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首页> 外文期刊>Frontiers in Plant Science >Heterotetramerization of Plant PIP1 and PIP2 Aquaporins Is an Evolutionary Ancient Feature to Guide PIP1 Plasma Membrane Localization and Function
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Heterotetramerization of Plant PIP1 and PIP2 Aquaporins Is an Evolutionary Ancient Feature to Guide PIP1 Plasma Membrane Localization and Function

机译:植物PIP1和PIP2水通道蛋白的异源四聚化是一个古老的进化特征,可指导PIP1质膜的定位和功能

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Aquaporins (AQPs) are tetrameric channel proteins regulating the transmembrane flux of small uncharged solutes and in particular water in living organisms. In plants, members of the plasma membrane intrinsic protein (PIP) AQP subfamily are important for the maintenance of the plant water status through the control of cell and tissue hydraulics. The PIP subfamily is subdivided into two groups: PIP1 and PIP2 that exhibit different water-channel activities when expressed in Xenopus oocytes or yeast cells. Most PIP1 and PIP2 isoforms physically interact and assemble in heterotetramers to modulate their subcellular localization and channel activity when they are co-expressed in oocytes, yeasts, and plants. Whether the interaction between different PIPs is stochastic or controlled by cell regulatory processes is still unknown. Here, we analyzed the water transport activity and the subcellular localization behavior of the complete PIP subfamily (SmPIP1;1, SmPIP2;1, and SmPIP2;2) of the lycophyte Selaginella moellendorffii upon (co-)expression in yeast and Xenopus oocytes. As observed for most of the PIP1 and PIP2 isoforms in other species, SmPIP1;1 was retained in the ER while SmPIP2;1 was found in the plasma membrane but, upon co-expression, both isoforms were found in the plasma membrane, leading to a synergistic effect on the water membrane permeability. SmPIP2;2 behaves as a PIP1, being retained in the endoplasmic reticulum when expressed alone in oocytes or in yeasts. Interestingly, in contrast to the oocyte system, in yeasts no synergistic effect on the membrane permeability was observed upon SmPIP1;1/SmPIP2;1 co-expression. We also demonstrated that SmPIP2;1 is permeable to water and the signaling molecule hydrogen peroxide. Moreover, growth- and complementation assays in the yeast system showed that heteromerization in all possible SmPIP combinations did not modify the substrate specificity of the channels. These results suggest that the characteristics known for angiosperm PIP1 and PIP2 isoforms in terms of their water transport activity, trafficking, and interaction emerged already as early as in non-seed vascular plants. The existence and conservation of these characteristics may argue for the fact that PIP2s are indeed involved in the delivery of PIP1s to the plasma membrane and that the formation of functional heterotetramers is of biological relevance.
机译:水通道蛋白(AQP)是四聚体通道蛋白,可调节小的不带电溶质尤其是活生物体中的水的跨膜通量。在植物中,质膜内在蛋白(PIP)AQP亚家族的成员对于通过控制细胞和组织的水力学来维持植物水的状态很重要。 PIP亚家族分为两类:当在非洲爪蟾卵母细胞或酵母细胞中表达时,它们表现出不同的水通道活性的PIP1和PIP2。当它们在卵母细胞,酵母和植物中共表达时,大多数PIP1和PIP2亚型在异四聚体中进行物理相互作用和组装,从而调节其亚细胞定位和通道活性。尚不清楚不同PIP之间的相互作用是随机的还是受细胞调节过程控制的。在这里,我们分析了在酵母和非洲爪蟾卵母细胞中(共)表达的藻类卷柏的完整PIP亚家族(SmPIP1; 1,SmPIP2; 1和SmPIP2; 2)的水运输活性和亚细胞定位行为。正如在其他物种的大多数PIP1和PIP2亚型中观察到的那样,SmPIP1; 1保留在ER中,而SmPIP2; 1被发现在质膜​​中,但在共表达后,在质膜中发现了两种亚型,导致对水膜渗透性的协同作用。 SmPIP2; 2表现为PIP1,当在卵母细胞或酵母中单独表达时,保留在内质网中。有趣的是,与卵母细胞系统相反,在酵母中,共表达SmPIP1; 1 / SmPIP2; 1时未观察到对膜通透性的协同作用。我们还证明了SmPIP2; 1对水和信号分子过氧化氢具有渗透性。此外,酵母系统中的生长和互补分析表明,所有可能的SmPIP组合中的异源化均不会改变通道的底物特异性。这些结果表明,就被子植物PIP1和PIP2同工型而言,就其水运输活性,运输和相互作用而言,其特征早在非种子维管植物中就已经出现。这些特性的存在和保守性可能会说明以下事实:PIP2确实参与了PIP1s向质膜的传递,而功能异四聚体的形成具有生物学意义。

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