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Transmembrane mucins Hkr1 and Msb2 are putative osmosensors in the SHO1 branch of yeast HOG pathway.

Authors :
Tatebayashi, Kazuo
Tanaka, Keiichiro
Hui-Yu Yang
Yamamoto, Katsuyoshi
Matsushita, Yusaku
Tomida, Taichiro
Imai, Midori
Saito, Haruo
Source :
EMBO Journal. 8/8/2007, Vol. 26 Issue 15, p3521-3533. 13p. 7 Graphs.
Publication Year :
2007

Abstract

To cope with life-threatening high osmolarity, yeast activates the high-osmolarity glycerol (HOG) signaling pathway, whose core element is the Hog1 MAP kinase cascade. Activated Hog1 regulates the cell cycle, protein translation, and gene expression. Upstream of the HOG pathway are functionally redundant SLN1 and SHO1 signaling branches. However, neither the osmosensor nor the signal generator of the SHO1 branch has been clearly defined. Here, we show that the mucin-like transmembrane proteins Hkr1 and Msb2 are the potential osmosensors for the SHO1 branch. Hyperactive forms of Hkr1 and Msb2 can activate the HOG pathway only in the presence of Sho1, whereas a hyperactive Sho1 mutant activates the HOG pathway in the absence of both Hkr1 and Msb2, indicating that Hkr1 and Msb2 are the most upstream elements known so far in the SHO1 branch. Hkr1 and Msb2 individually form a complex with Sho1, and, upon high external osmolarity stress, appear to induce Sho1 to generate an intracellular signal. Furthermore, Msb2, but not Hkr1, can also generate an intracellular signal in a Sho1-independent manner. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02614189
Volume :
26
Issue :
15
Database :
Academic Search Index
Journal :
EMBO Journal
Publication Type :
Academic Journal
Accession number :
26088082
Full Text :
https://doi.org/10.1038/sj.emboj.7601796