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人工荧光硫代葡萄糖苷(F-GSLs)由硫代葡萄糖苷转运蛋白 GTR1/2/3 转运。

Artificial Fluorescent Glucosinolates (F-GSLs) Are Transported by the Glucosinolate Transporters GTR1/2/3.

机构信息

DynaMo Center, Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg C, Denmark.

Institute of Organic Chemistry, Technische Universität Carolo Wilhelmina zu Braunschweig, Hagenring 30, 38106 Braunschweig, Germany.

出版信息

Int J Mol Sci. 2023 Jan 4;24(2):920. doi: 10.3390/ijms24020920.

Abstract

The glucosinolate transporters 1/2/3 (GTR1/2/3) from the Nitrate and Peptide transporter Family (NPF) play an essential role in the transport, accumulation, and distribution of the specialized plant metabolite glucosinolates. Due to representing both antinutritional and health-promoting compounds, there is increasing interest in characterizing GTRs from various plant species. We generated seven artificial glucosinolates (either aliphatic or benzenic) bearing different fluorophores (Fluorescein, BODIPY, Rhodamine, Dansylamide, and NBD) and investigated the ability of GTR1/2/3 from to import the fluorescent glucosinolates (F-GSLs) into oocytes from . Five out of the seven F-GSLs synthesized were imported by at least one of the GTRs. GTR1 and GTR2 were able to import three F-GSLs actively above external concentration, while GTR3 imported only one actively. Competition assays indicate that the F-GSLs are transported by the same mechanism as non-tagged natural glucosinolates. The GTR-mediated F-GSL uptake is detected via a rapid and sensitive assay only requiring simple fluorescence measurements on a standard plate reader. This is highly useful in investigations of glucosinolate transport function and provides a critical prerequisite for elucidating the relationship between structure and function through high-throughput screening of GTR mutant libraries. The F-GSL themselves may also be suitable for future studies on glucosinolate transport in vivo.

摘要

来自硝酸盐和肽转运蛋白家族(NPF)的葡糖硫苷转运体 1/2/3(GTR1/2/3)在植物代谢物硫代葡萄糖苷的运输、积累和分布中发挥着重要作用。由于它们同时代表抗营养和促进健康的化合物,因此人们越来越感兴趣于表征来自不同植物物种的 GTR。我们合成了七种带有不同荧光团(荧光素、BODIPY、罗丹明、丹磺酰基酰胺和 NBD)的人工硫代葡萄糖苷(脂肪族或苯族),并研究了 中的 GTR1/2/3 摄取荧光硫代葡萄糖苷(F-GSL)的能力。在所合成的七种 F-GSL 中,有五种至少被一种 GTR 主动摄取。GTR1 和 GTR2 能够积极地将三种 F-GSL 摄取到 的卵母细胞中,而 GTR3 只能积极地摄取一种。竞争实验表明,F-GSL 是通过与非标记天然硫代葡萄糖苷相同的机制进行转运的。通过仅在标准平板读数器上进行简单的荧光测量即可检测到 GTR 介导的 F-GSL 摄取,这是一种快速且灵敏的测定法,在研究硫代葡萄糖苷转运功能方面非常有用,并为通过高通量筛选 GTR 突变文库阐明结构与功能之间的关系提供了关键的前提条件。F-GSL 本身也可能适用于未来关于体内硫代葡萄糖苷转运的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c31b/9862856/e936d0f62d87/ijms-24-00920-g001.jpg

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