Self-association of dynamin to form spiral structures around lipidic vesicles during endocytosis is largely mediated by its 'coiled coil' GTPase Effector Domain (GED), which, in vitro, self-associates into huge helical assemblies. Residue-level structural characterizations of these assemblies and understanding the process of association have remained a challenge. It is also impossible to get folded monomers in the solution phase. In this context, we have developed here a strategy to probe the self-association of GED by first dissociating the assembly using Dimethyl Sulfoxide (DMSO) and then systematically monitoring the refolding into helix and concomitant re-association using NMR spectroscopy, as DMSO concentration is progressively reduced...
<p>(<b>A</b>) The polar amino acid rich segment of the completely or partially dissociated polypepti...
Protein folding transitions starting from a denatured state play crucial roles in deciding the final...
High order oligomers are crucial for normal cell physiology, and protein function perturbed by misse...
<div><p>Self-association of dynamin to form spiral structures around lipidic vesicles during endocyt...
Self-association of dynamin to form spiral structures around lipidic vesicles during endocytosis is ...
Dynamin, a protein playing crucial roles in endocytosis, oligomerizes to form spirals around the nec...
Protein self-association is critical to many biological functions. However, atomic-level structural ...
Dynamin, a 100-kDa GTPase, has been implicated to be involved in synaptic vesicle recycling, recepto...
The GTPase effector domain (GED) of dynamin, a multi-domain protein involved in endocytosis, forms a...
The GTPase effector domain (GED) is a subunit of dynamin, a multi-domain protein involved in endocyt...
Dynamin family members are large GTPases that assemble into multimeric spirals. These spirals promot...
<p>(<b>A</b>) Schematic representation of the T-shaped dynamin tetramers or ‘dimer of dimers’ <a hre...
SummaryThe GTPase dynamin catalyzes membrane fission by forming a collar around the necks of clathri...
Dynamins are large enzymes that catalyse the hydrolysis of GTP (GTPase activity). They assemble thro...
SummaryProteins of the dynamin superfamily mediate membrane fission, fusion, and restructuring event...
<p>(<b>A</b>) The polar amino acid rich segment of the completely or partially dissociated polypepti...
Protein folding transitions starting from a denatured state play crucial roles in deciding the final...
High order oligomers are crucial for normal cell physiology, and protein function perturbed by misse...
<div><p>Self-association of dynamin to form spiral structures around lipidic vesicles during endocyt...
Self-association of dynamin to form spiral structures around lipidic vesicles during endocytosis is ...
Dynamin, a protein playing crucial roles in endocytosis, oligomerizes to form spirals around the nec...
Protein self-association is critical to many biological functions. However, atomic-level structural ...
Dynamin, a 100-kDa GTPase, has been implicated to be involved in synaptic vesicle recycling, recepto...
The GTPase effector domain (GED) of dynamin, a multi-domain protein involved in endocytosis, forms a...
The GTPase effector domain (GED) is a subunit of dynamin, a multi-domain protein involved in endocyt...
Dynamin family members are large GTPases that assemble into multimeric spirals. These spirals promot...
<p>(<b>A</b>) Schematic representation of the T-shaped dynamin tetramers or ‘dimer of dimers’ <a hre...
SummaryThe GTPase dynamin catalyzes membrane fission by forming a collar around the necks of clathri...
Dynamins are large enzymes that catalyse the hydrolysis of GTP (GTPase activity). They assemble thro...
SummaryProteins of the dynamin superfamily mediate membrane fission, fusion, and restructuring event...
<p>(<b>A</b>) The polar amino acid rich segment of the completely or partially dissociated polypepti...
Protein folding transitions starting from a denatured state play crucial roles in deciding the final...
High order oligomers are crucial for normal cell physiology, and protein function perturbed by misse...