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近端肾小管上皮细胞极性与跨上皮转运的关系。

Polarity of proximal tubular epithelial cells in relation to transepithelial transport.

作者信息

Murer H, Evers J, Kinne R

出版信息

Curr Probl Clin Biochem. 1976;6:173-89.

PMID:11964
Abstract

Transport properties of brush border microvilli and basal-lateral plasma membranes isolated from rat kidney cortex were studied by a millipore filtration technique. Brush border microvilli but not basal-lateral plasma membranes contain sodium dependent stereospecific transport system for D-glucose, L-phenylalanine and inorganic phosphate as indicated by saturability, countertransport and inhibition by structurally related compounds. Reduction of equilbrium uptake by increasing medium osmolarity suggests transport into an osmotically reactive space rather than binding to the membranes. Electrogenecity of the sodium-sugar and sodium-amino-acid cotransport system was established by their dependence on artificially imposed diffusion potentials. Also a NA+/H+ antiport system can be demonstrated in microvilli vesicles by demonstrating counterflow of both ions under short circuit conditions. Basal-lateral plasma membranes contain sodium independent stereospecific transport systems for sugars and amino acids. These results demonstrate a marked functional polarity of the cell membranes in respect to sodium dependent and sodium independent transport systems. This polarity in conjunction with the asymmetrical distribution of sodium between the intra- and extracellular space seems to enable the proximal tubule epithelial cells to perform active transepithelial transport.

摘要

采用微孔过滤技术研究了从大鼠肾皮质分离出的刷状缘微绒毛和基底外侧质膜的转运特性。刷状缘微绒毛而非基底外侧质膜含有对D-葡萄糖、L-苯丙氨酸和无机磷酸盐的钠依赖性立体特异性转运系统,这表现为转运的饱和性、逆向转运以及结构相关化合物的抑制作用。通过提高培养基渗透压来降低平衡摄取量,这表明转运进入了一个对渗透压有反应的空间,而非与膜结合。钠-糖和钠-氨基酸共转运系统的电生性是通过它们对人为施加的扩散电位的依赖性而确定的。同样,通过证明在短路条件下两种离子的逆向流动,可在微绒毛囊泡中证实存在一种Na⁺/H⁺反向转运系统。基底外侧质膜含有对糖和氨基酸的钠非依赖性立体特异性转运系统。这些结果表明,就钠依赖性和钠非依赖性转运系统而言,细胞膜具有明显的功能极性。这种极性与细胞内和细胞外空间之间钠的不对称分布相结合,似乎使近端小管上皮细胞能够进行活跃的跨上皮转运。

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