Abstract The proteins of flotillin-1 and flotillin-2 were originally discovered in axon regeneration of goldfish retinal ganglion cells. They are generally used as marker proteins of lipid rafts and considered to be scaffolding proteins of lipid microdomains. Although they are ubiquitously expressed and well-conserved from fly to man, their exact functions remain controversial. In this review, we summarize the structure of flotillins and some functions of them, such as regulating axon regeneration, endocytosis, T cell activation, insulin signaling, membrane protein recruitment, roles in the progression of some diseases and so on.</p
Myoblasts undergo a series of changes in the composition and dynamics of their plasma membranes duri...
Myoblasts undergo a series of changes in the composition and dynamics of their plasma membranes duri...
Flotillins are universally conserved proteins that are present in all kingdoms of life. Recently it ...
The proteins reggie-1 and reggie-2 were originally discovered in neurons during axon regeneration. S...
Reggie-1 and reggie-2 are two evolutionarily highly conserved proteins which are up-regulated in ret...
The two proteins reggie-1 and reggie-2 (flotillins) were identified in axon-regenerating neurons in ...
AbstractThe two proteins reggie-1 and reggie-2 (flotillins) were identified in axon-regenerating neu...
Reggie/Flotillin proteins are upregulated after optic nerve dissection and evolutionary highly conse...
Flotillins are lipid raft-associated proteins, which have been implicated in neuronal regeneration a...
The microdomain-forming proteins reggie-1 and reggie-2 (alias flotillins) were found to be upregulat...
The ubiquitous and highly conserved flotillin proteins, flotillin-1 and flotillin-2, have been shown...
International audienceFlotillins 1 and 2 are two ubiquitous, highly conserved homologous proteins th...
Reggie/flotillin proteins are considered to be components of lipid rafts and are commonly used as ma...
Flotillin 1 and flotillin 2 associate in the plasma membrane to form microdomains that have roles in...
The ubiquitous and highly conserved flotillin proteins, flotillin-1 and flotillin-2, have been shown...
Myoblasts undergo a series of changes in the composition and dynamics of their plasma membranes duri...
Myoblasts undergo a series of changes in the composition and dynamics of their plasma membranes duri...
Flotillins are universally conserved proteins that are present in all kingdoms of life. Recently it ...
The proteins reggie-1 and reggie-2 were originally discovered in neurons during axon regeneration. S...
Reggie-1 and reggie-2 are two evolutionarily highly conserved proteins which are up-regulated in ret...
The two proteins reggie-1 and reggie-2 (flotillins) were identified in axon-regenerating neurons in ...
AbstractThe two proteins reggie-1 and reggie-2 (flotillins) were identified in axon-regenerating neu...
Reggie/Flotillin proteins are upregulated after optic nerve dissection and evolutionary highly conse...
Flotillins are lipid raft-associated proteins, which have been implicated in neuronal regeneration a...
The microdomain-forming proteins reggie-1 and reggie-2 (alias flotillins) were found to be upregulat...
The ubiquitous and highly conserved flotillin proteins, flotillin-1 and flotillin-2, have been shown...
International audienceFlotillins 1 and 2 are two ubiquitous, highly conserved homologous proteins th...
Reggie/flotillin proteins are considered to be components of lipid rafts and are commonly used as ma...
Flotillin 1 and flotillin 2 associate in the plasma membrane to form microdomains that have roles in...
The ubiquitous and highly conserved flotillin proteins, flotillin-1 and flotillin-2, have been shown...
Myoblasts undergo a series of changes in the composition and dynamics of their plasma membranes duri...
Myoblasts undergo a series of changes in the composition and dynamics of their plasma membranes duri...
Flotillins are universally conserved proteins that are present in all kingdoms of life. Recently it ...