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晶状体纤维分化过程中连接结构的发育。

Development of junctions during differentiation of lens fibers.

作者信息

Benedetti E L, Dunia I, Bloemendal H

出版信息

Proc Natl Acad Sci U S A. 1974 Dec;71(12):5073-7. doi: 10.1073/pnas.71.12.5073.

Abstract

Throughout the differentiation of eye lens epithelium into fibers, an extensive system of intercellular junctions develops. The junctional assembly is initially characterized by the accumulation of 9.0-nm intramembranous particles, forming linear rows in the matching plasma membranes of adjoining fibers. At the final stage of the fiber differentiation, the junctional particles are assembled in geometrically packed arrays. The formation of linear rows and bidimensional lattices of intramembranous particles probably favors reciprocal recognition of cell surfaces and specific cell-to-cell interlocking. Moreover, the existence of a rather rigid lipid core of the plasma membrane of eye lens fiber may promote the clustered distribution of intramembranous particles and facilitate the junctional assembly.

摘要

在晶状体上皮细胞向纤维细胞分化的整个过程中,会形成广泛的细胞间连接系统。连接组装最初的特征是9.0纳米膜内颗粒的积累,在相邻纤维细胞匹配的质膜中形成线性排列。在纤维细胞分化的最后阶段,连接颗粒组装成几何排列的阵列。膜内颗粒的线性排列和二维晶格的形成可能有利于细胞表面的相互识别以及特定的细胞间互锁。此外,晶状体纤维细胞质膜相当刚性的脂质核心的存在可能促进膜内颗粒的聚集分布,并有助于连接组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93e3/434042/5868d513a905/pnas00075-0436-a.jpg

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