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质膜 PIP 水通道蛋白共表达改变细胞内 pH 感应。

Intracellular pH sensing is altered by plasma membrane PIP aquaporin co-expression.

机构信息

Departamento de Fisiología, Universidad de Buenos Aires, Argentina.

出版信息

Plant Mol Biol. 2010 Sep;74(1-2):105-18. doi: 10.1007/s11103-010-9658-8. Epub 2010 Jul 1.

DOI:10.1007/s11103-010-9658-8
PMID:20593222
Abstract

The plant plasma membrane barrier can express aquaporins (PIP1 and PIP2) that show two intriguing aspects: (1) the potential of modulating whole membrane water permeability by co-expression of both types, which have recently been distinguished for showing a different capacity to reach the plasma membrane; and (2) the faculty to reduce water permeation through the pore after cytosolic acidification, as a consequence of a gating process. Our working hypothesis is that these two key features might enhance plasticity of the membrane water transport capacity if they jointly trigger any cooperative interaction. In previous work, we proved by biophysical approaches that the plasma membrane of the halophyte Beta vulgaris storage root presents highly permeable aquaporins that can be shut down by acidic pH. Root Beta vulgaris PIPs were therefore subcloned and expressed in Xenopus oocytes. Co-expression of BvPIP1;1 and BvPIP2;2 not only enhances oocyte plasma membrane water permeability synergistically but also reinforces pH inhibitory response from partial to complete shut down after cytosolic pH acidification. This pH dependent behavior shows that PIP1-PIP2 co-expression accounts for a different pH sensitivity in comparison with PIP2 expression. These results prove for the first time that PIP co-expression modulates the membrane water permeability through a pH regulatory response, enhancing in this way membrane versatility to adjust its water transfer capacity.

摘要

植物质膜屏障可以表达水通道蛋白(PIP1 和 PIP2),它们具有两个有趣的方面:(1)通过共表达两种类型来调节整个膜水通透性的潜力,最近已经区分出它们具有不同的到达质膜的能力;(2)在细胞质酸化后,通过门控过程减少水通过孔的渗透的能力。我们的工作假设是,如果这两个关键特征共同触发任何协同相互作用,它们可能会增强膜水运输能力的可塑性。在之前的工作中,我们通过生物物理方法证明,盐生植物甜菜贮藏根的质膜具有高度通透性的水通道蛋白,这些水通道蛋白可以被酸性 pH 关闭。因此,我们将根甜菜 PIP 亚克隆并在非洲爪蟾卵母细胞中表达。BvPIP1;1 和 BvPIP2;2 的共表达不仅协同增强卵母细胞质膜水通透性,而且在细胞质酸化后从部分到完全关闭增强 pH 抑制反应。这种 pH 依赖性行为表明,与 PIP2 表达相比,PIP 共表达对 pH 敏感性有不同的影响。这些结果首次证明,PIP 共表达通过 pH 调节反应调节膜水通透性,从而增强膜的多功能性以调节其水传递能力。

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bioRxiv. 2024 Jan 23:2024.01.21.576580. doi: 10.1101/2024.01.21.576580.
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