The effect of the covalent attachment of a myristolyl moiety to the N-terminal glycine residue in proteins, N-myristoylation, on lipid-protein interactions was investigated in a model system using magnetic resonance spectroscopic methods. Two peptides with sequences conserved among known N-myristoylated proteins were chosen for this study. Using two-dimensional nuclear magnetic resonance techniques, it was shown that N-myristolylation results in an aggregation of both peptides in solution, although they lack well defined folded conformations in solution either when chemically N-myristolyated or when nonacylated. The interaction of the acylated peptides with lipid bilayers was investigated using spin label electron spin resonance and 2H NMR ...
Presented at the joint biannual meeting of the SFB-GEIMM-GRIP, Anglet France, 14–19 October, 2006Int...
260 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1980.The nuclear magnetic resonanc...
SummaryPerhaps 5%–10% of proteins bind to membranes via a covalently attached lipid. Posttranslation...
In recent years, a large number of proteins having covalently linked myristic and palmitic acids hav...
AbstractLipid modifications of proteins are widespread in nature and play an important role in numer...
NMR spectroscopy in many of the more recent applications can give relevant information in the study ...
Many important biological processes occur near or in membranes. The role of membranes is not merely ...
AbstractMany proteins are anchored to lipid bilayer membranes through a combination of hydrophobic a...
AbstractWe studied the interaction between synthetic amphipathic peptides and model membranes by sol...
Specific molecular interactions that determine many of the functions of a biomembrane have a high pr...
The appropriate lipid environment is crucial for the proper function of membrane proteins. There is ...
Several groups have observed that phosphorylation causes the MARCKS (Myristoylated Alanine-Rich C Ki...
AbstractWe have investigated in the present study the effect of both non-selective and selective cat...
Interactions between peptides and biological lipid membranes play a crucial role in many cellular pr...
The theory of the quadrupole interaction in nuclear magnetic resonance spectroscopy and relaxation m...
Presented at the joint biannual meeting of the SFB-GEIMM-GRIP, Anglet France, 14–19 October, 2006Int...
260 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1980.The nuclear magnetic resonanc...
SummaryPerhaps 5%–10% of proteins bind to membranes via a covalently attached lipid. Posttranslation...
In recent years, a large number of proteins having covalently linked myristic and palmitic acids hav...
AbstractLipid modifications of proteins are widespread in nature and play an important role in numer...
NMR spectroscopy in many of the more recent applications can give relevant information in the study ...
Many important biological processes occur near or in membranes. The role of membranes is not merely ...
AbstractMany proteins are anchored to lipid bilayer membranes through a combination of hydrophobic a...
AbstractWe studied the interaction between synthetic amphipathic peptides and model membranes by sol...
Specific molecular interactions that determine many of the functions of a biomembrane have a high pr...
The appropriate lipid environment is crucial for the proper function of membrane proteins. There is ...
Several groups have observed that phosphorylation causes the MARCKS (Myristoylated Alanine-Rich C Ki...
AbstractWe have investigated in the present study the effect of both non-selective and selective cat...
Interactions between peptides and biological lipid membranes play a crucial role in many cellular pr...
The theory of the quadrupole interaction in nuclear magnetic resonance spectroscopy and relaxation m...
Presented at the joint biannual meeting of the SFB-GEIMM-GRIP, Anglet France, 14–19 October, 2006Int...
260 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1980.The nuclear magnetic resonanc...
SummaryPerhaps 5%–10% of proteins bind to membranes via a covalently attached lipid. Posttranslation...