Haro Rosario, Bañuelos María A, Senn María E, Barrero-Gil Javier, Rodríguez-Navarro Alonso
Departamento de Biotecnología, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
Plant Physiol. 2005 Nov;139(3):1495-506. doi: 10.1104/pp.105.067553. Epub 2005 Oct 28.
The function of HKT1 in roots is controversial. We tackled this controversy by studying Na+ uptake in barley (Hordeum vulgare) roots, cloning the HvHKT1 gene, and expressing the HvHKT1 cDNA in yeast (Saccharomyces cerevisiae) cells. High-affinity Na+ uptake was not detected in plants growing at high K+ but appeared soon after exposing the plants to a K(+)-free medium. It was a uniport, insensitive to external K+ at the beginning of K+ starvation and inhibitable by K+ several hours later. The expression of HvHKT1 in yeast was Na+ (or K+) uniport, Na(+)-K+ symport, or a mix of both, depending on the construct from which the transporter was expressed. The Na+ uniport function was insensitive to external K+ and mimicked the Na+ uptake carried out by the roots at the beginning of K+ starvation. The K+ uniport function only took place in yeast cells that were completely K+ starved and disappeared when internal K+ increased, which makes it unlikely that HvHKT1 mediates K+ uptake in roots. Mutation of the first in-frame AUG codon of HvHKT1 to CUC changed the uniport function into symport. The expression of the symport from either mutants or constructs keeping the first in-frame AUG took place only in K(+)-starved cells, while the uniport was expressed in all conditions. We discuss here that the symport occurs only in heterologous expression. It is most likely related to the K+ inhibitable Na+ uptake process of roots that heterologous systems fail to reproduce.
HKT1在根中的功能存在争议。我们通过研究大麦(Hordeum vulgare)根中的Na⁺吸收、克隆HvHKT1基因并在酵母(Saccharomyces cerevisiae)细胞中表达HvHKT1 cDNA来解决这一争议。在高钾条件下生长的植物中未检测到高亲和力的Na⁺吸收,但在将植物暴露于无钾培养基后很快就出现了。这是一种单向转运,在钾饥饿开始时对外部钾不敏感,几小时后可被钾抑制。HvHKT1在酵母中的表达是Na⁺(或K⁺)单向转运、Na⁺-K⁺同向转运或两者的混合,这取决于表达转运蛋白的构建体。Na⁺单向转运功能对外部钾不敏感,模拟了钾饥饿开始时根进行的Na⁺吸收。K⁺单向转运功能仅在完全钾饥饿的酵母细胞中发生,当内部钾增加时消失,这使得HvHKT1不太可能介导根中的钾吸收。将HvHKT1的第一个框内AUG密码子突变为CUC将单向转运功能转变为同向转运。来自突变体或保留第一个框内AUG的构建体的同向转运仅在钾饥饿细胞中表达,而单向转运在所有条件下均有表达。我们在此讨论同向转运仅发生在异源表达中。它很可能与异源系统无法重现的根的钾抑制性Na⁺吸收过程有关。