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哺乳动物视杆光感受器的圆盘是通过膜内陷机制形成的。

Discs of mammalian rod photoreceptors form through the membrane evagination mechanism.

作者信息

Ding Jin-Dong, Salinas Raquel Y, Arshavsky Vadim Y

机构信息

Department of Ophthalmology, Duke University Medical Center, Durham, NC 27710.

Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, NC 27710.

出版信息

J Cell Biol. 2015 Nov 9;211(3):495-502. doi: 10.1083/jcb.201508093. Epub 2015 Nov 2.

Abstract

Photoreceptor discs are membrane organelles harboring components of the visual signal transduction pathway. The mechanism by which discs form remains enigmatic and is the subject of a major controversy. Classical studies suggest that discs are formed as serial plasma membrane evaginations, whereas a recent alternative postulates that discs, at least in mammalian rods, are formed through intracellular vesicular fusion. We evaluated these models in mouse rods using methods that distinguish between the intracellular vesicular structures and plasma membrane folds independently of their appearance in electron micrographs. The first differentiated membranes exposed to the extracellular space from intracellular membranes; the second interrogated the orientation of protein molecules in new discs. Both approaches revealed that new discs are plasma membrane evaginations. We further demonstrated that vesiculation and plasma membrane enclosure at the site of new disc formation are artifacts of tissue fixation. These data indicate that all vertebrate photoreceptors use the evolutionary conserved membrane evagination mechanism to build their discs.

摘要

光感受器盘是含有视觉信号转导通路成分的膜细胞器。盘形成的机制仍然是个谜,也是一个主要争议的主题。经典研究表明,盘是作为连续的质膜内陷形成的,而最近的一种观点则假定,盘至少在哺乳动物的视杆细胞中是通过细胞内囊泡融合形成的。我们在小鼠视杆细胞中使用了能够独立于电子显微镜下的外观来区分细胞内囊泡结构和质膜褶皱的方法,对这些模型进行了评估。第一种方法是从细胞内膜中找出首次暴露于细胞外空间的分化膜;第二种方法是研究新形成的盘中蛋白质分子的方向。两种方法都表明,新形成的盘是质膜内陷。我们进一步证明,在新盘形成部位的囊泡化和质膜包封是组织固定的假象。这些数据表明,所有脊椎动物的光感受器都使用进化上保守的膜内陷机制来构建它们的盘。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b51e/4639867/2db4e6e81edb/JCB_201508093_Fig1.jpg

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