Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Dynamin Mediates Membrane Vesiculation

View through CrossRef
Abstract Dynamin, a 100 kDa GTPase, is essential for receptor mediated endocytosis and synaptic vesicle recycling; however its mechanism of action is unknown. The requirement for dynamin was first elucidated by the discovery that the shibire gene product in Drosophila melanogaster was homologous to mammalian dynamin-1 (1,2). The shibire flies exhibit a depletion of synaptic vesicles and an accumulation of collared clathrin-coated pits at the plasma membrane of their nerve termini (3). It was later demonstrated that endocytosis was inhibited by the overexpression of dominant negative mutants of dynamin (4,5), and that purified dynamin can self-associate to form spirals which resemble the collars of shibire and structures seen in synaptosomes treated with GTPγS (6,7). These observations led to the speculation that dynamin pinches the clathrin-coated bud from the plasma membrane. In support of this hypothesis, we show that purified recombinant dynamin can bind to a lipid bilayer in a regular and repeating pattern to form helical tubes which vesiculate upon the addition of GTP.
Title: Dynamin Mediates Membrane Vesiculation
Description:
Abstract Dynamin, a 100 kDa GTPase, is essential for receptor mediated endocytosis and synaptic vesicle recycling; however its mechanism of action is unknown.
The requirement for dynamin was first elucidated by the discovery that the shibire gene product in Drosophila melanogaster was homologous to mammalian dynamin-1 (1,2).
The shibire flies exhibit a depletion of synaptic vesicles and an accumulation of collared clathrin-coated pits at the plasma membrane of their nerve termini (3).
It was later demonstrated that endocytosis was inhibited by the overexpression of dominant negative mutants of dynamin (4,5), and that purified dynamin can self-associate to form spirals which resemble the collars of shibire and structures seen in synaptosomes treated with GTPγS (6,7).
These observations led to the speculation that dynamin pinches the clathrin-coated bud from the plasma membrane.
In support of this hypothesis, we show that purified recombinant dynamin can bind to a lipid bilayer in a regular and repeating pattern to form helical tubes which vesiculate upon the addition of GTP.

Related Results

Polymer-like model to study the dynamics of dynamin filaments on deformable membrane tubes
Polymer-like model to study the dynamics of dynamin filaments on deformable membrane tubes
Abstract Peripheral membrane proteins with intrinsic curvature can act both as sensors of membrane curvature and shape modulators of the underlying membranes. A wel...
Procedure for Western blot v1
Procedure for Western blot v1
Goal: This document has the objective of standardizing the protocol for Western blot. This technique allows the detection of specific proteins separated on polyacrylamide gel and t...
Uncoupling of dynamin polymerization and GTPase activity revealed by the conformation-specific nanobody dynab
Uncoupling of dynamin polymerization and GTPase activity revealed by the conformation-specific nanobody dynab
Dynamin is a large GTPase that forms a helical collar at the neck of endocytic pits, and catalyzes membrane fission (Schmid and Frolov, 2011; Ferguson and De Camilli, 2012). Dynami...
An Investigation into Hydrophobic Membrane Fouling in Desalination Using Membrane Distillation Technology
An Investigation into Hydrophobic Membrane Fouling in Desalination Using Membrane Distillation Technology
Demand for freshwater supplies is continuously increasing globally to the extent where some parts of the world became highly water stressed. In particular, the Arabian Gulf states ...
Design principles for robust vesiculation in clathrin-mediated endocytosis
Design principles for robust vesiculation in clathrin-mediated endocytosis
Abstract A critical step in cellular trafficking pathways is the budding of membranes by protein coats, which recent experiments have demonstrate...
Syndapin I, a Synaptic Dynamin-binding Protein that Associates with the Neural Wiskott-Aldrich Syndrome Protein
Syndapin I, a Synaptic Dynamin-binding Protein that Associates with the Neural Wiskott-Aldrich Syndrome Protein
The GTPase dynamin has been clearly implicated in clathrin-mediated endocytosis of synaptic vesicle membranes at the presynaptic nerve terminal. Here we describe a novel 52-kDa pro...
Dynamin-2 controls complement receptor 3- mediated phagocytosis completion and closure
Dynamin-2 controls complement receptor 3- mediated phagocytosis completion and closure
Abstract Phagocytosis is the mechanism of the internalization of large particles, microorganisms and cellular debris. The complement pathway represents one of the f...
Alternative cell entry mechanisms for SARS-CoV-2 and multiple animal viruses
Alternative cell entry mechanisms for SARS-CoV-2 and multiple animal viruses
Abstract The cell entry mechanism of SARS-CoV-2, the causative agent of the COVID-19 pandemic, is not fully understood. Most animal viruses hijack cellular endocyti...

Back to Top