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Full-Text Articles in Physical Sciences and Mathematics
Biophysical Investigation Of Amyloid Formation And Their Prion-Like Self-Replication, Mentor Mulaj
Biophysical Investigation Of Amyloid Formation And Their Prion-Like Self-Replication, Mentor Mulaj
USF Tampa Graduate Theses and Dissertations
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, are associated with a significant number of human pathologies including Alzheimer’s disease, Parkinson’s disease, prion diseases, type II diabetes, and senile systematic or dialysis-related amyloidoses. The broader objective of my research is to identify the basic mechanisms regulating nucleation and growth of amyloid fibrils. There is increasing evidence that amyloid formation may proceed along at least two distinct assembly pathways for the formation of rigid fibrils. One pathway involves the nucleated polymerization of the characteristic rigid fibrils from partially denatured monomers and the other proceeds via …
Physical Models Of Amyloid Fibril Assembly, Shannon Elizabeth Hill
Physical Models Of Amyloid Fibril Assembly, Shannon Elizabeth Hill
USF Tampa Graduate Theses and Dissertations
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of an increasing number of human disorders, including Parkinson's disease, Alzheimer's disease and even type II diabetes. The broader objective of my research is to unravel the basic mechanisms that initiate and regulate fibril formation by amyloidogenic proteins. This objective is significant because even basic aspects of how fibril formation proceeds from a soluble, monomeric protein to an insoluble amyloid fibril remain much debated. Furthermore, there is increasingly strong evidence suggesting that intermediates of the aggregation process, with properties distinct from those of mature fibrils, …