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胞吐作用中膜融合的调控。对一种在刺丝泡挤出过程最后一步受阻的草履虫突变体的生理学研究。

Control of membrane fusion in exocytosis. Physiological studies on a Paramecium mutant blocked in the final step of the trichocyst extrusion process.

作者信息

Beisson J, Cohen J, Lefort-Tran M, Pouphile M, Rossignol M

出版信息

J Cell Biol. 1980 May;85(2):213-27. doi: 10.1083/jcb.85.2.213.

Abstract

Previous studies on exocytosis in Paramecium using mutants affecting trichocyst extrusion permitted us to analyze the assembly and function of three intramembrane particle arrays ("ring" and "rosette" in the plasma membrane, "annulus" in the trichocyst membrane) involved in the interaction between these two membranes. Using a conditional mutation, nd9, which blocks rosette assembly and prevents exocytosis at the nonpermissive temperature, we have analyzed the effect of temperature on the secretory capacity of nd9 cells. By combining several techniques (physiological studies, microinjections, inhibition of fatty acid synthesis, and freeze-fracture analysis) we demonstrate (a) that the product of the mutated allele nd9 is not thermolabile but that its activity is dependent upon temperature-induced changes in the membrane lipid composition and (b) that the product of the nd9 locus is a diffusible cytoplasmic component whose interaction with both plasma membrane and trichocyst membrane is required for rosette assembly and exocytosis. The data provide physiological evidence for the existence of a molecular complex(es) linking the two membranes and involved in the control of membrane fusion; we discuss the possible nature and function of these links.

摘要

先前对草履虫胞吐作用的研究利用影响刺丝泡排出的突变体,使我们能够分析参与这两种膜之间相互作用的三种膜内颗粒阵列(质膜中的“环”和“玫瑰花结”,刺丝泡膜中的“环带”)的组装和功能。利用条件突变体nd9,其在非允许温度下阻断玫瑰花结组装并阻止胞吐作用,我们分析了温度对nd9细胞分泌能力的影响。通过结合多种技术(生理学研究、显微注射、脂肪酸合成抑制和冷冻蚀刻分析),我们证明:(a)突变等位基因nd9的产物不是热不稳定的,但其活性取决于温度诱导的膜脂质组成变化;(b)nd9基因座的产物是一种可扩散的细胞质成分,其与质膜和刺丝泡膜的相互作用是玫瑰花结组装和胞吐作用所必需的。这些数据为存在连接这两种膜并参与膜融合控制的分子复合物提供了生理学证据;我们讨论了这些连接可能的性质和功能。

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