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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Maize plasma membrane aquaporin ZmPIP2;5, but not ZmPIP1;2, facilitates transmembrane diffusion of hydrogen peroxide
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Maize plasma membrane aquaporin ZmPIP2;5, but not ZmPIP1;2, facilitates transmembrane diffusion of hydrogen peroxide

机译:玉米等离子体膜水源蛋白Zmpip2; 5,但不是Zmpip1; 2,促进过氧化氢的跨膜扩散

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Plant aquaporins play important roles in transmembrane water transport processes, but some also facilitate the diffusion of other small uncharged solutes ranging from gases to metalloids. Recent evidence suggests that the transmembrane movement of hydrogen peroxide, an intra- and intercellular multifunctional signaling and defense compound, can be regulated by aquaporins. We addressed the question whether maize aquaporins belonging to the plasma membrane intrinsic protein (PIP) subfamily facilitate hydrogen peroxide diffusion using heterologous expression in the yeast Saccharomyces cerevisiae. We showed that ZmPIP proteins belonging to the PIP1 and PIP2 groups were significantly expressed in yeast cells only after codon optimization of their cDNA. In accordance with previous localization studies in oocytes and plants, ZmPIP1;2 was mainly retained in intracellular membranes, while ZmPIP2;5 was localized to the plasma membrane. However, upon co-expression with ZmPIP2;5, ZmPIP1;2 was re-localized to the plasma membrane. Using a non-functional plasma membranelocalized ZmPIP2;5 mutant to deliver ZmPIP1;2 to the plasma membrane, we demonstrated that, in contrast to wild type ZmPIP2;5, ZmPIP1;2 was not permeable to hydrogen peroxide. Our study further highlighted the fact that, when using the yeast system, which is widely employed to study substrates for plant aquaporins and other transporters, although positive transport assay results allow direct conclusions to be drawn regarding solute permeability, negative results require additional control experiments to show that the protein is expressed and localized correctly before concluding on the lack of transport activity. (C) 2013 Elsevier B.V. All rights reserved.
机译:植物泡蛋白在跨膜水运输过程中发挥重要作用,但有些还促进了其他小型无充电溶质的扩散从气体到金属体。最近的证据表明,可以通过水蛋白调节过氧化氢的跨膜运动,内细胞内和细胞间多功能信号传导和防御化合物。我们解决了属于质膜内在蛋白(PIP)亚家族的玉米水素促进过氧化氢扩散在酵母酿酒酵母中的异源表达。我们展示,属于PIP1和PIP2组的ZMPIP蛋白在其cDNA的密码子优化之后仅在酵母细胞中显着表达。根据先前的卵母细胞和植物的定位研究,ZMPIP1; 2主要保留在细胞内膜中,而Zmpip2; 5局部局部化为血浆膜。然而,在与ZMPIP2的共同表达时; 5,ZMPIP1; 2重新定位到血浆膜上。使用非功能性血浆膜细胞化ZMPIP2; 5突变体递送ZMPIP1; 2至血浆膜,与野生型ZMPIP2相比,ZMPIP1; 2对过氧化氢不透明。我们的研究进一步强调了,在使用酵母体系时,这些事实是广泛用于研究植物水质素和其他运输司的底物,但阳性传输测定结果允许在溶质渗透性方面进行直接结论,因此对额外的结果需要额外的控制实验表明,在缺乏运输活动之前,可以正确地表达和本地化蛋白质。 (c)2013年elestvier b.v.保留所有权利。

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