HIGH-AFFINITY BINDING OF INOSITOL PHOSPHATES AND PHOSPHOINOSITIDES TOTHE PLECKSTRIN HOMOLOGY DOMAIN OF RAC PROTEIN-KINASE-B AND THEIR INFLUENCE ON KINASE-ACTIVITY
M. Frech et al., HIGH-AFFINITY BINDING OF INOSITOL PHOSPHATES AND PHOSPHOINOSITIDES TOTHE PLECKSTRIN HOMOLOGY DOMAIN OF RAC PROTEIN-KINASE-B AND THEIR INFLUENCE ON KINASE-ACTIVITY, The Journal of biological chemistry, 272(13), 1997, pp. 8474-8481
The influence of inositol phosphates and phosphoinositides on the alph
a isoform of the RAG-protein kinase B (RAC/PKB) was studied using puri
fied wild type and mutant kinase preparations and a recombinant plecks
trin homology (PH) domain, Binding of inositol phosphates and phosphoi
nositides to the PH domain was measured as the quenching of intrinsic
tryptophan fluorescence, Inositol phosphates and D3-phosphorylated pho
sphoinositides bound with affinities of 1-10 mu M and 0.5 mu M, respec
tively. Similar values were obtained using RAC/PKB expressed and purif
ied from baculovirus-infected Sf9 cells in the fluorescence assay. The
influence of synthetic dioctanoyl derivatives of phosphatidylinositol
3,4-bisphosphate and phosphatidylinositol 3,4,5-trisphosphate on the
activity of RAC/PKB purified from transfected COS-1 cells was studied.
Phosphatidylinositol 3,4,5-trisphosphate was found to inhibit the RAC
/PKB kinase activity with half-maximal inhibition at 2.5 mu M. In cont
rast, phosphatidylinositol 3,4-bisphosphate stimulated kinase activity
(half-maximal stimulation at 2.5 mu M). A mutant RAC/PKB protein lack
ing the PH domain was not affected by D3-phosphorylated phosphoinositi
des. These results demonstrate that the PH domain of RAC/PKB binds ino
sitol phosphates and phosphoinositides with high affinity, and suggest
that the products of the phosphatidylinositide 3-kinase can act as bo
th a membrane anchor and modulator of RAC/PKB activity. The data also
provide further evidence for a link between phosphatidylinositide 3-ki
nase and RAC/PKB regulation.