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Mechanistic Analysis of AKT1 Regulation by the CBL-CIPK-PP2CA Interactionsopen access

Authors
Lan, Wen-ZhiLee, Sung-ChulChe, Yu-FenJiang, Yuan-QingLuan, Sheng
Issue Date
May-2011
Publisher
OXFORD UNIV PRESS
Keywords
Abscisic acid; Arabidopsis; environmental stress; K(+) uptake
Citation
MOLECULAR PLANT, v.4, no.3, pp 527 - 536
Pages
10
Journal Title
MOLECULAR PLANT
Volume
4
Number
3
Start Page
527
End Page
536
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/21570
DOI
10.1093/mp/ssr031
ISSN
1674-2052
1752-9867
Abstract
Arabidopsis K(+) transporter 1 (AKT1) participates in K(+) uptake in roots, especially under low-K conditions. We recently identified a Ca2(+) signaling pathway consisting of multiple calcineurin B-like calcium sensors (CBLs) and multiple target kinases (CBL-interacting protein kinases or CIPKs) that phosphorylate and activate AKT1, whereas a specific PP2C-type phosphatase inactivates CIPK-dependent AKT1 activity. In this study, we analyzed the interactions between PP2Cs and the CBL-CIPK pathway and found previously unsuspected mechanisms underlying the CBL-CIPK-PP2C signaling processes. The interaction between the CIPKs and PP2Cs involves the kinase domain of the CIPK component, in addition to the protein phosphatase interacting motif (PPI) in the regulatory domain. Furthermore, specific CBLs physically interact with and inactivate PP2C phosphatases to recover the CIPK-dependent AKT1 channel activity. These findings provide further insights into the signaling network consisting of CBL-CIPK-PP2C interactions in the activation of the AKT1 channel.
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자연과학대학 (생명과학과)
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