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1 nsor and has been proposed to act as a plant osmosensor.
2 ble channels, revealing that OSCA1 may be an osmosensor.
3 t role in ductal bile formation by acting as osmosensors.
4 we hypothesized that cilia also function as osmosensors.
5 HHP, rendering PLA2, next to being a primary osmosensor, a good candidate for a sensitive pressure se
7 tic Lethal of N-end rule1 and SH3-containing Osmosensor and has been proposed to act as a plant osmos
8 tivation is independent of the two-component osmosensor and involves the SHO1 transmembrane protein a
9 um was recently shown to function as both an osmosensor and osmoregulator in proteoliposomes made fro
11 n this organism has revealed the presumptive osmosensors, downstream signaling components, and metabo
13 urface and interacts with Cdc42 and with the osmosensor for the high osmolarity glycerol response (HO
15 animals osmosensing Ca(2+) channels serve as osmosensors, hyperosmolality-induced [Ca(2+)]i increases
17 smembrane histidine kinase functioning as an osmosensor in Escherichia coli, consists of two distinct
18 tential vanilloid isoform 4) channels as key osmosensors in nonpigmented epithelial (NPE) cells of th
20 east Sln1p sensor kinase is best known as an osmosensor involved in the regulation of the hyperosmola
21 osmotic stimulus and indicate that the Sln1p osmosensor is tied generally to osmotic balance, and may
24 sitivity of yeast (Saccharomyces cerevisiae) osmosensor mutants lacking Synthetic Lethal of N-end rul
25 asmic kinase domain of EnvZ, a transmembrane osmosensor of Escherichia coli can be further divided in
28 of PBP 4 or by a transmembrane region of the osmosensor protein ProW, even though these hybrids were
30 Our findings identify TRPM8 as a peripheral osmosensor responsible for the regulation of normal eye-
31 al analysis revealed that the membrane-bound osmosensor Sho1 is phosphorylated by Hog1 and that phosp
32 o function as a scaffold, since it binds the osmosensor Sho1, the upstream MAP kinase kinase kinase S
35 kinase ATHK1 has been suggested to act as an osmosensor that detects water stress and initiates downs
36 nase, Sln1p, is a plasma membrane-associated osmosensor that regulates the activity of the osmotic st
39 induces the Sln1p-Ypd1p-Ssk1p two-component osmosensor to activate a mitogen-activated protein (MAP)
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