Rhomboid proteases are integral membrane serine proteases that catalyze peptide bond hydrolysis in biological membranes. Little is currently known about the interaction of enzyme and substrate. Coarse-grained molecular dynamics simulations in hydrated lipid bilayers are employed herein to study the interaction of the E. coli rhomboid protease GlpG (ecGlpG) with the transmembrane domain (TMD) of the substrate Spitz. Spitz does not associate with ecGlpG exclusively at the putative substrate gate near TMD 5. Instead, there are six prominent and stable interaction sites, including one between TMDs 1 and 3, with the closest enzyme–substrate proximity occurring at the ends of helical TMDs or in loops. Bilayer thinning is observed proximal to ecGl...
Rhomboids are intramembrane proteases that use a catalytic dyad of serine and histidine for proteoly...
Rhomboids are ubiquitous intramembrane serine proteases that cleave transmembrane substrates. Their ...
Intramembrane proteases have the unusual property of cleaving peptide bonds within the lipid bilayer...
SummaryIntramembrane proteases, which cleave transmembrane (TM) helices, participate in numerous bio...
Rhomboid intramembrane proteases are bound to lipid membranes, where they dock and cleave other tran...
Membrane proteins of the rhomboid-family are evolutionarily widely conserved and include rhomboid in...
Intramembrane proteases, which cleave transmembrane (TM) helices, participate in numerous biologica...
Intramembrane proteases, which cleave transmem-brane (TM) helices, participate in numerous biolog-ic...
Rhomboids are unique membrane proteins that use a serine protease hydrolysis mechanism to cleave a t...
SummaryRhomboid proteases regulate key cellular pathways, but their biochemical mechanism including ...
Transmembrane substrate cleavage by the small Escherichia coli rhomboid protease GlpG informs on mec...
Rhomboids are intramembrane serine proteases that cleave membrane proteins within the bilayer, and w...
AbstractRhomboid proteases are a family of integral membrane proteins that have been implicated in c...
Rhomboid proteases can catalyze peptide bond cleavage and participate in abundant biological process...
SummaryRhomboid proteases regulate key cellular pathways, but their biochemical mechanism including ...
Rhomboids are intramembrane proteases that use a catalytic dyad of serine and histidine for proteoly...
Rhomboids are ubiquitous intramembrane serine proteases that cleave transmembrane substrates. Their ...
Intramembrane proteases have the unusual property of cleaving peptide bonds within the lipid bilayer...
SummaryIntramembrane proteases, which cleave transmembrane (TM) helices, participate in numerous bio...
Rhomboid intramembrane proteases are bound to lipid membranes, where they dock and cleave other tran...
Membrane proteins of the rhomboid-family are evolutionarily widely conserved and include rhomboid in...
Intramembrane proteases, which cleave transmembrane (TM) helices, participate in numerous biologica...
Intramembrane proteases, which cleave transmem-brane (TM) helices, participate in numerous biolog-ic...
Rhomboids are unique membrane proteins that use a serine protease hydrolysis mechanism to cleave a t...
SummaryRhomboid proteases regulate key cellular pathways, but their biochemical mechanism including ...
Transmembrane substrate cleavage by the small Escherichia coli rhomboid protease GlpG informs on mec...
Rhomboids are intramembrane serine proteases that cleave membrane proteins within the bilayer, and w...
AbstractRhomboid proteases are a family of integral membrane proteins that have been implicated in c...
Rhomboid proteases can catalyze peptide bond cleavage and participate in abundant biological process...
SummaryRhomboid proteases regulate key cellular pathways, but their biochemical mechanism including ...
Rhomboids are intramembrane proteases that use a catalytic dyad of serine and histidine for proteoly...
Rhomboids are ubiquitous intramembrane serine proteases that cleave transmembrane substrates. Their ...
Intramembrane proteases have the unusual property of cleaving peptide bonds within the lipid bilayer...