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Study of cosolvent-induced α-chymotrypsin fibrillogenesis: Does protein surface hydrophobicity trigger early stages of aggregation reaction?
Authors
A Ahmad
A Cammers-Goodwin
+65 more
A Cao
A Coli
A Cooper
A Lorenzo
A Monji
AFSA Habeeb
BC Hummel
BI Kurganov
CR Cantor
D Canet
D Hamada
D Hong
D Howlett
D Morshedi
E Gazit
EDB Clark
F Chiti
G Plakoutsi
G Soldi
G Zettlmeissl
H Shoval
H Shoval
HA Khanova
HB Dixon
Hosnieh Soori
HT Wright
I Pallares
JC Janson
JCS Breitner
JM Mason
K Gast
K Verstraete
LN Arnaudov
LO Tjernberg
M Goodman
M Holley
M Pappolla
ME McGrath
Mojtaba Amani
MR Nilsson
MT Fisher
N Rezaei-Ghaleh
N Rezaei-Ghaleh
N Rezaei-Ghaleh
N Rezaei-Ghaleh
N Rezaei-Ghaleh
OH Lowry
R Eisert
R Khodarahmi
R Khodarahmi
R Khodarahmi
R Khodarahmi
R Khurana
R Sabate
R Walgers
R Yazdanparast
Reza Khodarahmi
S Meehan
SJ Hamodrakas
SL Snyder
T Cohen
V Bellotti
VN Uversky
VN Uversky
Y Porat
Publication date
19 June 1388
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
The misfolding of specific proteins is often associated with their assembly into fibrillar aggregates, commonly termed amyloid fibrils. Despite the many efforts expended to characterize amyloid formation in vitro, there is no deep knowledge about the environment (in which aggregation occurs) as well as mechanism of this type of protein aggregation. Alpha-chymotrypsin was recently driven toward amyloid aggregation by the addition of intermediate concentrations of trifluoroethanol. In the present study, approaches such as turbidimetric, thermodynamic, intrinsic fluorescence and quenching studies as well as chemical modification have been successfully used to elucidate the underlying role of hydrophobic interactions (involved in early stages of amyloid formation) in α-chymotrypsin-based experimental system. © 2009 Springer Science+Business Media, LLC
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ArUMS Digital Repository (سامانه اطلاعات زیست پزشکی و سلامت)
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oai:eprints.arums.ac.ir:1057
Last time updated on 12/07/2013
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Last time updated on 11/12/2019