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PMID: 8972205 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Specific activation of p85-p110 phosphatidylinositol 3'-kinase stimulates DNA synthesis by ras- and p70 S6 kinase-dependent pathways.

Molecular and cellular biology ·Vol. 17 ·No. 1 ·1997-01-00 ·Pages 248-55

McIlroy J, Chen D, Wjasow C, Michaeli T, Backer JM

Abstract

We have developed a polyclonal antibody that activates the heterodimeric p85-p110 phosphatidylinositol (PI) 3'-kinase in vitro and in microinjected cells. Affinity purification revealed that the activating antibody recognized the N-terminal SH2 (NSH2) domain of p85, and the antibody increased the catalytic activity of recombinant p85-p110 dimers threefold in vitro. To study the role of endogenous PI 3'-kinase in intact cells, the activating anti-NSH2 antibody was microinjected into GRC + LR73 cells, a CHO cell derivative selected for tight quiescence during serum withdrawal. Microinjection of anti-NSH2 antibodies increased bromodeoxyuridine (BrdU) incorporation fivefold in quiescent cells and enhanced the response to serum. These data reflect a specific activation of PI 3'-kinase, as the effect was blocked by coinjection of the appropriate antigen (glutathione S-transferase-NSH2 domains from p85 alpha), coinjection of inhibitory anti-p110 antibodies, or treatment of cells with wortmannin. We used the activating antibodies to study signals downstream from PI 3'-kinase. Although treatment of cells with 50 nM rapamycin only partially decreased anti-NSH2-stimulated BrdU incorporation, coinjection with an anti-p70 S6 kinase antibody effectively blocked anti-NSH2-stimulated DNA synthesis. We also found that coinjection of inhibitory anti-ras antibodies blocked both serum- and anti-NSH2-stimulated BrdU incorporation by approximately 60%, and treatment of cells with a specific inhibitor of MEK abolished antibody-stimulated BrdU incorporation. We conclude that selective activation of physiological levels of PI 3'-kinase is sufficient to stimulate DNA synthesis in quiescent cells. PI 3'-kinase-mediated DNA synthesis requires both p70 S6 kinase and the P21ras/MEK pathway.

MeSH Terms
Animals Antibodies Antibody Specificity CHO Cells Carrier Proteins/antagonists & inhibitors Cattle Cricetinae DNA/biosynthesis Enzyme Activation/drug effects Enzyme Inhibitors/pharmacology Flavonoids/pharmacology Humans Insulin/pharmacology MAP Kinase Kinase Kinase 1 Phosphatidylinositol 3-Kinases Phosphotransferases (Alcohol Group Acceptor)/metabolism Polyenes/pharmacology Protein Serine-Threonine Kinases/antagonists & inhibitors,physiology Proto-Oncogene Proteins p21(ras)/physiology Recombinant Fusion Proteins Ribosomal Protein S6 Kinases Signal Transduction/physiology Sirolimus TOR Serine-Threonine Kinases
Chemicals
Antibodies Carrier Proteins Enzyme Inhibitors Flavonoids Insulin Polyenes Recombinant Fusion Proteins DNA Phosphotransferases (Alcohol Group Acceptor) MTOR protein, human Protein Serine-Threonine Kinases Ribosomal Protein S6 Kinases TOR Serine-Threonine Kinases MAP Kinase Kinase Kinase 1 MAP3K1 protein, human HRAS protein, human Proto-Oncogene Proteins p21(ras) 2-(2-amino-3-methoxyphenyl)-4H-1-benzopyran-4-one Sirolimus
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
McIlroy J
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Chen D
Wjasow C
Michaeli T
Backer J M
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Article Info
Journal
Molecular and cellular biology
Abbr.
Mol Cell Biol
ISSN
0270-7306
Published
1997-01-00
Pages
248-55
Language
English
Region
United States
NLM ID
8109087
PMCID
PMC231749
Subset
IM
Grants
NIDDK NIH HHS · DK44541 · United States
NIGMS NIH HHS · GM 48962 · United States
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