Hormones and neurotransmitters are released through fluctuating exocytotic fusion pores that can flicker open and shut multiple times. Cargo release and vesicle recycling depend on the fate of the pore, which may reseal or dilate irreversibly. Pore nucleation requires zippering between vesicle-associated v-SNAREs and target membrane t-SNAREs, but the mechanisms governing the subsequent pore dilation are not understood. Here, we probed the dilation of single fusion pores using v-SNARE-reconstituted ~23-nm-diameter discoidal nanolipoprotein particles (vNLPs) as fusion partners with cells ectopically expressing cognate, 'flipped' t-SNAREs. Pore nucleation required a minimum of two v-SNAREs per NLP face, and further increases in v-SNARE copy nu...
SNAREs fuse membranes in several steps. Trans-SNARE complexes juxtapose membranes, induce hemifused ...
SummarySynaptic vesicle fusion during neurotransmitter release is mediated by assembly of SNARE- and...
Neurotransmitter release in synapses underlies major brain functions such as cognition, emotion, and...
Release of neurotransmitters from synaptic vesicles begins with a narrow fusion pore, the structure ...
Membrane fusion underlies multiple processes, including exocytosis of hormones and neurotransmitters...
SNARE-mediated membrane fusion is a key step in the process of neurotransmission. The release of neu...
Soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) proteins mediate intra...
Here we introduce ApoE-based nanolipoprotein particle (NLP) - a soluble, discoidal bilayer mimetic o...
SNAP-25 is a Q-SNARE protein mediating exocytosis of neurosecretory vesicles including chromaffin gr...
The secretory process requires many different steps and stages. Vesicles must be formed and transpor...
Constitutive membrane fusion within eukaryotic cells is thought to be controlled at its initial step...
Neurotransmitter release is mediated by the SNARE proteins synaptobrevin II (sybII, also known as VA...
AbstractThe secretory process requires many different steps and stages. Vesicles must be formed and ...
The fusion pore is an aqueous channel that is formed upon the fusion of the vesicle membrane with th...
SNAREs fuse membranes in several steps. Trans-SNARE complexes juxtapose membranes, induce hemifused ...
SNAREs fuse membranes in several steps. Trans-SNARE complexes juxtapose membranes, induce hemifused ...
SummarySynaptic vesicle fusion during neurotransmitter release is mediated by assembly of SNARE- and...
Neurotransmitter release in synapses underlies major brain functions such as cognition, emotion, and...
Release of neurotransmitters from synaptic vesicles begins with a narrow fusion pore, the structure ...
Membrane fusion underlies multiple processes, including exocytosis of hormones and neurotransmitters...
SNARE-mediated membrane fusion is a key step in the process of neurotransmission. The release of neu...
Soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) proteins mediate intra...
Here we introduce ApoE-based nanolipoprotein particle (NLP) - a soluble, discoidal bilayer mimetic o...
SNAP-25 is a Q-SNARE protein mediating exocytosis of neurosecretory vesicles including chromaffin gr...
The secretory process requires many different steps and stages. Vesicles must be formed and transpor...
Constitutive membrane fusion within eukaryotic cells is thought to be controlled at its initial step...
Neurotransmitter release is mediated by the SNARE proteins synaptobrevin II (sybII, also known as VA...
AbstractThe secretory process requires many different steps and stages. Vesicles must be formed and ...
The fusion pore is an aqueous channel that is formed upon the fusion of the vesicle membrane with th...
SNAREs fuse membranes in several steps. Trans-SNARE complexes juxtapose membranes, induce hemifused ...
SNAREs fuse membranes in several steps. Trans-SNARE complexes juxtapose membranes, induce hemifused ...
SummarySynaptic vesicle fusion during neurotransmitter release is mediated by assembly of SNARE- and...
Neurotransmitter release in synapses underlies major brain functions such as cognition, emotion, and...