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Vacuolar Transporters – Companions on a Longtime Journey

机译:液泡运输车–长期旅途中的伴侣

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摘要

Biochemical and electrophysiological studies on plant vacuolar transporters became feasible in the late 1970s and early 1980s, when methods to isolate large quantities of intact vacuoles and purified vacuolar membrane vesicles were established. However, with the exception of the H+-ATPase and H+-PPase, which could be followed due to their hydrolytic activities, attempts to purify tonoplast transporters were for a long time not successful. Heterologous complementation, T-DNA insertion mutants, and later proteomic studies allowed the next steps, starting from the 1990s. Nowadays, our knowledge about vacuolar transporters has increased greatly. Nevertheless, there are several transporters of central importance that have still to be identified at the molecular level or have even not been characterized biochemically. Furthermore, our knowledge about regulation of the vacuolar transporters is very limited, and much work is needed to get a holistic view about the interplay of the vacuolar transportome. The huge amount of information generated during the last 35 years cannot be summarized in such a review. Therefore, I decided to concentrate on some aspects where we were involved during my research on vacuolar transporters, for some our laboratories contributed more, while others contributed less.
机译:当建立分离大量完整空泡和纯化液泡膜囊泡的方法时,对植物液泡转运蛋白的生化和电生理研究变得可行。但是,除了H + -ATPase和H + -PPase可以被水解之外,它们的提纯过程一直很久,时间不成功。异源互补,T-DNA插入突变体和后来的蛋白质组学研究允许从1990年代开始的下一步。如今,我们对液泡运输蛋白的了解已大大增加。然而,仍然有一些重要的转运蛋白尚需在分子水平上加以鉴定,甚至尚未进行生化表征。此外,我们对液泡转运蛋白调控的知识非常有限,需要大量工作来全面了解液泡转运蛋白的相互作用。过去35年中产生的大量信息无法在此评论中进行总结。因此,我决定专注于研究液泡转运蛋白的某些方面,因为我们的一些实验室贡献更多,而其他实验室贡献较少。

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