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圆锥体梭形伸长涉及由动力蛋白-1介导的单向微管运动。

Cone myoid elongation involves unidirectional microtubule movement mediated by dynein-1.

机构信息

Department of Cell Biology, Neurobiology, and Anatomy, Medical College of Wisconsin, Milwaukee, WI 53226.

Department of Ophthalmology, Medical College of Wisconsin, Milwaukee, WI 53226.

出版信息

Mol Biol Cell. 2018 Jan 15;29(2):180-190. doi: 10.1091/mbc.E17-08-0525. Epub 2017 Nov 15.

Abstract

Teleosts and amphibians exhibit retinomotor movements, morphological changes in photoreceptors regulated by light and circadian rhythms. Cone myoid elongation occurs during dark adaptation, leading to the positioning of the cone outer segment closer to the retinal pigment epithelium. Although it has been shown that microtubules are essential for cone myoid elongation, the underlying mechanism has not been established. In this work, we generated a transgenic line of zebrafish expressing a photoconvertible form of α-tubulin (tdEOS-tubulin) specifically in cone photoreceptors. Using superresolution structured illumination microscopy in conjunction with both pharmacological and genetic manipulation, we show that cytoplasmic dynein-1, which localizes to the junction between the ellipsoid and myoid, functions to shuttle microtubules from the ellipsoid into the myoid during the course of myoid elongation. We propose a novel model by which stationary complexes of cytoplasmic dynein-1 are responsible for the shuttling of microtubules between the ellipsoid and myoid is the underlying force for the morphological change of myoid elongation.

摘要

硬骨鱼和两栖动物表现出光感受器的视网膜运动,即光和昼夜节律调节的形态变化。在暗适应过程中,锥体肌纤维伸长,导致锥体外节更靠近视网膜色素上皮。虽然已经证明微管对于锥体肌纤维伸长是必不可少的,但潜在的机制尚未确定。在这项工作中,我们生成了一个表达光转化形式α-微管蛋白(tdEOS-tubulin)的斑马鱼转基因系,该蛋白特异性地在锥体光感受器中表达。我们使用超分辨率结构照明显微镜,结合药理学和遗传学操作,表明位于椭圆体和肌纤维连接处的细胞质动力蛋白-1,在肌纤维伸长过程中,将微管从椭圆体运送到肌纤维中。我们提出了一个新的模型,即细胞质动力蛋白-1的固定复合物负责在椭圆体和肌纤维之间穿梭微管,这是肌纤维伸长的形态变化的潜在力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c50/5909930/0d6dc1d7afe0/mbc-29-180-g001.jpg

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