Cellular secretion depends on exocytosis of secretory vesicles and discharge of vesicle contents. Actin and myosin are essential for pre-fusion and post-fusion stages of exocytosis. Secretory vesicles depend on actin for transport to and attachment at the cell cortex during the pre-fusion phase. Actin coats on fused vesicles contribute to stabilization of large vesicles, active vesicle contraction and/or retrieval of excess membrane during the post-fusion phase. Myosin molecular motors complement the role of actin. Myosin V is required for vesicle trafficking and attachment to cortical actin. Myosin I and II members engage in local remodeling of cortical actin to allow vesicles to get access to the plasma membrane for membrane fusion. Myosi...
Secretion of vesicular contents by exocytosis is a fundamental cellular process. Increasing evidence...
AbstractMorphological, biochemical, and membrane capacitance measurements were used to study the rol...
In neurosecretory cells, secretory vesicles (SVs) undergo Ca2(+)-dependent fusion with the plasma me...
Cellular secretion depends on exocytosis of secretory vesicles and discharge of vesicle contents. Ac...
Regulated exocytosis is the main mechanism utilized by specialized secretory cells to deliver molecu...
The cortical actin network in neurosecretory cells is a dense mesh of actin filaments underlying the...
Actin and actin-associated proteins have a pivotal effect on regulated exocytosis in secretory cells...
Dysregulation of regulated exocytosis is linked to an array of pathological conditions, including ne...
Cellular communication relies on fusion of secretory vesicles with the plasma membrane, following dy...
Exocytosis is the intracellular trafficking step where a secretory vesicle fuses with the plasma mem...
AbstractMost secretory cells undergoing calcium-regulated exocytosis in response to cell surface rec...
In many secretory cells actin and myosin are specifically recruited to the surface of secretory gran...
Vesicular secretion is a fundamental process in the body with vesicle fusion releasing vesicle conte...
Before undergoing neuroexocytosis, secretory granules (SGs) are mobilized and tethered to the cortic...
The cortical actin network is a tight array of filaments located beneath the plasma membrane. In neu...
Secretion of vesicular contents by exocytosis is a fundamental cellular process. Increasing evidence...
AbstractMorphological, biochemical, and membrane capacitance measurements were used to study the rol...
In neurosecretory cells, secretory vesicles (SVs) undergo Ca2(+)-dependent fusion with the plasma me...
Cellular secretion depends on exocytosis of secretory vesicles and discharge of vesicle contents. Ac...
Regulated exocytosis is the main mechanism utilized by specialized secretory cells to deliver molecu...
The cortical actin network in neurosecretory cells is a dense mesh of actin filaments underlying the...
Actin and actin-associated proteins have a pivotal effect on regulated exocytosis in secretory cells...
Dysregulation of regulated exocytosis is linked to an array of pathological conditions, including ne...
Cellular communication relies on fusion of secretory vesicles with the plasma membrane, following dy...
Exocytosis is the intracellular trafficking step where a secretory vesicle fuses with the plasma mem...
AbstractMost secretory cells undergoing calcium-regulated exocytosis in response to cell surface rec...
In many secretory cells actin and myosin are specifically recruited to the surface of secretory gran...
Vesicular secretion is a fundamental process in the body with vesicle fusion releasing vesicle conte...
Before undergoing neuroexocytosis, secretory granules (SGs) are mobilized and tethered to the cortic...
The cortical actin network is a tight array of filaments located beneath the plasma membrane. In neu...
Secretion of vesicular contents by exocytosis is a fundamental cellular process. Increasing evidence...
AbstractMorphological, biochemical, and membrane capacitance measurements were used to study the rol...
In neurosecretory cells, secretory vesicles (SVs) undergo Ca2(+)-dependent fusion with the plasma me...