In the last years polyproline II (PPII) structure has been demonstrated to be essential to biological activities such as signal transduction, transcription, cell motility, and immune response. The polyproline left-handed helical structure was nearly unknown until now and often confused with unordered, disordered, irregular, unstructured, extended, or random coil conformations because it is neither alpha-helical nor beta-turn nor beta-sheet, i.e., a classical structure. In spite of the regularity of the PPII structure and, more precisely, its well-defined dihedral angle values, a typical feature of PPII structure is the absence of any intramolecular hydrogen bonds that renders the PPII structure indistinguishable from an irregular backbone s...
UV resonance Raman (UVR) spectroscopy was used to examine the solution conformation of poly-L-lysine...
ABSTRACT: The importance of the left-handed polyproline II (PPII) helical conformation has recently ...
Left-handed polyproline II helices (PPII) are contiguous elements of protein secondary structure in ...
In the last years polyproline II (PPII) structure has been demonstrated to be essential to biologica...
Our investigation was focused on a secondary protein structure called polyproline I. This helical st...
About half of the globular proteins are composed of regular secondary structures, alpha-helices, and...
International audienceAbout half of the globular proteins are composed of regular secondary structur...
The polyproline II (PPII) conformation of protein backbone is an important secondary structure type....
Circular dichroism (CD) spectroscopy is a valuable method for defining canonical secondary structure...
PolyProline-II (PPII) helices are defined as a continuous stretch of a protein chain in which the co...
The amyloidogenic prefibrillar partially denatured intermediate of human lysozyme, prepared by heati...
The left-handed polyproline II (PPII) helix gives rise to a circular dichroism spectrum that is rema...
UV resonance Raman (UVR) spectroscopy was used to examine the solution conformation of poly-l-lysine...
The polyproline type II (PPII) helix is a prevalent conformation in both folded and unfolded protein...
UV resonance Raman (UVR) spectroscopy was used to examine the solution conformation of poly-L-lysine...
ABSTRACT: The importance of the left-handed polyproline II (PPII) helical conformation has recently ...
Left-handed polyproline II helices (PPII) are contiguous elements of protein secondary structure in ...
In the last years polyproline II (PPII) structure has been demonstrated to be essential to biologica...
Our investigation was focused on a secondary protein structure called polyproline I. This helical st...
About half of the globular proteins are composed of regular secondary structures, alpha-helices, and...
International audienceAbout half of the globular proteins are composed of regular secondary structur...
The polyproline II (PPII) conformation of protein backbone is an important secondary structure type....
Circular dichroism (CD) spectroscopy is a valuable method for defining canonical secondary structure...
PolyProline-II (PPII) helices are defined as a continuous stretch of a protein chain in which the co...
The amyloidogenic prefibrillar partially denatured intermediate of human lysozyme, prepared by heati...
The left-handed polyproline II (PPII) helix gives rise to a circular dichroism spectrum that is rema...
UV resonance Raman (UVR) spectroscopy was used to examine the solution conformation of poly-l-lysine...
The polyproline type II (PPII) helix is a prevalent conformation in both folded and unfolded protein...
UV resonance Raman (UVR) spectroscopy was used to examine the solution conformation of poly-L-lysine...
ABSTRACT: The importance of the left-handed polyproline II (PPII) helical conformation has recently ...
Left-handed polyproline II helices (PPII) are contiguous elements of protein secondary structure in ...