杆状细胞和锥体细胞外段不同细胞骨架系统中运动蛋白与微管的关联。

Acta anatomica Pub Date : 1998-01-01 DOI:10.1159/000046478
M S Eckmiller, A Toman
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引用次数: 14

摘要

脊椎动物光感受器的膜状外节由微管和相关蛋白组成的细胞骨架支撑,这些细胞骨架在杆状细胞和锥体细胞中以纤毛轴突的形式存在,在杆状细胞外节的切孔处作为单独的细胞骨架系统存在。我们对从两栖动物视网膜分离的光感受器的细胞骨架进行了免疫细胞化学研究,发现对运动蛋白激酶重链的免疫反应性与这些细胞骨架系统的每个外节段的微管密切相关。在锥体的外节段,运动蛋白重链免疫反应仅限于轴突延伸到外节尖端的一条条纹。在杆状细胞外节,运动蛋白重链免疫反应性表现为轴突上的短条纹和杆状细胞外节切口上与微管重合的一系列长平行线。我们的发现构成了第一个在视锥细胞轴突和视杆细胞切孔中发现运动蛋白的报告。光感受器外段轴突和杆外段切口中的运动蛋白与微管密切相关,可以沿着微管纵向运输物质和/或将这些物质相互连接和/或与其他成分连接。由于这些细胞骨架系统的基本方式不同,酪蛋白在每种情况下可以发挥不同的作用,例如,杆状细胞外节切点的酪蛋白可以具有独特的杆状细胞结构和功能作用。这些发现可能具有临床意义,因为类似的细胞骨架系统预计会发生在人类光感受器的外段;因此,在光感受器轴突和/或杆外节切点的细胞骨架系统中涉及运动蛋白的干扰可能干扰光感受器的正常结构和功能,并导致人类光感受器变性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Association of kinesin with microtubules in diverse cytoskeletal systems in the outer segments of rods and cones.

The membranous outer segments of vertebrate photoreceptors are supported by cytoskeletons consisting of microtubules and associated proteins, which occur as the ciliary axoneme in rods and cones, and as a separate cytoskeletal system at the incisures of rod outer segments. We performed an immunocytochemical study of the cytoskeleton in photoreceptors isolated from amphibian retinas and found that immunoreactivity to the heavy chain of the motor protein kinesin was closely associated with the microtubules in each of these outer segment cytoskeletal systems. In the outer segments of cones, kinesin heavy chain immunoreactivity was confined to a streak at the axoneme that extended to the outer segment tip. In the outer segments of rods, kinesin heavy chain immunoreactivity was found as both a short streak at the axoneme and a series of long parallel lines that coincided with the microtubules at rod outer segment incisures. Our findings constitute the first report of kinesin in the axoneme of cones and at the incisures of rods. Closely associated with microtubules, kinesin in photoreceptor outer segment axonemes and at rod outer segment incisures can transport materials longitudinally along the microtubules and/or connect these with each other and/or with other components. Because these cytoskeletal systems differ in fundamental ways, kinesin can play different roles in each case, e.g., kinesin at rod outer segment incisures can have structural and functional roles that are unique to rods. These findings may have clinical relevance because similar cytoskeletal systems are expected to occur in the outer segments of human photoreceptors; thus, a disturbance involving kinesin in the cytoskeletal systems at photoreceptor axonemes and/or at rod outer segment incisures could interfere with the normal structure and function of photoreceptors and contribute to human photoreceptor degenerations.

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