内陷和液泡的形成在10至15分钟内完成。通过施加5 mM咖啡因,质膜内陷的形成被抑制20至30分钟。振荡收缩活动的开始被延迟,但未被该药物阻碍。液滴产生20分钟后去除药物会导致质膜立即开始内折。尽管咖啡因不妨碍正常收缩活动的启动,但如果药物不从液滴和底物中去除,液滴的运动能力就会被阻断。因此,咖啡因在多头绒泡菌的所有变形体阶段将动力产生与运动解偶联。讨论了药物作用的细胞位点。

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