The C2 domain of PKCα (C2α) induces fluorescence self-quenching of NBD-PS in the presence of Ca2+, which is interpreted as the demixing of phosphatidylserine from a mixture of this phospholipid with phosphatidylcholine. Self-quenching of NBD-PS was considerably increased when phosphatidylinositol-4,5-bisphosphate (PIP2) was present in the membrane. When PIP2 was the labeled phospholipid, in the form of TopFluor-PIP2, fluorescence self-quenching induced by the C2 domain was also observed, but this was dependent on the presence of phosphatidylserine. An independent indication of the phospholipid demixing effect given by the C2α domain was obtained by using 2H-NMR, since a shift of the transition temperature of deuterated phosphatidylcholine w...
AbstractThe C1 domains of classical and novel PKCs mediate their diacylglycerol-dependent translocat...
AbstractWe propose a novel role in cellular function for some membrane-binding proteins and, specifi...
All peripheral membrane proteins must negotiate unique constraints intrinsic to the biological inter...
The C2 domain of PKCa (C2a) induces fluorescence self-quenching of NBD-PS in the presence of Ca2+, w...
The C2 domain of PKCa possesses two different binding sites, one for Ca2+ and phosphatidylserine and...
Ca<sup>2+</sup>-responsive C2 domains are peripheral membrane modules that target their host protein...
ABSTRACT Phosphoinositides have been shown to control membrane trafficking events by targeting prote...
AbstractPhosphoinositides have been shown to control membrane trafficking events by targeting protei...
C2 domains are responsible for the Ca2+-dependent binding to membranes of proteins containing the do...
Anionic lipids act as signals for the recruitment of proteins containing cationic clusters to biolog...
The relationship between lipid domains and protein kinase C activity was studied via the direct visu...
Phosphorylation of phosphoinositides by the class\ua0II\ua0phosphatidylinositol 3-kinase (PI3K) PI3K...
Phosphatidylinositol-4,5-bisphosphate (PI(4,5)P2) is an important lipidic signaling molecule that is...
Phosphatidylinositol-specific phospholipase C (PI-PLC) enzymes simultaneously interact with the subs...
We propose a novel role in cellular function for some membrane-binding proteins and, specifically, t...
AbstractThe C1 domains of classical and novel PKCs mediate their diacylglycerol-dependent translocat...
AbstractWe propose a novel role in cellular function for some membrane-binding proteins and, specifi...
All peripheral membrane proteins must negotiate unique constraints intrinsic to the biological inter...
The C2 domain of PKCa (C2a) induces fluorescence self-quenching of NBD-PS in the presence of Ca2+, w...
The C2 domain of PKCa possesses two different binding sites, one for Ca2+ and phosphatidylserine and...
Ca<sup>2+</sup>-responsive C2 domains are peripheral membrane modules that target their host protein...
ABSTRACT Phosphoinositides have been shown to control membrane trafficking events by targeting prote...
AbstractPhosphoinositides have been shown to control membrane trafficking events by targeting protei...
C2 domains are responsible for the Ca2+-dependent binding to membranes of proteins containing the do...
Anionic lipids act as signals for the recruitment of proteins containing cationic clusters to biolog...
The relationship between lipid domains and protein kinase C activity was studied via the direct visu...
Phosphorylation of phosphoinositides by the class\ua0II\ua0phosphatidylinositol 3-kinase (PI3K) PI3K...
Phosphatidylinositol-4,5-bisphosphate (PI(4,5)P2) is an important lipidic signaling molecule that is...
Phosphatidylinositol-specific phospholipase C (PI-PLC) enzymes simultaneously interact with the subs...
We propose a novel role in cellular function for some membrane-binding proteins and, specifically, t...
AbstractThe C1 domains of classical and novel PKCs mediate their diacylglycerol-dependent translocat...
AbstractWe propose a novel role in cellular function for some membrane-binding proteins and, specifi...
All peripheral membrane proteins must negotiate unique constraints intrinsic to the biological inter...