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荧光标记细丝蛋白在通透细胞和活细胞中的结合与分布。

Binding and distribution of fluorescently labeled filamin in permeabilized and living cells.

作者信息

Mittal B, Sanger J M, Sanger J W

机构信息

Department of Anatomy, University of Pennsylvania School of Medicine, Philadelphia 19104.

出版信息

Cell Motil Cytoskeleton. 1987;8(4):345-59. doi: 10.1002/cm.970080407.

Abstract

This study reports the first development of a fluorescently labeled filamin. Smooth muscle filamin was labeled with fluorescent dyes in order to study its interaction with stress fibers and myofibrils, both in living cells and in permeabilized cells. The labeled filamin bound to the Z bands of isolated cross-striated myofibrils and to the Z bands and intercalated discs in both permeabilized embryonic cardiac myocytes and in frozen sections of adult rat ventricle. In permeabilized embryonic chick myotubes, filamin bound to early myotubes but was absent at later stages. In living embryonic chick myotubes, the fluorescently labeled filamin was incorporated into the Z bands of myofibrils during early and late stages of development but was absent during an intermediate stage. In living cardiac myocytes, filamin-IAR was incorporated into nascent as well as fully formed sarcomeres throughout development. In permeabilized nonmuscle cells, labeled filamin bound to attachment plaques and foci of polygonal networks and to the dense bodies in stress fibers. The periodic bands of filamin in stress fibers had a longer spacing in fibroblasts than in epithelial cells. When injected into living cells, filamin was readily incorporated into stress fibers in a striated pattern. The fluorescent filamin bands were broader in injected cells, however, than they were in permeabilized cells. We have interpreted these results from living and permeabilized cells to mean that native filamin is distributed along the full length of the actin filaments in the stress fibers, with a higher concentration present in the dense bodies. A sarcomeric model is presented indicating the position of filamin with respect to other proteins in the stress fiber.

摘要

本研究报告了荧光标记细丝蛋白的首次研发。为了研究平滑肌细丝蛋白在活细胞和通透细胞中与应力纤维及肌原纤维的相互作用,用荧光染料对其进行了标记。标记后的细丝蛋白与分离的横纹肌原纤维的Z带结合,也与通透的胚胎心肌细胞以及成年大鼠心室冰冻切片中的Z带和闰盘结合。在通透的胚胎鸡肌管中,细丝蛋白与早期肌管结合,但在后期阶段消失。在活的胚胎鸡肌管中,荧光标记的细丝蛋白在发育的早期和晚期阶段被整合到肌原纤维的Z带中,但在中间阶段不存在。在活的心肌细胞中,细丝蛋白-IAR在整个发育过程中被整合到新生的以及完全形成的肌节中。在通透的非肌肉细胞中,标记的细丝蛋白与附着斑、多边形网络的焦点以及应力纤维中的致密体结合。应力纤维中细丝蛋白的周期性条带在成纤维细胞中的间距比在上皮细胞中更长。当注入活细胞时,细丝蛋白很容易以条纹状模式整合到应力纤维中。然而,注入细胞中的荧光细丝蛋白条带比通透细胞中的更宽。我们从活细胞和通透细胞的这些结果推断,天然细丝蛋白沿着应力纤维中肌动蛋白丝的全长分布,致密体中浓度更高。提出了一个肌节模型,表明细丝蛋白相对于应力纤维中其他蛋白质的位置。

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