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上皮刷状缘膜中的被动性氢离子/氢氧根离子通透性。

Passive H+/OH- permeability in epithelial brush border membranes.

作者信息

Verkman A S

机构信息

Department of Medicine, University of California, San Francisco 94143.

出版信息

J Bioenerg Biomembr. 1987 Oct;19(5):481-93. doi: 10.1007/BF00770031.

Abstract

Passive H+/OH- permeability across epithelial cell membranes is rapid and leads to partial dissipation of H+/OH- gradients produced by H+ pumps and ion gradient-coupled H+/OH- transporters. A heterogeneous set of H+/OH- transport mechanisms exist in biological membranes: lipid solubility/diffusion, protein-mediated transport by specific proteins or by slippage through ion-coupled H+/OH- transporters, and transport at the protein/lipid interface or through protein-dependent defects in the lipid structure. A variety of methods are available to study protein transport mechanisms accurately in cells and biomembrane vesicles including pH electrode recordings, pH-sensitive fluorescent and magnetic resonance probes, and potentiometric probes. In brush border vesicles from the renal proximal tubule, the characteristics of passive H+/OH- permeability are quite similar to those reported for passive H+/OH- permeability through pure lipid bilayers; slippage of protons through the brush border Na+/H+ antiporter or through brush border water channels is minimal. In contrast, passive H+/OH- permeability in brush border vesicles from human placenta is mediated in part by a stilbene-sensitive membrane protein. To demonstrate the physiological significance of passive renal brush border H+/OH- transport, proximal tubule acidification and cell pH regulation mechanisms are modeled mathematically for states of normal and altered H+/OH- permeabilities.

摘要

上皮细胞膜对H⁺/OH⁻的被动通透性很快,会导致H⁺泵和离子梯度偶联的H⁺/OH⁻转运体产生的H⁺/OH⁻梯度部分消散。生物膜中存在多种不同的H⁺/OH⁻转运机制:脂溶性/扩散、特定蛋白质介导的转运或通过离子偶联的H⁺/OH⁻转运体的滑动进行的转运,以及在蛋白质/脂质界面或通过脂质结构中依赖蛋白质的缺陷进行的转运。有多种方法可用于准确研究细胞和生物膜囊泡中的蛋白质转运机制,包括pH电极记录、pH敏感荧光和磁共振探针以及电位探针。在肾近端小管的刷状缘囊泡中,被动H⁺/OH⁻通透性的特征与通过纯脂质双层的被动H⁺/OH⁻通透性所报道的特征非常相似;质子通过刷状缘Na⁺/H⁺反向转运体或通过刷状缘水通道的滑动极少。相比之下,人胎盘刷状缘囊泡中的被动H⁺/OH⁻通透性部分由一种对芪敏感的膜蛋白介导。为了证明肾刷状缘被动H⁺/OH⁻转运的生理意义,针对正常和改变的H⁺/OH⁻通透性状态,对近端小管酸化和细胞pH调节机制进行了数学建模。

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