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The aromatic/arginine selectivity filter of NIP aquaporins plays a critical role in substrate selectivity for silicon boron and arsenic

机译:NIP水通道蛋白的芳香族/精氨酸选择性过滤器在对硅硼和砷的底物选择性中起关键作用

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摘要

Nodulin-26-like intrinsic proteins (NIPs) of the aquaporin family are involved in the transport of diverse solutes, but the mechanisms controlling the selectivity of transport substrates are poorly understood. The purpose of this study was to investigate how the aromatic/arginine (ar/R) selectivity filter influences the substrate selectivity of two NIP aquaporins; the silicic acid (Si) transporter OsLsi1 (OsNIP2;1) from rice and the boric acid (B) transporter AtNIP5;1 from Arabidopsis; both proteins are also permeable to arsenite. Native and site-directed mutagenized variants of the two genes were expressed in Xenopus oocytes and the transport activities for Si, B, arsenite, and water were assayed. Substitution of the amino acid at the ar/R second helix (H2) position of OsLsi1 did not affect the transport activities for Si, B, and arsenite, but that at the H5 position resulted in a total loss of Si and B transport activities and a partial loss of arsenite transport activity. Conversely, changes of the AtNIP5;1 ar/R selectivity filter and the NPA motifs to the OsLsi1 type did not result in a gain of Si transport activity. B transport activity was partially lost in the H5 mutant but unaffected in the H2 mutant of AtNIP5;1. In contrast, both the single and double mutations at the H2 and/or H5 positions of AtNIP5;1 did not affect arsenite transport activity. The results reveal that the residue at the H5 position of the ar/R filter of both OsLsi1 and AtNIP5;1 plays a key role in the permeability to Si and B, but there is a relatively low selectivity for arsenite.
机译:水通道蛋白家族的Nodulin-26样内在蛋白(NIP)参与各种溶质的运输,但控制运输底物选择性的机制了解甚少。这项研究的目的是研究芳族/精氨酸(ar / R)选择性过滤器如何影响两种NIP水通道蛋白的底物选择性。水稻中的硅酸(Si)转运蛋白OsLsi1(OsNIP2; 1)和拟南芥中的硼酸(B)转运蛋白AtNIP5; 1;两种蛋白质都可渗透亚砷酸盐。在爪蟾卵母细胞中表达了这两个基因的天然诱变变异和定点诱变变异,并分析了其对Si,B,亚砷酸盐和水的转运活性。 OsLsi1的ar / R第二个螺旋(H2)位置处的氨基酸取代不会影响Si,B和亚砷酸盐的转运活性,但在H5位置处导致Si和B转运活性的完全丧失和亚砷酸盐运输活性的部分损失。相反,将AtNIP5; 1 ar / R选择性滤光片和NPA基序更改为OsLsi1类型不会导致Si迁移活性的提高。 B转运活性在H5突变体中部分丧失,但在AtNIP5; 1的H2突变体中不受影响。相反,AtNIP5; 1的H2和/或H5位置的单突变和双突变均不影响亚砷酸盐的转运活性。结果表明,OsLsi1和AtNIP5; 1的ar / R过滤器的H5位置处的残留物在对Si和B的渗透性中起关键作用,但对砷的选择性较低。

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