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Authentic hSAA related with AA amyloidosis: New method of purification, folding and amyloid polymorphism.
Katina, Natalya; Marchenkov, Victor; Lapteva, Yulia; Balobanov, Vitalii; Ilyina, Nelly; Ryabova, Natalya; Evdokimov, Stanislav; Suvorina, Mariya; Surin, Alexey; Glukhov, Anatoly.
Afiliação
  • Katina N; Branch of the Institute of Bioorganic Chemistry RAS, Prospekt Nauki, 6, Pushchino, 142290, Russia; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: nkatina@phys.protres.ru.
  • Marchenkov V; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: march@phys.protres.ru.
  • Lapteva Y; Institute for Biological Instrumentation RAS, Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences, Nauki av., 3, Pushchino, 142290, Russia. Electronic address: yulia.s.lapteva@gmail.com.
  • Balobanov V; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: balobanov@phys.protres.ru.
  • Ilyina N; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: nelly.ilyina@mail.ru.
  • Ryabova N; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: ryabova@phys.protres.ru.
  • Evdokimov S; JSC BIOCAD, Svyazi, 34-A, Saint-Petersburg, 198515, Russia. Electronic address: evdokimov@biocad.ru.
  • Suvorina M; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: marrruko@yandex.ru.
  • Surin A; Branch of the Institute of Bioorganic Chemistry RAS, Prospekt Nauki, 6, Pushchino, 142290, Russia; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia; State Research Center for Applied Microbiology and Biotechnology, Kvartal A, 24, Obolensk, 142279, Russia. Electronic add
  • Glukhov A; Institute of Protein Research RAS, Institutskaya, 4, Pushchino, 142290, Russia. Electronic address: gluktol@gmail.com.
Biophys Chem ; 313: 107293, 2024 Oct.
Article em En | MEDLINE | ID: mdl-39004034
ABSTRACT
The secondary amyloidosis of humans is caused by the formation of hSAA fibrils in different organs and tissues. Until now hSAA was thought to have low amyloidogenicity in vitro and the majority of SAA aggregation experiments were done using murine protein or hSAA non-pathogenic isoforms. In this work a novel purification method for recombinant hSAA was introduced, enabling to obtain monomeric protein capable of amyloid aggregation under physiological conditions. The stability and amyloid aggregation of hSAA have been examined using a wide range of biophysical methods. It was shown that the unfolding of monomeric protein occurs through the formation of molten globule-like intermediate state. Polymorphism of hSAA amyloids was discovered to depend on the solution pH. At pH 8.5, rapid protein aggregation occurs, which leads to the formation of twisted short fibrils. Even a slight decrease of the pH to 7.8 results in delayed aggregation with the formation of long straight amyloids composed of laterally associated protofilaments. Limited proteolysis experiments have shown that full-length hSAA is involved in the formation of intermolecular interactions in both amyloid polymorphs. The results obtained, and the experimental approach used in this study can serve as a basis for further research on the mechanism of authentic hSAA amyloid formation.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteína Amiloide A Sérica / Dobramento de Proteína / Amiloide / Amiloidose Limite: Humans Idioma: En Revista: Biophys Chem Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteína Amiloide A Sérica / Dobramento de Proteína / Amiloide / Amiloidose Limite: Humans Idioma: En Revista: Biophys Chem Ano de publicação: 2024 Tipo de documento: Article