The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular trafficking, exocytosis, and drug delivery. Molecular dynamics simulations have been used to study the fusion of small unilamellar vesicles composed of a dipalmitoyl-phosphatidylcholine (DPPC)/palmitic acid 1:2 mixture in atomic detail. The simulations were performed at 350-370 K and mimicked the temperature- and pH-induced fusion of DPPC/palmitic acid vesicles from experiments by others. To make the calculations computationally feasible, a vesicle simulated at periodic boundary conditions was fused with its periodic image. Starting from a preformed stalk between the outer leaflets of the vesicle and its periodic image, a hemifused state formed wi...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Membrane fusion is a key step in intracellular trafficking and viral infection. The underlying molec...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
AbstractThe fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellul...
ABSTRACT The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellu...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
AbstractMembrane fusion is essential for intracellular trafficking and virus infection, but the mole...
As the dynamics of the cell membrane and the working mechanisms of proteins cannot be readily assert...
As the dynamics of the cell membrane and the working mechanisms of proteins cannot be readily assert...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Membrane fusion is a key step in intracellular trafficking and viral infection. The underlying molec...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
AbstractThe fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellul...
ABSTRACT The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellu...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
AbstractMembrane fusion is essential for intracellular trafficking and virus infection, but the mole...
As the dynamics of the cell membrane and the working mechanisms of proteins cannot be readily assert...
As the dynamics of the cell membrane and the working mechanisms of proteins cannot be readily assert...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Membrane fusion is a key step in intracellular trafficking and viral infection. The underlying molec...