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Gap junction structures after experimental alteration of junctional channel conductance

机译:实验性改变连接通道电导后的间隙连接结构

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摘要

Gap junctions are known to present a variety of different morphologies in electron micrographs and x-ray diffraction patterns. This variation in structure is not only seen between gap junctions in different tissues and organisms, but also within a given tissue. In an attempt to understand the physiological meaning of some aspects of this variability, gap junction structure was studied following experimental manipulation of junctional channel conductance. Both physiological and morphological experiments were performed on gap junctions joining stage 20-23 chick embryo lens epithelial cells. Channel conductance was experimentally altered by using five different experimental manipulations, and assayed for conductance changes by observing the intercellular diffusion of Lucifer Yellow CH. All structural measurements were made on electron micrographs of freeze-fracture replicas after quick-freezing of specimens from the living state; for comparison, aldehyde-fixed specimens were measured as well. Analysis of the data generated as a result of this study revealed no common statistically significant changes in the intrajunctional packing of connexons in the membrane plane as a result of experimental alteration of junctional channel conductance, although some of the experimental manipulations used to alter junctional conductance did produce significant structural changes. Aldehyde fixation caused a dramatic condensation of connexon packing, a result not observed with any of the five experimental uncoupling conditions over the 40-min time course of the experiments.
机译:已知间隙连接在电子显微照片和X射线衍射图中呈现出各种不同的形态。这种结构变化不仅可以在不同组织和生物体的间隙连接之间看到,而且可以在给定的组织内看到。为了理解这种可变性的某些方面的生理学意义,在实验性操作连接通道电导之后研究了间隙连接结构。生理和形态学实验都是在连接20-23期雏鸡晶状体上皮细胞的间隙连接处进行的。通过使用五种不同的实验操作,实验性地改变了通道电导率,并通过观察荧光素黄CH的细胞间扩散来测定电导率变化。所有样品的结构测量都是在将冷冻样品从活体状态快速冷冻后,在电子显微镜下进行的。为了进行比较,还测量了醛固定的样品。对本研究结果产生的数据进行的分析表明,尽管实验中使用某些改变连接电导的方法确实可以改变连接面电导,但在膜平面的连接面内结缔膜内堆积方面,并没有统计学上的显着变化。产生重大的结构变化。醛固定导致连接子堆积剧烈凝结,在40分钟的实验过程中,五个解耦条件中的任何一个均未观察到结果。

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