Peanut agglutinin is a homotetrameric nonglycosylated protein. The protein has a unique open quaternary structure. Molecular dynamics simulations have been employed to follow the atomistic details of its unfolding at different temperatures. The early events of the deoligomerization of the protein have been elucidated in the present study. Simulation trajectories of the monomer as well as those of the tetramer have been compared and the tetramer is found to be substantially more stable than its monomeric counterpart. The tetramer shows retention of most of its secondary structure but considerable loss of the tertiary structure at high temperature. This observation implies the generation of a molten globule-like intermediate in the later stag...
Peanut agglutinin (PNA) is a homotetrameric protein with a unique open quaternary structure. PNA sho...
To investigate the molecular mechanisms involved in the very initial stages of protein unfolding, we...
To investigate the molecular mechanisms involved in the very initial stages of protein unfolding, we...
Peanut agglutinin is a homotetrameric nonglycosylated protein. The protein has a unique open quater...
Peanut agglutinin is a homotetrameric legume lectin. The crystal structure of peanut agglutinin show...
Peanut agglutinin is a homotetrameric legume lectin. The crystal structure of peanut agglutinin show...
The legume lectins are widely used as a model system for studying protein-carbohydrate and protein-p...
Glycosylation has been recognized as one of the most prevalent and complex post-translational modifi...
The thesis entitled “Folding studies on Peanut Agglutinin: A lectin with an unusual quatern...
Peanut lectin binds T-antigen $[Gal\beta (1–3)GalNAc]$ with an order of magnitude higher affinity th...
Peanut Agglutinin (PNA) is a homotetrameric protein with a very unusual open quaternary structure. D...
These studies attempt to characterize the molten globule-like intermediate in the unfolding pathway ...
Peanut lectin binds T-antigen [Galβ(1-3)GalNAc] with an order of magnitude higher affinity than it b...
Banana lectin (Banlec) is a homodimeric non-glycosylated protein. It exhibits the b-prism I structur...
Banana lectin (Banlec) is a homodimeric non-glycosylated protein. It exhibits the β-prism I structur...
Peanut agglutinin (PNA) is a homotetrameric protein with a unique open quaternary structure. PNA sho...
To investigate the molecular mechanisms involved in the very initial stages of protein unfolding, we...
To investigate the molecular mechanisms involved in the very initial stages of protein unfolding, we...
Peanut agglutinin is a homotetrameric nonglycosylated protein. The protein has a unique open quater...
Peanut agglutinin is a homotetrameric legume lectin. The crystal structure of peanut agglutinin show...
Peanut agglutinin is a homotetrameric legume lectin. The crystal structure of peanut agglutinin show...
The legume lectins are widely used as a model system for studying protein-carbohydrate and protein-p...
Glycosylation has been recognized as one of the most prevalent and complex post-translational modifi...
The thesis entitled “Folding studies on Peanut Agglutinin: A lectin with an unusual quatern...
Peanut lectin binds T-antigen $[Gal\beta (1–3)GalNAc]$ with an order of magnitude higher affinity th...
Peanut Agglutinin (PNA) is a homotetrameric protein with a very unusual open quaternary structure. D...
These studies attempt to characterize the molten globule-like intermediate in the unfolding pathway ...
Peanut lectin binds T-antigen [Galβ(1-3)GalNAc] with an order of magnitude higher affinity than it b...
Banana lectin (Banlec) is a homodimeric non-glycosylated protein. It exhibits the b-prism I structur...
Banana lectin (Banlec) is a homodimeric non-glycosylated protein. It exhibits the β-prism I structur...
Peanut agglutinin (PNA) is a homotetrameric protein with a unique open quaternary structure. PNA sho...
To investigate the molecular mechanisms involved in the very initial stages of protein unfolding, we...
To investigate the molecular mechanisms involved in the very initial stages of protein unfolding, we...