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心脏间隙连接制剂通过原子力显微镜揭示半斑。

Heart gap junction preparations reveal hemiplaques by atomic force microscopy.

作者信息

Lal R, John S A, Laird D W, Arnsdorf M F

机构信息

Department of Medicine, University of Chicago, Illinois 60637, USA.

出版信息

Am J Physiol. 1995 Apr;268(4 Pt 1):C968-77. doi: 10.1152/ajpcell.1995.268.4.C968.

Abstract

Current structural models of gap junctions indicate two apposed plasma membranes with hexagonally packed hemichannels in each membrane aligning end to end. These channels connect the cytoplasms of contacting cells. Images of isolated rat heart gap junctions have been made with the atomic force microscope in aqueous media. We show that native cardiac gap junctions have a thickness of 25 +/- 0.6 nm. This decreases to 17 nm when they are treated with trypsin, which is known to remove some cytoplasmic components of connexin 43. Imaging shows subunits with a center to center spacing of approximately 9-10 nm and long range hexagonal packing, measurements in agreement with studies using freeze-fracture and negative-stain electron microscopy. In addition to gap junctions, we imaged structures that had all the characteristics of native gap junctions except their thickness was limited to 9-11 nm. They also show long range hexagonal packing and center to center spacing of 9-10 nm. These structures decrease in thickness, to 6-9 nm, when treated with trypsin. We have called these structures hemiplaques. They appear to be present endogenously in the preparation, as we have ruled out their being an artifact of imaging by AFM. However, it remains to be determined if they are a consequence of the procedure used in isolating gap junctions or a possible intermediary in gap junction formation.

摘要

目前的间隙连接结构模型表明,两个相对的质膜中,每个膜上呈六边形排列的半通道首尾对齐。这些通道连接着相互接触细胞的细胞质。已在水介质中用原子力显微镜拍摄了分离的大鼠心脏间隙连接的图像。我们发现,天然心脏间隙连接的厚度为25±0.6纳米。用胰蛋白酶处理后,其厚度降至17纳米,已知胰蛋白酶会去除连接蛋白43的一些细胞质成分。成像显示亚基的中心间距约为9 - 10纳米,且呈长程六边形排列,这些测量结果与使用冷冻断裂和负染电子显微镜的研究结果一致。除了间隙连接,我们还对一些结构进行了成像,这些结构具有天然间隙连接的所有特征,只是其厚度限制在9 - 11纳米。它们也显示出长程六边形排列,中心间距为9 - 10纳米。用胰蛋白酶处理后,这些结构的厚度会降至6 - 9纳米。我们将这些结构称为半斑。它们似乎在制备过程中内源性存在,因为我们已经排除了它们是原子力显微镜成像伪像的可能性。然而,它们是间隙连接分离过程中所用程序的结果,还是间隙连接形成过程中的可能中间体,仍有待确定。

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