首页> 外文期刊>The Plant Cell >Single-molecule analysis of PIP2;1 dynamics and partitioning reveals multiple modes of Arabidopsis plasma membrane aquaporin regulation.
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Single-molecule analysis of PIP2;1 dynamics and partitioning reveals multiple modes of Arabidopsis plasma membrane aquaporin regulation.

机译:PIP2; 1动力学和分配的单分子分析揭示了拟南芥质膜水通道蛋白调节的多种模式。

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摘要

PIP2;1 is an integral membrane protein that facilitates water transport across plasma membranes. To address the dynamics of Arabidopsis thaliana PIP2;1 at the single-molecule level as well as their role in PIP2;1 regulation, we tracked green fluorescent protein-PIP2;1 molecules by variable-angle evanescent wave microscopy and fluorescence correlation spectroscopy (FCS). Single-particle tracking analysis revealed that PIP2;1 presented four diffusion modes with large dispersion of diffusion coefficients, suggesting that partitioning and dynamics of PIP2;1 are heterogeneous and, more importantly, that PIP2;1 can move into or out of membrane microdomains. In response to salt stress, the diffusion coefficients and percentage of restricted diffusion increased, implying that PIP2;1 internalization was enhanced. This was further supported by the decrease in PIP2;1 density on plasma membranes by FCS. We additionally demonstrated that PIP2;1 internalization involves a combination of two pathways: a tyrphostin A23-sensitive clathrin-dependent pathway and a methyl- beta -cyclodextrin-sensitive, membrane raft-associated pathway. The latter was efficiently stimulated under NaCl conditions. Taken together, our findings demonstrate that PIP2;1 molecules are heterogeneously distributed on the plasma membrane and that clathrin and membrane raft pathways cooperate to mediate the subcellular trafficking of PIP2;1, suggesting that the dynamic partitioning and recycling pathways might be involved in the multiple modes of regulating water permeability.
机译:PIP2; 1是一种不可或缺的膜蛋白,可促进水跨质膜的运输。为了解决拟南芥PIP2; 1在单分子水平上的动力学及其在PIP2; 1调控中的作用,我们通过变角e逝波追踪了绿色荧光蛋白-PIP2; 1分子。显微镜和荧光相关光谱法(FCS)。单粒子跟踪分析表明,PIP2; 1呈现四种扩散模式,扩散系数的分散性很大,这表明PIP2; 1的分配和动力学是异质的,更重要的是,PIP2; 1可以移入或移出膜微区。响应盐胁迫,扩散系数和限制扩散的百分比增加,这表明PIP2; 1内部化得到了增强。 FCS降低了质膜上PIP2; 1的密度,进一步证明了这一点。我们还证明了PIP2; 1的内在化涉及两种途径的组合:酪氨酸蛋白酶抑制剂A23敏感的网格蛋白依赖性途径和甲基-β-环糊精敏感的膜筏相关途径。在NaCl条件下有效地刺激了后者。两者合计,我们的发现表明,PIP2; 1分子异质性分布在质膜上,网格蛋白和膜筏途径协同介导PIP2; 1的亚细胞运输,这表明动态分配和再循环途径可能参与了多种调节水渗透性的方式。

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