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在具有近端肾小管细胞特征的肾细胞系(LLC-PK1)中封闭连接。

Occluding junctions in a renal cell line (LLC-PK1) with characteristics of proximal tubular cells.

作者信息

Rabito C A

出版信息

Am J Physiol. 1986 Apr;250(4 Pt 2):F734-43. doi: 10.1152/ajprenal.1986.250.4.F734.

Abstract

At confluency, LLC-PK1 monolayers develop a transepithelial electrical resistance of 127 omega X cm2 and a spontaneous electrical potential that very seldom exceeds 1 mV. The monolayer shows a linear current-voltage relation in symmetrical solutions. The total conductance increases linearly with increases in the electrolyte concentration of the bathing solution. These characteristics indicate that the membrane that controls the permeability properties of the monolayer is a single membrane that it does not contain very weakly charged sites and it is sufficiently thick to obey the principle of microscopic electroneutrality. The sodium-to-chloride permeability determined from dilution potentials or from direct measurements of unidirectional Na+ and Cl- flux are 0.30 and 0.38, respectively, almost identical to the ratio obtained in the straight segment of the renal proximal tubule. The steady-state value of the electrical resistance depends on the Ca2+ concentration in the incubation medium with an apparent Km of 0.1 mM. A transitory opening of the occluding junctions results in a more uniform distribution of the Na+-dependent sugar transport system, which is normally confined to the apical membrane of the epithelial cell. This result indicates that the occluding junctions in LLC-PK1 monolayers act as a mechanical barrier, preventing the intermixing of extrinsic as well as intrinsic membrane proteins.

摘要

汇合时,LLC-PK1单层细胞形成的跨上皮电阻为127Ω×cm²,自发电位很少超过1mV。该单层细胞在对称溶液中呈现线性电流-电压关系。总电导率随浴液电解质浓度的增加而线性增加。这些特性表明,控制单层细胞通透性的膜是一种单一膜,它不包含带弱电荷的位点,并且足够厚以遵循微观电中性原理。由稀释电位或通过直接测量单向Na⁺和Cl⁻通量确定的钠对氯的通透性分别为0.30和0.38,几乎与在肾近端小管直段获得的比率相同。电阻的稳态值取决于孵育培养基中的Ca²⁺浓度,表观Km为0.1mM。封闭连接的短暂开放导致依赖Na⁺的糖转运系统分布更均匀,该系统通常局限于上皮细胞的顶端膜。这一结果表明,LLC-PK1单层细胞中的封闭连接起到了机械屏障的作用,防止外在和内在膜蛋白的混合。

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