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Phytochelatin-metal(loid) transport into vacuoles shows different substrate preferences in barley and Arabidopsis SCIE SCOPUS

Title
Phytochelatin-metal(loid) transport into vacuoles shows different substrate preferences in barley and Arabidopsis
Authors
Song, WYMendoza-Cozatl, DGLee, YSchroeder, JIAhn, SNLee, HSWicker, TMartinoia, E
Date Issued
2014-05
Publisher
WILEY-BLACKWELL
Abstract
Cadmium (Cd) and arsenic (As) are toxic to all living organisms, including plants and humans. In plants, Cd and As are detoxified by phytochelatins (PCs) and metal(loid)-chelating peptides and by sequestering PC-metal(loid) complexes in vacuoles. Consistent differences have been observed between As and Cd detoxification. Whereas chelation of Cd by PCs is largely sufficient to detoxify Cd, As-PC complexes must be sequestered into vacuoles to be fully detoxified. It is not clear whether this difference in detoxification pathways is ubiquitous among plants or varies across species. Here, we have conducted a PC transport study using vacuoles isolated from Arabidopsis and barley. Arabidopsis vacuoles accumulated low levels of PC2-Cd, and vesicles from yeast cells expressing either AtABCC1 or AtABCC2 exhibited negligible PC2-Cd transport activity compared with PC2-As. In contrast, barley vacuoles readily accumulated comparable levels of PC2-Cd and PC2-As. PC transport in barley vacuoles was inhibited by vanadate, but not by ammonium, suggesting the involvement of ABC-type transporters. Interestingly, barley vacuoles exhibited enhanced PC2 transport activity when essential metal ions, such as Zn(II), Cu(II) and Mn(II), were added to the transport assay, suggesting that PCs might contribute to the homeostasis of essential metals and detoxification of non-essential toxic metal(loid)s.
URI
https://oasis.postech.ac.kr/handle/2014.oak/14901
DOI
10.1111/PCE.12227
ISSN
0140-7791
Article Type
Article
Citation
PLANT CELL AND ENVIRONMENT, vol. 37, no. 5, page. 1192 - 1201, 2014-05
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이영숙LEE, YOUNGSOOK
Dept of Life Sciences
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