Phospholipase D (PLD)1 is quiescent in vitro and in vivo until stimulated by classical protein kinase C (PKC) isoforms, ADP-ribosylation factor or Rho family members. By contrast, PLD2 has high basal activity, and the mechanisms involved in agonist-induced activation of PLD2 are poorly understood. Using transiently transfected human embryonic kidney (HEK)-293 cells as a model system, we report in the present study that PLD2 overexpressed in HEK-293 cells exhibits regulatory properties similar to PLD1 when stimulated in response to insulin and phorbol ester. Co-expression of PLD1 or PLD2 with PKCα results in constitutive activation of both PLD isoforms, which cannot be further stimulated by insulin. Co-expression of PLD1 with phospholipase C (PLC)γ has the same effect, while co-expression of PLD2 with PLCγ allows PLD2 activity to be stimulated in an insulin-dependent manner. The PKC-specific inhibitors bisindolylmaleimide and Gö 6976 abolish insulin-induced PLD2 activation in HEK-293 cells co-expressing the insulin receptor, PLCγ and PLD2, confirming that not only PLD1, but PLD2 as well, is regulated in a PKC-dependent manner. Finally, we provide evidence that PKCα is constitutively associated with PLD2. In summary, we demonstrate that insulin treatment results in activation of both PLD1 and PLD2 in appropriate cell types when the appropriate upstream intermediate signalling components, i.e. PKCα and PLCγ, are expressed at sufficient levels.
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November 2000
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Research Article|
October 24 2000
Insulin-induced phospholipase D1 and phospholipase D2 activity in human embryonic kidney-293 cells mediated by the phospholipase Cγ and protein kinase Cα signalling cascade
Rita SLAABY;
Rita SLAABY
1
*Department of Molecular Signalling, Hagedorn Research Institute, Niels Steensens Vej 6, Gentofte, Denmark
1To whom correspondence should be addressed (e-mail [email protected]).
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Guangwei DU;
Guangwei DU
†Department of Pharmacological Sciences and the Center for Developmental Genetics, State University of New York, Stony Brook, NY 11794-8651, U.S.A.
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Yelena M. ALTSHULLER;
Yelena M. ALTSHULLER
†Department of Pharmacological Sciences and the Center for Developmental Genetics, State University of New York, Stony Brook, NY 11794-8651, U.S.A.
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Michael A. FROHMAN;
Michael A. FROHMAN
†Department of Pharmacological Sciences and the Center for Developmental Genetics, State University of New York, Stony Brook, NY 11794-8651, U.S.A.
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Klaus SEEDORF
Klaus SEEDORF
*Department of Molecular Signalling, Hagedorn Research Institute, Niels Steensens Vej 6, Gentofte, Denmark
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Publisher: Portland Press Ltd
Received:
March 27 2000
Revision Received:
June 26 2000
Accepted:
August 15 2000
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London © 2000
2000
Biochem J (2000) 351 (3): 613–619.
Article history
Received:
March 27 2000
Revision Received:
June 26 2000
Accepted:
August 15 2000
Citation
Rita SLAABY, Guangwei DU, Yelena M. ALTSHULLER, Michael A. FROHMAN, Klaus SEEDORF; Insulin-induced phospholipase D1 and phospholipase D2 activity in human embryonic kidney-293 cells mediated by the phospholipase Cγ and protein kinase Cα signalling cascade. Biochem J 1 November 2000; 351 (3): 613–619. doi: https://doi.org/10.1042/bj3510613
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