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Molecular and Functional Characterization of Grapevine NIPs through Heterologous Expression in aqy-Null Saccharomyces cerevisiae

机译:通过在水-无-酿酒酵母中的异源表达对葡萄NIP进行分子和功能表征

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摘要

Plant Nodulin 26-like Intrinsic Proteins (NIPs) are multifunctional membrane channels of the Major Intrinsic Protein (MIP) family. Unlike other homologs, they have low intrinsic water permeability. NIPs possess diverse substrate selectivity, ranging from water to glycerol and to other small solutes, depending on the group-specific amino acid composition at aromatic/Arg (ar/R) constriction. We cloned three ( , , and ) from grapevine (cv. Touriga Nacional). Their expression in the membrane of enabled their functional characterization for water and glycerol transport through stopped-flow spectroscopy. TnNIP1;1 demonstrated high water as well as glycerol permeability, whereas TnNIP6;1 was impermeable to water but presented high glycerol permeability. Their transport activities were declined by cytosolic acidification, implying that internal-pH can regulate NIPs gating. Furthermore, an extension of C-terminal in TnNIP6;1M homolog, led to improved channel activity, suggesting that NIPs gating is putatively regulated by C-terminal. Yeast growth assays in the presence of diverse substrates suggest that the transmembrane flux of metalloids (As, B, and Se) and the heavy metal (Cd) are facilitated through grapevine NIPs. This is the first molecular and functional characterization of grapevine NIPs, providing crucial insights into understanding their role for uptake and translocation of small solutes, and extrusion of toxic compounds in grapevine.
机译:植物Nodulin 26样内在蛋白(NIP)是主要内在蛋白(MIP)家族的多功能膜通道。与其他同系物不同,它们具有较低的固有水渗透性。 NIP具有不同的底物选择性,其范围从水到甘油以及其他小溶质,取决于芳香族/ Arg(ar / R)缩窄反应中特定于基团的氨基酸组成。我们从葡萄树(cv。Touriga Nacional)中克隆了三个(,和)。它们在膜中的表达使其能够通过停流光谱对水和甘油的运输进行功能表征。 TnNIP1; 1表现出高的水渗透性和甘油渗透性,而TnNIP6; 1渗透水却不渗透但具有高的甘油渗透性。它们的转运活性由于胞浆酸化作用而下降,这表明内部pH值可以调节NIP的门控。此外,TnNIP6; 1M同源物中C末端的延伸导致通道活性提高,这表明NIP的门控可能受C末端调控。在多种底物存在下的酵母生长测定表明,通过葡萄NIP可以促进类金属(As,B和Se)和重金属(Cd)的跨膜通量。这是葡萄树NIP的第一个分子和功能表征,为深入了解它们在小溶质的吸收和转运以及葡萄树中有毒化合物的挤出方面提供了重要的见识。

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