Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, known as amyloids. It is thought that oligomers and/ or amyloid fibrils formed from human islet amyloid polypeptide (hIAPP or amylin) cause cell death by membrane damage. The molecular structure of hIAPP amyloid fibrils is dominated by beta-sheet structure, as probed with conventional infrared and Raman vibrational spectroscopy. However, with these techniques it is not possible to distinguish between the core and the surface structure of the fibrils. Since the fibril surface crucially affects amyloid toxicity, it is essential to know its structure. Here the surface molecular structure and amino acid residue composition of hIAPP fibrils are speci...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, kno...
Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, kno...
Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, kno...
The formation of insoluble β-sheet-rich protein structures known as amyloid fibrils is associated wi...
AbstractAmyloid fibrils are β-sheet-rich protein aggregates that are strongly associated with a vari...
Fibril formation implies the conversion of a protein’s native secondary structure and is associated ...
Amyloid fibrils associated with many neurodegenerative diseases are the most intriguing targets of m...
AbstractAmyloid fibrils are β-sheet-rich protein aggregates that are strongly associated with a vari...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, kno...
Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, kno...
Type 2 diabetes mellitus is characterized by the pathological deposition of fibrillized protein, kno...
The formation of insoluble β-sheet-rich protein structures known as amyloid fibrils is associated wi...
AbstractAmyloid fibrils are β-sheet-rich protein aggregates that are strongly associated with a vari...
Fibril formation implies the conversion of a protein’s native secondary structure and is associated ...
Amyloid fibrils associated with many neurodegenerative diseases are the most intriguing targets of m...
AbstractAmyloid fibrils are β-sheet-rich protein aggregates that are strongly associated with a vari...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Amyloid fibrils are a large class of self-assembled protein aggregates that are formed from unstruct...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Identifying the structures of membrane bound proteins is critical to understanding their function in...
Identifying the structures of membrane bound proteins is critical to understanding their function in...