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ß2-Type Amyloidlike Fibrils of Poly-l-glutamic Acid Convert into Long, Highly Ordered Helices upon Dissolution in Dimethyl Sulfoxide.
Berbec, Sylwia; Dec, Robert; Molodenskiy, Dmitry; Wielgus-Kutrowska, Beata; Johannessen, Christian; Hernik-Magon, Agnieszka; Tobias, Fernando; Bzowska, Agnieszka; Scibisz, Grzegorz; Keiderling, Timothy A; Svergun, Dmitri; Dzwolak, Wojciech.
Afiliação
  • Berbec S; Faculty of Chemistry, Biological and Chemical Research Centre , University of Warsaw , 1 Pasteur Street , 02-093 Warsaw , Poland.
  • Dec R; Faculty of Chemistry, Biological and Chemical Research Centre , University of Warsaw , 1 Pasteur Street , 02-093 Warsaw , Poland.
  • Molodenskiy D; European Molecular Biology Laboratory, Hamburg Outstation, c/o DESY , Hamburg 22607 , Germany.
  • Wielgus-Kutrowska B; Division of Biophysics, Institute of Experimental Physics, Faculty of Physics , University of Warsaw , Warsaw 02-093 , Poland.
  • Johannessen C; Department of Chemistry , University of Antwerp , 2020 Antwerp , Belgium.
  • Hernik-Magon A; Faculty of Chemistry, Biological and Chemical Research Centre , University of Warsaw , 1 Pasteur Street , 02-093 Warsaw , Poland.
  • Tobias F; Department of Chemistry , University of Illinois at Chicago , Chicago 60607-7061 , United States.
  • Bzowska A; Division of Biophysics, Institute of Experimental Physics, Faculty of Physics , University of Warsaw , Warsaw 02-093 , Poland.
  • Scibisz G; Faculty of Chemistry, Biological and Chemical Research Centre , University of Warsaw , 1 Pasteur Street , 02-093 Warsaw , Poland.
  • Keiderling TA; Department of Chemistry , University of Illinois at Chicago , Chicago 60607-7061 , United States.
  • Svergun D; European Molecular Biology Laboratory, Hamburg Outstation, c/o DESY , Hamburg 22607 , Germany.
  • Dzwolak W; Faculty of Chemistry, Biological and Chemical Research Centre , University of Warsaw , 1 Pasteur Street , 02-093 Warsaw , Poland.
J Phys Chem B ; 122(50): 11895-11905, 2018 12 20.
Article em En | MEDLINE | ID: mdl-30427196
ABSTRACT
Replacing water with dimethyl sulfoxide (DMSO) completely reshapes the free-energy landscapes of solvated proteins. In DMSO, a powerful hydrogen-bond (HB) acceptor, formation of HBs between backbone NH groups and solvent is favored over HBs involving protein's carbonyl groups. This entails a profound structural disruption of globular proteins and proteinaceous aggregates (e.g., amyloid fibrils) upon transfer to DMSO. Here, we investigate an unusual DMSO-induced conformational transition of ß2-amyloid fibrils from poly-l-glutamic acid (PLGA). The infrared spectra of ß2-PLGA dissolved in DMSO lack the typical features associated with disordered conformation that are observed when amyloid fibrils from other proteins are dispersed in DMSO. Instead, the frequency and unusual narrowness of the amide I band imply the presence of highly ordered helical structures, which is supported by complementary methods, including vibrational circular dichroism and Raman optical activity. We argue that the conformation most consistent with the spectroscopic data is that of a PLGA chain essentially lacking nonhelical segments such as bends that would provide DMSO acceptors with direct access to the backbone. A structural study of DMSO-dissolved ß2-PLGA by synchrotron small-angle X-ray scattering reveals the presence of long uninterrupted helices lending direct support to this hypothesis. Our study highlights the dramatic effects that solvation may have on conformational transitions of large polypeptide assemblies.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ácido Poliglutâmico / Dimetil Sulfóxido / Amiloide Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Ácido Poliglutâmico / Dimetil Sulfóxido / Amiloide Idioma: En Ano de publicação: 2018 Tipo de documento: Article