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Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B

[Image: see text] Proline residues play a prominent role in protein folding and aggregation. We investigated the influence of single prolines and their combination on oligomerization and the amyloid fibrillation reaction of human stefin B (stB). The proline mutants influenced the distribution of oli...

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Autores principales: Hasanbašić, Samra, Taler-Verčič, Ajda, Puizdar, Vida, Stoka, Veronika, Tušek Žnidarič, Magda, Vilfan, Andrej, Berbić, Selma, Žerovnik, Eva
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6727212/
https://www.ncbi.nlm.nih.gov/pubmed/30924329
http://dx.doi.org/10.1021/acschemneuro.8b00621
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author Hasanbašić, Samra
Taler-Verčič, Ajda
Puizdar, Vida
Stoka, Veronika
Tušek Žnidarič, Magda
Vilfan, Andrej
Berbić, Selma
Žerovnik, Eva
author_facet Hasanbašić, Samra
Taler-Verčič, Ajda
Puizdar, Vida
Stoka, Veronika
Tušek Žnidarič, Magda
Vilfan, Andrej
Berbić, Selma
Žerovnik, Eva
author_sort Hasanbašić, Samra
collection PubMed
description [Image: see text] Proline residues play a prominent role in protein folding and aggregation. We investigated the influence of single prolines and their combination on oligomerization and the amyloid fibrillation reaction of human stefin B (stB). The proline mutants influenced the distribution of oligomers between monomers, dimers, and tetramers as shown by the size-exclusion chromatography. Only P74S showed higher oligomers, reminiscent of the molten globule reported previously for the P74S of stB-Y31 variant. The proline mutants also inhibited to various degree the amyloid fibrillation reaction. At 30 and 37 °C, inhibition was complete for the P74S single mutant, two double mutants (P6L P74S and P74S P79S), and for the triple mutant P6L P11S P74S. At 30 °C the single mutant P6L completely inhibited the reaction, while P11S and P79S formed amyloid fibrils with a prolonged lag phase. P36D did not show a lag phase, reminiscent of a downhill polymerization model. At 37 °C in addition to P36D, P11S, and P79S, P6L and P11S P74S also started to fibrillate; however, the yield of the fibrils was much lower than that of the wild-type protein as judged by transmission electron microscopy. Thus, Pro 74 cis/trans isomerization proves to be the key event, acting as a switch toward an amyloid transition. Using our previous model of nucleation and growth, we simulated the kinetics of all the mutants that exhibited sigmoidal fibrillation curves. To our surprise, the nucleation phase was most affected by Pro cis/trans isomerism, rather than the fibril elongation phase.
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spelling pubmed-67272122019-09-06 Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B Hasanbašić, Samra Taler-Verčič, Ajda Puizdar, Vida Stoka, Veronika Tušek Žnidarič, Magda Vilfan, Andrej Berbić, Selma Žerovnik, Eva ACS Chem Neurosci [Image: see text] Proline residues play a prominent role in protein folding and aggregation. We investigated the influence of single prolines and their combination on oligomerization and the amyloid fibrillation reaction of human stefin B (stB). The proline mutants influenced the distribution of oligomers between monomers, dimers, and tetramers as shown by the size-exclusion chromatography. Only P74S showed higher oligomers, reminiscent of the molten globule reported previously for the P74S of stB-Y31 variant. The proline mutants also inhibited to various degree the amyloid fibrillation reaction. At 30 and 37 °C, inhibition was complete for the P74S single mutant, two double mutants (P6L P74S and P74S P79S), and for the triple mutant P6L P11S P74S. At 30 °C the single mutant P6L completely inhibited the reaction, while P11S and P79S formed amyloid fibrils with a prolonged lag phase. P36D did not show a lag phase, reminiscent of a downhill polymerization model. At 37 °C in addition to P36D, P11S, and P79S, P6L and P11S P74S also started to fibrillate; however, the yield of the fibrils was much lower than that of the wild-type protein as judged by transmission electron microscopy. Thus, Pro 74 cis/trans isomerization proves to be the key event, acting as a switch toward an amyloid transition. Using our previous model of nucleation and growth, we simulated the kinetics of all the mutants that exhibited sigmoidal fibrillation curves. To our surprise, the nucleation phase was most affected by Pro cis/trans isomerism, rather than the fibril elongation phase. American Chemical Society 2019-03-29 /pmc/articles/PMC6727212/ /pubmed/30924329 http://dx.doi.org/10.1021/acschemneuro.8b00621 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Hasanbašić, Samra
Taler-Verčič, Ajda
Puizdar, Vida
Stoka, Veronika
Tušek Žnidarič, Magda
Vilfan, Andrej
Berbić, Selma
Žerovnik, Eva
Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B
title Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B
title_full Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B
title_fullStr Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B
title_full_unstemmed Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B
title_short Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B
title_sort prolines affect the nucleation phase of amyloid fibrillation reaction; mutational analysis of human stefin b
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6727212/
https://www.ncbi.nlm.nih.gov/pubmed/30924329
http://dx.doi.org/10.1021/acschemneuro.8b00621
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