作者
David G Mendoza-Cozatl, Zhiyang Zhai, Timothy O Jobe, Garo Z Akmakjian, Won-Yong Song, Oliver Limbo, Matthew R Russell, Volodymyr I Kozlovskyy, Enrico Martinoia, Olena K Vatamaniuk, Paul Russell, Julian I Schroeder
发表日期
2010/12/24
期刊
Journal of Biological Chemistry
卷号
285
期号
52
页码范围
40416-40426
出版商
Elsevier
简介
Phytochelatins mediate tolerance to heavy metals in plants and some fungi by sequestering phytochelatin-metal complexes into vacuoles. To date, only Schizosaccharomyces pombe Hmt1 has been described as a phytochelatin transporter and attempts to identify orthologous phytochelatin transporters in plants and other organisms have failed. Furthermore, recent data indicate that the hmt1 mutant accumulates significant phytochelatin levels in vacuoles, suggesting that unidentified phytochelatin transporters exist in fungi. Here, we show that deletion of all vacuolar ABC transporters abolishes phytochelatin accumulation in S. pombe vacuoles and abrogates 35S-PC2 uptake into S. pombe microsomal vesicles. Systematic analysis of the entire S. pombe ABC transporter family identified Abc2 as a full-size ABC transporter (ABCC-type) that mediates phytochelatin transport into vacuoles. The S. pombe abc1 abc2 …
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