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贻贝鳃纤毛上皮细胞的机械敏感性和细胞耦合。超微结构与发育分析。

Mechanical sensitivity and cell coupling in the ciliated epithelial cells of Mytilus edulis gill. An ultrastructural and developmental analysis.

作者信息

Good M J, Stommel E W, Stephens R E

机构信息

Marine Biological Laboratory, Woods Hole, Massachusetts 02543.

出版信息

Cell Tissue Res. 1990 Jan;259(1):51-60. doi: 10.1007/BF00571429.

Abstract

Transmission electron microscopy has not provided strong evidence for gap junctions in Mytilus edulis gill tissue, in spite of extensive physiological evidence for coupled ciliary arrest in lateral cells and coupled activation in abfrontal cells. To investigate the kinds and relative distribution of cell junctions and also to determine whether ciliary membrane particle differences exist in these two types of oppositely mechanically sensitive cells, we analyzed the structure of these and two other ciliated cell types (frontal and laterofrontal) by freeze-fracture replication. Gap junctions occur in all four ciliated cell types, but they are relatively small and of variable morphology, often consisting of elongate, winding complexes of membrane particles. Statistically, such structures rarely would be recognized as gap junctions in thin sections. Gap junctions appear to be most abundant between the highly coupled abfrontal cells, minimal between laterofrontal cells, and not evident in the epithelial cells that separate coupled ciliated cell types. The ciliary necklaces of the mechanically activated abfrontal cilia are typically 4- or 5-stranded while those of the remaining three cell types are mainly 3-stranded. In developing gill tips, ciliated cells have abundant gap junctions and newly formed cilia have a full complement of necklace particles. Nascent lateral cilia are not mechanically sensitive, indicating that the acquisition of mechanosensitivity does not correlate with the presence of ciliary necklace or other membrane particles. Lateral and laterofrontal cells become sensitive to neurotransmitters soon after the appearance of the latter during development, but mechanosensitivity of both lateral and abfrontal cells arises substantially later.

摘要

尽管有大量生理学证据表明紫贻贝鳃组织中侧细胞的纤毛同步停止运动以及额前细胞的同步激活,但透射电子显微镜并未提供有力证据证明其存在间隙连接。为了研究细胞连接的种类和相对分布,并确定这两种对机械刺激反应相反的细胞类型的纤毛膜颗粒是否存在差异,我们通过冷冻断裂复型技术分析了这两种细胞以及另外两种纤毛细胞类型(额细胞和侧额细胞)的结构。间隙连接存在于所有四种纤毛细胞类型中,但它们相对较小且形态各异,通常由细长、蜿蜒的膜颗粒复合体组成。从统计学角度来看,在薄片中这样的结构很少会被识别为间隙连接。间隙连接似乎在高度耦合的额前细胞之间最为丰富,在侧额细胞之间最少,而在分隔耦合纤毛细胞类型的上皮细胞中不明显。机械激活的额前纤毛的纤毛项链通常为4或5股,而其余三种细胞类型的纤毛项链主要为3股。在发育中的鳃尖,纤毛细胞有丰富的间隙连接,新形成的纤毛有完整的项链颗粒。新生的侧纤毛对机械刺激不敏感,这表明机械敏感性的获得与纤毛项链或其他膜颗粒的存在无关。在发育过程中,侧细胞和侧额细胞在神经递质出现后不久就对其敏感,但侧细胞和额前细胞的机械敏感性在相当晚的时候才出现。

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