Pepstatin A, a pentapeptide aspartyl protease inhibitor, can interact with intermediate filament (IF) subunit proteins and induce their polymerization in the absence of salt into long filaments with a rough surface and a diameter of 15–17 nm. This polymerization appears to be driven primarily by non-ionic interactions between pepstatin A and polymerization-competent forms of IF proteins, resulting in a composite filament. Proteolytic fragments of vimentin, lacking portions of only the head domain or of both the head and tail domains, failed to copolymerize with pepstatin A into long filaments under these conditions. Rather, these peptides, as well as control proteins like bovine serum albumin, were found to decorate pepstatin A polymers (fi...
The in vitro phosphorylation of vimentin, the intermediate filament protein of mesenchymal cells, by...
Inhibitors of proteolytic enzymes (proteases) are emerging as prospective treatments for diseases su...
Previous studies have shown that the non−−helical head domain of vimentin is required for polymeriza...
Pepstatin A, a pentapeptide aspartyl protease inhibitor, can interact with intermediate filament (IF...
Pepstatin A, a pentapeptide with the molecular weight of 686, is a naturally occurring inhibitor of ...
Pepstatin A, a pentapeptide aspartyl protease inhibitor, can spontaneously polymerize into filaments...
The intermediate filament subunit protein vimentin is efficiently cleaved in vitro by purified human...
The intermediate filament (IF) subunit protein vimentin is efficiently cleaved in vitro by purified ...
The intermediate filament (IF) subunit protein vimentin is efficiently cleaved in vitro by purified ...
Previous studies have shown that the non-alpha-helical, amino-terminal head region of vimentin is es...
Previous studies have shown that the non−alpha−helical, amino−terminal head region of vimentin is es...
Previous studies have shown that the non-alpha-helical head domain of vimentin is required for polym...
Intermediate filaments (IFs) assembled in vitro from recombinantly expressed proteins have a diamete...
(A) Superposition of pepstatin structures bound to BuPAG 7 (cyan), human pepsin (orange) and bovine ...
The in vitro phosphorylation of vimentin, the intermediate filament protein of mesenchymal cells, by...
Inhibitors of proteolytic enzymes (proteases) are emerging as prospective treatments for diseases su...
Previous studies have shown that the non−−helical head domain of vimentin is required for polymeriza...
Pepstatin A, a pentapeptide aspartyl protease inhibitor, can interact with intermediate filament (IF...
Pepstatin A, a pentapeptide with the molecular weight of 686, is a naturally occurring inhibitor of ...
Pepstatin A, a pentapeptide aspartyl protease inhibitor, can spontaneously polymerize into filaments...
The intermediate filament subunit protein vimentin is efficiently cleaved in vitro by purified human...
The intermediate filament (IF) subunit protein vimentin is efficiently cleaved in vitro by purified ...
The intermediate filament (IF) subunit protein vimentin is efficiently cleaved in vitro by purified ...
Previous studies have shown that the non-alpha-helical, amino-terminal head region of vimentin is es...
Previous studies have shown that the non−alpha−helical, amino−terminal head region of vimentin is es...
Previous studies have shown that the non-alpha-helical head domain of vimentin is required for polym...
Intermediate filaments (IFs) assembled in vitro from recombinantly expressed proteins have a diamete...
(A) Superposition of pepstatin structures bound to BuPAG 7 (cyan), human pepsin (orange) and bovine ...
The in vitro phosphorylation of vimentin, the intermediate filament protein of mesenchymal cells, by...
Inhibitors of proteolytic enzymes (proteases) are emerging as prospective treatments for diseases su...
Previous studies have shown that the non−−helical head domain of vimentin is required for polymeriza...