نتایج جستجو برای: amyloid fibrils

تعداد نتایج: 41968  

2010
Luc Bousset Jonathan Bonnefoy Yannick Sourigues Frank Wien Ronald Melki

BACKGROUND The aggregation of the baker's yeast prion Ure2p is at the origin of the [URE3] trait. The Q- and N-rich N-terminal part of the protein is believed to drive Ure2p assembly into fibrils of amyloid nature and the fibrillar forms of full-length Ure2p and its N-terminal part generated in vitro have been shown to induce [URE3] occurrence when introduced into yeast cells. This has led to t...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2006
Kentaro Iwata Toshimichi Fujiwara Yoh Matsuki Hideo Akutsu Satoshi Takahashi Hironobu Naiki Yuji Goto

Understanding the structure and formation of amyloid fibrils, the filamentous aggregates of proteins and peptides, is crucial in preventing diseases caused by their deposition and, moreover, for obtaining further insight into the mechanism of protein folding and misfolding. We have combined solid-state NMR, x-ray fiber diffraction, and atomic force microscopy to reveal the 3D structure of amylo...

2017
Aditya Iyer Steven J Roeters Vladimir Kogan Sander Woutersen Mireille M A E Claessens Vinod Subramaniam

C-terminal truncations of monomeric wild-type alpha-synuclein (henceforth WT-αS) have been shown to enhance the formation of amyloid aggregates both in vivo and in vitro and have been associated with accelerated progression of Parkinson's disease (PD). The correlation with PD may not solely be a result of faster aggregation, but also of which fibril polymorphs are preferentially formed when the...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2003
Débora Foguel Marisa C Suarez Astria D Ferrão-Gonzales Thais C R Porto Leonardo Palmieri Carla M Einsiedler Leonardo R Andrade Hilal A Lashuel Peter T Lansbury Jeffery W Kelly Jerson L Silva

Protein misfolding and aggregation have been linked to several human diseases, including Alzheimer's disease, Parkinson's disease, and systemic amyloidosis, by mechanisms that are not yet completely understood. The hallmark of most of these diseases is the formation of highly ordered and beta-sheet-rich aggregates referred to as amyloid fibrils. Fibril formation by WT transthyretin (TTR) or TTR...

2011
Valerie L Anderson Watt W Webb

BACKGROUND Fluorescent tags, including small organic molecules and fluorescent proteins, enable the localization of protein molecules in biomedical research experiments. However, the use of these labels may interfere with the formation of larger-scale protein structures such as amyloid aggregates. Therefore, we investigate the effects of some commonly used fluorescent tags on the morphologies o...

2015
Alba Espargaró Maria Antònia Busquets Joan Estelrich Raimon Sabate

Amyloids are non-crystalline and insoluble, which imply that the classical structural biology tools, ie, X-ray crystallography and solution nuclear magnetic resonance (NMR), are not suitable for their analysis. In the last years, solid-state NMR (ssNMR) has emerged as an alternative tool to decrypt the structural signatures of amyloid fibrils, providing major contributions to our understanding ...

Journal: :Nanoscale 2015
C Bortolini N C Jones S V Hoffmann C Wang F Besenbacher M Dong

Amyloid and amyloid-like fibrils represent a generic class of highly ordered nanostructures that are implicated in some of the most fatal neurodegenerative diseases. On the other hand, amyloids, by possessing outstanding mechanical robustness, have also been successfully employed as functional biomaterials. For these reasons, physical and chemical factors driving fibril self-assembly and morpho...

Journal: :The Biochemical journal 1991
S R Nelson M Lyon J T Gallagher E A Johnson M B Pepys

Amyloid fibrils were isolated by extraction in water from the livers and spleens of four patients who had died of monoclonal, light-chain (AL)-type, systemic amyloidosis and one with reactive systemic, amyloid A protein (AA)-type amyloidosis. Each fibril preparation contained 1-2% by weight of glycosaminoglycan (GAG) which was tightly associated with the fibrils and not just co-isolated from th...

Journal: :Small 2015
Corianne C vandenAkker Tanja Deckert-Gaudig Michael Schleeger Krassimir P Velikov Volker Deckert Mischa Bonn Gijsje H Koenderink

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 β-sheet structure, as probed with conventional infrared and Raman...

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