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首页> 外文期刊>Plant physiology >Rice SPX-Major Facility Superfamily3, a Vacuolar Phosphate Efflux Transporter, Is Involved in Maintaining Phosphate Homeostasis in Rice
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Rice SPX-Major Facility Superfamily3, a Vacuolar Phosphate Efflux Transporter, Is Involved in Maintaining Phosphate Homeostasis in Rice

机译:水稻SPX-主要设施Superfamily3,一种磷酸的磷酸盐外排转运蛋白,参与维持水稻中的磷酸盐稳态。

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To maintain a stable cytosol phosphate (Pi) concentration, plant cells store Pi in their vacuoles. When the Pi concentration in the cytosol decreases, Pi is exported from the vacuole into the cytosol. This export is mediated by Pi transporters on the tonoplast. In this study, we demonstrate that SYG1, PHO81, and XPR1 (SPX)-Major Facility Superfamily (MFS) proteins have a similar structure with yeast (Saccharomyces cerevisiae) low-affinity Pi transporters Phosphatase87 (PHO87), PHO90, and PHO91. OsSPX-MFS1, OsSPX-MFS2, and OsSPX-MFS3 all localized on the tonoplast of rice (Oryza sativa) protoplasts, even in the absence of the SPX domain. At high external Pi concentration, OsSPX-MFS3 could partially complement the yeast mutant strain EY917 under pH 5.5, which lacks all five Pi transporters present in yeast. In oocytes, OsSPX-MFS3 was shown to facilitate Pi influx or efflux depending on the external pH and Pi concentrations. In contrast to tonoplast localization in plants cells, OsSPX-MFS3 was localized to the plasma membrane when expressed in both yeast and oocytes. Overexpression of OsSPX-MFS3 results in decreased Pi concentration in the vacuole of rice tissues. We conclude that OsSPX-MFS3 is a low-affinity Pi transporter that mediates Pi efflux from the vacuole into cytosol and is coupled to proton movement.
机译:为了维持稳定的磷酸胞溶质(Pi)浓度,植物细胞将Pi储存在液泡中。当胞浆中的Pi浓度降低时,Pi从液泡输出到胞质中。这种出口是由液泡膜上的Pi转运蛋白介导的。在这项研究中,我们证明SYG1,PHO81和XPR1(SPX)-主要设施超家族(MFS)蛋白与酵母(Saccharomyces cerevisiae)低亲和力Pi转运蛋白磷酸酶87(PHO87),PHO90和PHO91具有相似的结构。 OsSPX-MFS1,OsSPX-MFS2和OsSPX-MFS3都位于水稻原生质体的液泡膜上,即使没有SPX域也是如此。在高外部Pi浓度下,OsSPX-MFS3可以部分补充pH 5.5下的酵母突变菌株EY917,该菌株缺少酵母中存在的所有五个Pi转运蛋白。在卵母细胞中,OsSPX-MFS3显示出有助于Pi流入或流出,具体取决于外部pH和Pi浓度。与植物细胞中的液泡膜定位相反,当在酵母和卵母细胞中表达时,OsSPX-MFS3定位在质膜上。 OsSPX-MFS3的过表达导致水稻组织液泡中的Pi浓度降低。我们得出的结论是,OsSPX-MFS3是一种低亲和力的Pi转运蛋白,介导Pi从液泡进入细胞质并与质子运动耦合。

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