What are the molecular events that occur when a peptide inserts across a membrane or exits from it? Using the pH-triggered insertion of the pH low insertion peptide to enable kinetic analysis, we show that insertion occurs in several steps, with rapid (0.1 sec) interfacial helix formation, followed by a much slower (100 sec) insertion pathway to give a transmembrane helix. The reverse process of unfolding and peptide exit from the bilayer core, which can be induced by a rapid rise of the pH from acidic to basic, proceeds approximately 400 times faster than folding/insertion and through different intermediate states. In the exit pathway, the helix–coil transition is initiated while the polypeptide is still inside the membrane. The peptide st...
The pH-dependent insertion of pHLIP across membranes is proving to be a useful property for targetin...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
AbstractThe membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble...
AbstractThe membrane-associated folding/unfolding of pH (low) insertion peptide (pHLIP) provides an ...
The membrane-associated folding/unfolding of pH (low) insertion peptide (pHLIP) provides an opportun...
To advance mechanistic understanding of membrane-associated peptide folding and insertion, we have s...
The stability and folding of both nonconstitutive and constitutive membrane proteins are strongly co...
The pH (Low) Insertion Peptides (pHLIP® peptides) find application in studies of membrane-associated...
AbstractThe membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
The membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble in aque...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
We have previously observed the spontaneous, pH-dependent insertion of a water-soluble peptide to fo...
The pH-dependent insertion of pHLIP across membranes is proving to be a useful property for targetin...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
AbstractThe membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble...
AbstractThe membrane-associated folding/unfolding of pH (low) insertion peptide (pHLIP) provides an ...
The membrane-associated folding/unfolding of pH (low) insertion peptide (pHLIP) provides an opportun...
To advance mechanistic understanding of membrane-associated peptide folding and insertion, we have s...
The stability and folding of both nonconstitutive and constitutive membrane proteins are strongly co...
The pH (Low) Insertion Peptides (pHLIP® peptides) find application in studies of membrane-associated...
AbstractThe membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
The membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble in aque...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
We have previously observed the spontaneous, pH-dependent insertion of a water-soluble peptide to fo...
The pH-dependent insertion of pHLIP across membranes is proving to be a useful property for targetin...
Peptides with the ability to bind and insert into the cell membrane are an ever-growing field of res...
AbstractThe membrane peptide pH (low) insertion peptide (pHLIP) lives in three worlds, being soluble...