3'-phosphoinositide-dependent kinase-1 (PDK-1) is a 65 kDa Ser/Thr protein kinase that is activated downstream of PI3-kinase in the insulin signaling pathway. While PDK-1 has been shown to play an important role in insulin signaling, how the kinase is regulated in cells remains largely unknown. Using pharmacological inhibitors, I have found that insulin-stimulated phosphorylation of PDK-1 was inhibited by PI3-kinase and PKC inhibitors in cells. In addition, PKCzeta, a direct substrate of PDK-1 that has been shown to be involved in insulin-stimulated glucose uptake via GLUT4, can phosphorylate kinase-dead PDK-1 in vitro on a novel serine residue(s). This is the first time a substrate of PDK-1 is demonstrated to phosphorylate this central kinase. The PKCzeta-mediated phosphorylation of PDK-1 could represent a negative feedback mechanism which results in down-regulation of PDK-1 activity. To further characterize the phosphorylation of PDK-1, I will: 1) identify the novel site(s) of phosphorylation on PDK-1 by PKCzeta; and 2) determine whether PKC zeta-mediated phosphorylation affects PDK-1 activity and function in cells. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Predoctoral Individual National Research Service Award (F31)
Project #
1F31DK068874-01
Application #
6829457
Study Section
Special Emphasis Panel (ZRG1-CDF-1 (29))
Program Officer
Agodoa, Lawrence Y
Project Start
2005-04-01
Project End
2006-03-31
Budget Start
2005-04-01
Budget End
2006-03-31
Support Year
1
Fiscal Year
2005
Total Cost
$32,154
Indirect Cost
Name
University of Texas Health Science Center San Antonio
Department
Pharmacology
Type
Other Domestic Higher Education
DUNS #
800772162
City
San Antonio
State
TX
Country
United States
Zip Code
78229
Riojas, Ramon A; Kikani, Chintan K; Wang, Changhua et al. (2006) Fine tuning PDK1 activity by phosphorylation at Ser163. J Biol Chem 281:21588-93
Mao, Xuming; Kikani, Chintan K; Riojas, Ramon A et al. (2006) APPL1 binds to adiponectin receptors and mediates adiponectin signalling and function. Nat Cell Biol 8:516-23