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酵母高尔基体和内体的结构及功能维持需要ARF。

ARF is required for maintenance of yeast Golgi and endosome structure and function.

作者信息

Gaynor E C, Chen C Y, Emr S D, Graham T R

机构信息

Department of Biology, Division of Cellular and Molecular Medicine, and the Howard Hughes Medical Institute, University of California, San Diego La Jolla, California 92093-0668, USA.

出版信息

Mol Biol Cell. 1998 Mar;9(3):653-70. doi: 10.1091/mbc.9.3.653.

Abstract

ADP ribosylation factor (ARF) is thought to play a critical role in recruiting coatomer (COPI) to Golgi membranes to drive transport vesicle budding. Yeast strains harboring mutant COPI proteins exhibit defects in retrograde Golgi to endoplasmic reticulum protein transport and striking cargo-selective defects in anterograde endoplasmic reticulum to Golgi protein transport. To determine whether arf mutants exhibit similar phenotypes, the anterograde transport kinetics of multiple cargo proteins were examined in arf mutant cells, and, surprisingly, both COPI-dependent and COPI-independent cargo proteins exhibited comparable defects. Retrograde dilysine-mediated transport also appeared to be inefficient in the arf mutants, and coatomer mutants with no detectable anterograde transport defect exhibited a synthetic growth defect when combined with arf1Delta, supporting a role for ARF in retrograde transport. Remarkably, we found that early and medial Golgi glycosyltransferases localized to abnormally large ring-shaped structures. The endocytic marker FM4-64 also stained similar, but generally larger ring-shaped structures en route from the plasma membrane to the vacuole in arf mutants. Brefeldin A similarly perturbed endosome morphology and also inhibited transport of FM4-64 from endosomal structures to the vacuole. Electron microscopy of arf mutant cells revealed the presence of what appear to be hollow spheres of interconnected membrane tubules which likely correspond to the fluorescent ring structures. Together, these observations indicate that organelle morphology is significantly more affected than transport in the arf mutants, suggesting a fundamental role for ARF in regulating membrane dynamics. Possible mechanisms for producing this dramatic morphological change in intracellular organelles and its relation to the function of ARF in coat assembly are discussed.

摘要

ADP核糖基化因子(ARF)被认为在将外被蛋白复合物(COPI)募集到高尔基体膜以驱动运输小泡出芽过程中起关键作用。携带突变型COPI蛋白的酵母菌株在从高尔基体到内质网的逆行蛋白运输中表现出缺陷,并且在从内质网到高尔基体的顺行蛋白运输中表现出显著的货物选择性缺陷。为了确定arf突变体是否表现出类似的表型,研究了arf突变体细胞中多种货物蛋白的顺行运输动力学,令人惊讶的是,依赖COPI和不依赖COPI的货物蛋白都表现出类似的缺陷。逆行双赖氨酸介导的运输在arf突变体中似乎也效率低下,并且没有可检测到的顺行运输缺陷的外被蛋白复合物突变体与arf1Delta结合时表现出合成生长缺陷,这支持了ARF在逆行运输中的作用。值得注意的是,我们发现早期和中间高尔基体糖基转移酶定位于异常大的环形结构。内吞标记物FM4-64在arf突变体中也染色类似但通常更大的环形结构,这些结构在从质膜到液泡的途中。布雷菲德菌素A同样扰乱了内体形态,并且还抑制了FM4-64从内体结构到液泡的运输。arf突变体细胞的电子显微镜检查显示存在似乎是由相互连接的膜小管组成的空心球,这可能与荧光环结构相对应。总之,这些观察结果表明,arf突变体中细胞器形态比运输受影响更大,这表明ARF在调节膜动力学中起基本作用。本文讨论了在细胞内细胞器中产生这种显著形态变化的可能机制及其与ARF在外被组装中的功能的关系。

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