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Dynamics of membrane-skeleton (fodrin) organization during development of polarity in Madin-Darby canine kidney epithelial cells

机译:Madin-Darby犬肾上皮细胞极性发育过程中膜骨架(fodrin)组织的动力学

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摘要

Madin-Darby canine kidney (MDCK) epithelial cells exhibit a polarized distribution of membrane proteins between the apical and basolateral domains of the plasma membrane. We have initiated studies to investigate whether the spectrin-based membrane skeleton plays a role in the establishment and maintenance of these membrane domains. MDCK cells express an isoform of spectrin composed of two subunits, Mr 240,000 (alpha-subunit) and Mr 235,000 (gamma-subunit). This isoform is immunologically and structurally related to fodrin in lens and brain cells, which is a functional and structural analog of alpha beta- spectrin, the major component of the erythrocyte membrane skeleton. Analysis of fodrin in MDCK cells by immunoblotting, immunofluorescence, and metabolic labeling revealed significant changes in the biophysical properties, subcellular distribution, steady-state levels, and turnover of the protein during development of a continuous monolayer of cells. The changes in the cellular organization of fodrin did not appear to coincide with the distributions of microfilaments, microtubules, or intermediate filaments. These changes result in the formation of a highly insoluble, relatively dense and stable layer of fodrin which appears to be localized to the cell periphery and predominantly in the region of the basolateral plasma membrane of MDCK cells in continuous monolayers. The formation of this structure coincides temporally and spatially with extensive cell-cell contact, and with the development of the polarized distribution of the Na+, K+-ATPase, a marker protein of the basolateral plasma membrane.
机译:Madin-Darby犬肾(MDCK)上皮细胞在质膜的顶端和基底外侧结构域之间呈膜蛋白极化分布。我们已经开始研究以调查基于血影蛋白的膜骨架是否在这些膜结构域的建立和维持中发挥作用。 MDCK细胞表达由两个亚基Mr 240,000(α亚基)和Mr 235,000(γ亚基)组成的血影蛋白同工型。该同工型与晶状体和脑细胞中的铁蛋白在免疫学和结构上相关,后者是α-β-血影蛋白(红细胞膜骨架的主要成分)的功能和结构类似物。通过免疫印迹,免疫荧光和代谢标记分析MDCK细胞中的铁蛋白,发现在连续单层细胞发育过程中,蛋白质的生物物理特性,亚细胞分布,稳态水平和周转率发生了显着变化。铁蛋白的细胞组织变化似乎与微丝,微管或中间丝的分布不一致。这些变化导致形成了高度不溶的,相对致密且稳定的铁蛋白层,其似乎位于细胞外围并且主要位于连续单层的MDCK细胞的基底外侧质膜的区域中。这种结构的形成在时间和空间上与广泛的细胞接触相吻合,并且与基底外侧质膜的标志蛋白Na +,K + -ATPase的极化分布相一致。

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