marcks protein plays a crucial role in signal transduction pathways within eukaryotic cells.
the phosphorylation of marcks regulates its interaction with actin filaments and modulates cell motility.
researchers have identified marcks as a key substrate for protein kinase c in various cell types.
marcks expression is significantly upregulated during neuronal development and synaptic plasticity.
mutations in the marcks gene have been associated with neurodevelopmental disorders in clinical studies.
the marcks protein contains multiple its sub phosphorylation sites that controlcellular localization.
inhibiting marcks function through pharmacological approaches affects cell migration and invasion.
marcks is targeted to the plasma membrane through n-terminal myristoylation and electrostatic interactions.
calcium influx triggers rapid phosphorylation of marcks by downstream kinases.
marcks interacts with calmodulin in a calcium-dependent manner, regulating various cellular processes.
the knockdown of marcks using sirna results in dramatic changes to cell morphology and adhesion.
marcks serves as a molecular hub integrating signals from multiple signaling pathways.
marcks protein plays a crucial role in signal transduction pathways within eukaryotic cells.
the phosphorylation of marcks regulates its interaction with actin filaments and modulates cell motility.
researchers have identified marcks as a key substrate for protein kinase c in various cell types.
marcks expression is significantly upregulated during neuronal development and synaptic plasticity.
mutations in the marcks gene have been associated with neurodevelopmental disorders in clinical studies.
the marcks protein contains multiple its sub phosphorylation sites that controlcellular localization.
inhibiting marcks function through pharmacological approaches affects cell migration and invasion.
marcks is targeted to the plasma membrane through n-terminal myristoylation and electrostatic interactions.
calcium influx triggers rapid phosphorylation of marcks by downstream kinases.
marcks interacts with calmodulin in a calcium-dependent manner, regulating various cellular processes.
the knockdown of marcks using sirna results in dramatic changes to cell morphology and adhesion.
marcks serves as a molecular hub integrating signals from multiple signaling pathways.
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