نتایج جستجو برای: amyloid fibrils

تعداد نتایج: 41968  

Journal: :Biophysical journal 2003
Steffen P Graether Carolyn M Slupsky Brian D Sykes

Amyloid is associated with a number of diseases including Alzheimer's, Huntington's, Parkinson's, and the spongiform encephalopathies. Amyloid fibrils have been formed in vitro from both disease and nondisease related proteins, but the latter requires extremes of pH, heat, or the presence of a chaotropic agent. We show, using fluorescence spectroscopy, electron microscopy, and solid-state NMR s...

Journal: :Biomacromolecules 2014
Ian W Hamley Steven Kirkham Ashkan Dehsorkhi Valeria Castelletto Jozef Adamcik Raffaele Mezzenga Janne Ruokolainen Claudia Mazzuca Emanuela Gatto Mariano Venanzi Ernesto Placidi Panayiotis Bilalis Hermis Iatrou

Amyloid fibrils are formed by a model surfactant-like peptide (Ala)10-(His)6 containing a hexa-histidine tag. This peptide undergoes a remarkable two-step self-assembly process with two distinct critical aggregation concentrations (cac's), probed by fluorescence techniques. A micromolar range cac is ascribed to the formation of prefibrillar structures, whereas a millimolar range cac is associat...

2014
Weronika Surmacz-Chwedoruk Iwona Malka Łukasz Bożycki Hanna Nieznańska Wojciech Dzwolak

Formation of amyloid fibrils in vivo has been linked to disorders such as Alzheimer's disease and prion-associated transmissible spongiform encephalopathies. One of the characteristic features of amyloid fibrils is the high thermodynamic stability relative both to native and disordered states which is also thought to underlie the perplexingly remarkable heat resistance of prion infectivity. Her...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Lilia Milanesi Tania Sheynis Wei-Feng Xue Elena V Orlova Andrew L Hellewell Raz Jelinek Eric W Hewitt Sheena E Radford Helen R Saibil

Protein misfolding and aggregation cause serious degenerative conditions such as Alzheimer's, Parkinson, and prion diseases. Damage to membranes is thought to be one of the mechanisms underlying cellular toxicity of a range of amyloid assemblies. Previous studies have indicated that amyloid fibrils can cause membrane leakage and elicit cellular damage, and these effects are enhanced by fragment...

Journal: :Journal of molecular biology 2006
Erica Frare Maria F Mossuto Patrizia Polverino de Laureto Mireille Dumoulin Christopher M Dobson Angelo Fontana

Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathic systemic amyloidosis. In vitro, wild-type human and hen lysozyme, and the amyloidogenic mutants can be induced to form amyloid fibrils when incubated under appropriate conditions. In this study, fibrils of wild-type human lysozyme formed at low pH have been analyzed by a combination of limited ...

Journal: :Journal of the American Chemical Society 2011
Józef R Lewandowski Patrick C A van der Wel Mike Rigney Nikolaus Grigorieff Robert G Griffin

The molecular structure of amyloid fibrils and the mechanism of their formation are of substantial medical and biological importance, but present an ongoing experimental and computational challenge. An early high-resolution view of amyloid-like structure was obtained on amyloid-like crystals of a small fragment of the yeast prion protein Sup35p: the peptide GNNQQNY. As GNNQQNY also forms amyloi...

Journal: :The Journal of Biological Chemistry 2008
Thomas R. Jahn Glenys A. Tennent Sheena E. Radford

Misfolding and aggregation of normally soluble proteins into amyloid fibrils and their deposition and accumulation underlies a variety of clinically significant diseases. Fibrillar aggregates with amyloid-like properties can also be generated in vitro from pure proteins and peptides, including those not known to be associated with amyloidosis. Whereas biophysical studies of amyloid-like fibrils...

Journal: :The Journal of biological chemistry 2011
Kotaro Yanagi Mizue Ashizaki Hisashi Yagi Kazumasa Sakurai Young-Ho Lee Yuji Goto

Although amyloid fibrils deposit with various proteins, the comprehensive mechanism by which they form remains unclear. We studied the formation of fibrils of human islet amyloid polypeptide associated with type II diabetes in the presence of various concentrations of 1,1,1,3,3,3-hexafluoroisopropanol (HFIP) under acidic and neutral pH conditions using CD, amyloid-specific thioflavin T fluoresc...

Journal: :Biochemistry 2009
Anna Loksztejn Wojciech Dzwolak

The enormous molecular weight complicates detailed structural studies of amyloid fibrils and obscures identification of biologically active forms of protein aggregates in amyloid-related diseases. Here we show that aqueous solutions of dimethyl sulfoxide (DMSO) solubilize insulin fibrils while maintaining their beta-pleated structure. This is accompanied by a marked decrease in the fluorescence...

2003
Lynmarie K. Thompson

P roteins adopt an amazing array of sequence-dependent structures that enable them to perform the many chemical functions critical to life. Over the past decade, however, it has become clear that many different protein sequences can also form misfolded, insoluble aggregates known as amyloid fibrils, with common structural elements. Amyloid fibrils appear to be involved in a number of diseases, ...

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