Lew D J, Simon S M
Department of Molecular Biology, Research Institute of Scripps Clinic, La Jolla, California 92037.
J Membr Biol. 1991 Sep;123(3):261-8. doi: 10.1007/BF01870409.
Constitutive exocytosis was investigated in the yeast Saccharomyces cerevisiae using temperature-sensitive mutant (sec) strains which do not allow vesicle fusion to the plasma membrane at the restrictive temperature. Secretory vesicles were accumulated in the cell at the restrictive temperature and then protein synthesis was blocked with cycloheximide. Upon returning the cells to the permissive temperature the contents of the accumulated vesicles were secreted. This allowed the study of constitutive exocytosis independent of the processes responsible for vesicular biosynthesis. Neither the kinetics nor magnitude of exocytosis were affected by removal of external Ca2+ or perturbations of cytosolic Ca2+. This suggests that in those systems where calcium is required for exocytosis it is a regulatory molecule and not part of the mechanism of membrane fusion. Release occurred over a very broad range of pH and in media with different ionic compositions, suggesting that ionic and potential gradients across the plasma membrane play no role in exocytosis in yeast. High osmolarity inhibited the rate, but not the extent, of release. A novel inhibitory effect of azide was detected which occurred only at low pH. Vanadate also inhibited release in a pH-independent manner. Secretion occurred at the same rate in cells with or without accumulated vesicles. This infers a rate-limiting step following vesicle accumulation, perhaps a limiting number of release sites on the plasma membrane.
利用温度敏感突变(sec)菌株在酿酒酵母中研究组成型胞吐作用,这些菌株在限制温度下不允许囊泡与质膜融合。在限制温度下,分泌囊泡在细胞中积累,然后用环己酰亚胺阻断蛋白质合成。当细胞回到允许温度时,积累的囊泡内容物被分泌出来。这使得能够独立于负责囊泡生物合成的过程来研究组成型胞吐作用。胞吐作用的动力学和幅度均不受去除细胞外Ca2+或干扰胞质Ca2+的影响。这表明,在那些胞吐作用需要钙的系统中,钙是一种调节分子,而不是膜融合机制的一部分。释放发生在非常宽的pH范围内以及具有不同离子组成的培养基中,这表明质膜上的离子和电位梯度在酵母的胞吐作用中不起作用。高渗透压抑制释放速率,但不抑制释放程度。检测到叠氮化物的一种新的抑制作用,其仅在低pH下发生。钒酸盐也以不依赖于pH的方式抑制释放。在有或没有积累囊泡的细胞中,分泌以相同的速率发生。这推断在囊泡积累之后存在一个限速步骤,可能是质膜上有限数量的释放位点。