Signals transduced by kinases depend on the extent and duration of substrate phosphorylation. We generated genetically encoded fluorescent reporters for PKC activity that reversibly respond to stimuli activating PKC. Specifically, phosphorylation of the reporter expressed in mammalian cells causes changes in fluorescence resonance energy transfer (FRET), allowing real time imaging of phosphorylation resulting from PKC activation. Targeting of the reporter to the plasma membrane, where PKC is activated, reveals oscillatory phosphorylation in HeLa cells in response to histamine. Each oscillation in substrate phosphorylation follows a calcium oscillation with a lag of approximately 10 s. Novel FRET-based reporters for PKC translocation, phosph...
Optimal tuning of enzyme signaling is critical for cellular homeostasis. We use fluorescence resonan...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
In electrically excitable cells, membrane depolarization opens voltage-dependent Ca2+ channels elici...
Signals transduced by kinases depend on the extent and duration of substrate phosphorylation. We gen...
Signals transduced by kinases depend on the extent and duration of substrate phosphorylation. We gen...
Protein kinase C (PKC), comprised of ten isozymes, is an abundant regulator of cellular function. PK...
Perception of ligands in the extracellular space by transmembrane receptors initiates signal transdu...
AbstractThe specificity of many signal transduction pathways relies on the temporal coordination of ...
Abstract Protein Kinase A (PKA) exists as a tetrameric holoenzyme which activates with increase of c...
Protein kinases play pivotal roles in intracellular signal transduction, and dysregulation of kinase...
We developed a probe for investigating protein kinase C (PKC) activity in living cells. The probe is...
BACKGROUND: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
AbstractDynamic changes in intracellular free Ca2+ concentrations ([Ca2+]is) control many important ...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
Optimal tuning of enzyme signaling is critical for cellular homeostasis. We use fluorescence resonan...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
In electrically excitable cells, membrane depolarization opens voltage-dependent Ca2+ channels elici...
Signals transduced by kinases depend on the extent and duration of substrate phosphorylation. We gen...
Signals transduced by kinases depend on the extent and duration of substrate phosphorylation. We gen...
Protein kinase C (PKC), comprised of ten isozymes, is an abundant regulator of cellular function. PK...
Perception of ligands in the extracellular space by transmembrane receptors initiates signal transdu...
AbstractThe specificity of many signal transduction pathways relies on the temporal coordination of ...
Abstract Protein Kinase A (PKA) exists as a tetrameric holoenzyme which activates with increase of c...
Protein kinases play pivotal roles in intracellular signal transduction, and dysregulation of kinase...
We developed a probe for investigating protein kinase C (PKC) activity in living cells. The probe is...
BACKGROUND: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
AbstractDynamic changes in intracellular free Ca2+ concentrations ([Ca2+]is) control many important ...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
Optimal tuning of enzyme signaling is critical for cellular homeostasis. We use fluorescence resonan...
Background: Two-photon-excitation fluorescence lifetime imaging (2P-FLIM) was used to investigate th...
In electrically excitable cells, membrane depolarization opens voltage-dependent Ca2+ channels elici...