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Athb-12, a homeobox-leucine zipper domain protein from Arabidopsis thaliana, increases salt tolerance in yeast by regulating sodium exclusion

Authors
Shin, DKoo, YDLee, JLee, HJBaek, DLee, SCheon, CKwak, SSLee, SYYun, D
Issue Date
Oct-2004
Publisher
ACADEMIC PRESS INC ELSEVIER SCIENCE
Keywords
A homeobox-leucine zipper domain protein; salt tolerance; Na+ ion homeostasis; Arabidopsis; yeast
Citation
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, v.323, no.2, pp 534 - 540
Pages
7
Journal Title
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Volume
323
Number
2
Start Page
534
End Page
540
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/15819
DOI
10.1016/j.bbrc.2004.08.127
ISSN
0006-291X
1090-2104
Abstract
An Arabidopsis cDNA clone that encodes Athb-12, a homeobox-leucine zipper domain protein (HD-Zip), was isolated by functional complementation of the NaCl-sensitive phenotype of a calcineurin (CaN)-deficient yeast mutant (cnbDelta, regulatory subunit null). CaN, a Ca2+/calmodulin-dependent protein phosphatase, regulates Na+ ion homeostasis in yeast. Expression of Athb-12 increased NaCl tolerance but not osmotic stress tolerance of these cnbDelta cells. Furthermore, expression of two other HD-Zip from Arabidopsis, Athb-1 and -7, did not suppress NaCl sensitivity of cnbDelta cells. These results suggest that Athb-12 specifically functions in Na+ ion homeostasis in yeast. Consistent with these observations, expression of Athb-12 in yeast turned on transcription of the NaCl stress-inducible PMR2A, which encodes a Na+/Li+ translocating P-type ATPase, and decreased Na+ levels in yeast cells. To investigate the biological function of Athb-12 in Arabidopsis, we performed Northern blot analysis. Expression of Athb-12 was dramatically induced by NaCl and ABA treatments, but not by KCl. In vivo targeting experiments using a green fluorescent protein reporter indicated that Athb-12 was localized to the nucleus. These results suggest that Athb-12 is a putative transcription factor that may be involved in NaCl stress responses in plants. (C) 2004 Elsevier Inc. All rights reserved.
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