Archaeal preflagellin peptidases and bacterial type IV prepilin peptidases belong to a family of aspartic acid proteases that cleave the leader peptides of precursor proteins with type IV prepilin signal sequences. The substrate repertoire of PibD from the crenarchaeon Sulfolobus solfataricus is unusually diverse. In addition to flagellin, PibD cleaves three sugar-binding proteins unique to this species and a number of proteins with unknown function. Here we demonstrate that PibD contains two aspartic acid residues that are essential for cleavage activity. An additional pair of aspartic acids in a large cytoplasmic loop is also important for function and is possibly involved in leader peptide recognition. Combining the results of transmembr...
Signal peptidases remove signal peptides from secretory proteins. By comparing the type I signal pep...
Presenilin 1 and presenilin 2 are polytopic membrane proteins, whose genes are mutated in some indiv...
Signal peptidases are vital enzymes in the protein secretion pathway. In Archaea, type I signal pept...
Archaeal preflagellin peptidases and bacterial type IV prepilin peptidases belong to a family of asp...
Archaeal preflagellin peptidases and bacterial type IV prepilin peptidases belong to a family of asp...
A large number of secretory proteins in the thermoacidophile Sulfolobus solfataricus are synthesized...
A large number of secretory proteins in the thermoacidophile Sulfolobus solfataricus are synthesized...
A large number of secretory proteins in the thermoacidophile Sulfolobus solfataricus are synthesized...
Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a c...
Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a c...
In Archaea, the preflagellin peptidase (a type IV prepilin-like peptidase designated FlaK in Methano...
doi:10.1074/jbc.M407898200The human genome encodes seven intramembrane-cleaving GXGD aspartic protea...
International audienceThis chapter covers the structural chemistry and the biological aspects of typ...
Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a c...
Type II signal peptidases (SPase II) remove signal peptides from lipid-modified preproteins of eubac...
Signal peptidases remove signal peptides from secretory proteins. By comparing the type I signal pep...
Presenilin 1 and presenilin 2 are polytopic membrane proteins, whose genes are mutated in some indiv...
Signal peptidases are vital enzymes in the protein secretion pathway. In Archaea, type I signal pept...
Archaeal preflagellin peptidases and bacterial type IV prepilin peptidases belong to a family of asp...
Archaeal preflagellin peptidases and bacterial type IV prepilin peptidases belong to a family of asp...
A large number of secretory proteins in the thermoacidophile Sulfolobus solfataricus are synthesized...
A large number of secretory proteins in the thermoacidophile Sulfolobus solfataricus are synthesized...
A large number of secretory proteins in the thermoacidophile Sulfolobus solfataricus are synthesized...
Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a c...
Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a c...
In Archaea, the preflagellin peptidase (a type IV prepilin-like peptidase designated FlaK in Methano...
doi:10.1074/jbc.M407898200The human genome encodes seven intramembrane-cleaving GXGD aspartic protea...
International audienceThis chapter covers the structural chemistry and the biological aspects of typ...
Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a c...
Type II signal peptidases (SPase II) remove signal peptides from lipid-modified preproteins of eubac...
Signal peptidases remove signal peptides from secretory proteins. By comparing the type I signal pep...
Presenilin 1 and presenilin 2 are polytopic membrane proteins, whose genes are mutated in some indiv...
Signal peptidases are vital enzymes in the protein secretion pathway. In Archaea, type I signal pept...