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Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants

[Image: see text] Five different mutants of [Leu-5] Enkephalin YGGFL peptide have been investigated for fibril formation propensities. The early oligomer structures have been probed with a combination of ion-mobility mass spectrometry and computational modeling. The two peptides YVIFL and YVVFL form...

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Autores principales: Do, Thanh D., LaPointe, Nichole E., Sangwan, Smriti, Teplow, David B., Feinstein, Stuart C., Sawaya, Michael R., Eisenberg, David S., Bowers, Michael T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4084844/
https://www.ncbi.nlm.nih.gov/pubmed/24915112
http://dx.doi.org/10.1021/jp502473s
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author Do, Thanh D.
LaPointe, Nichole E.
Sangwan, Smriti
Teplow, David B.
Feinstein, Stuart C.
Sawaya, Michael R.
Eisenberg, David S.
Bowers, Michael T.
author_facet Do, Thanh D.
LaPointe, Nichole E.
Sangwan, Smriti
Teplow, David B.
Feinstein, Stuart C.
Sawaya, Michael R.
Eisenberg, David S.
Bowers, Michael T.
author_sort Do, Thanh D.
collection PubMed
description [Image: see text] Five different mutants of [Leu-5] Enkephalin YGGFL peptide have been investigated for fibril formation propensities. The early oligomer structures have been probed with a combination of ion-mobility mass spectrometry and computational modeling. The two peptides YVIFL and YVVFL form oligomers and amyloid-like fibrils. YVVFV shows an early stage oligomer distribution similar to those of the previous two, but amyloid-like aggregates are less abundant. Atomic resolution X-ray structures of YVVFV show two different modes of interactions at the dry interface between steric zippers and pairs of antiparallel β-sheets, but both are less favorable than the packing motif found in YVVFL. Both YVVFV and YVVFL can form a Class 6 steric zipper. However, in YVVFV, the strands between mating sheets are parallel to each other and in YVVFL they are antiparallel. The overall data highlight the importance of structurally characterizing high order oligomers within oligomerization pathways in studies of nanostructure assembly.
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spelling pubmed-40848442015-06-10 Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants Do, Thanh D. LaPointe, Nichole E. Sangwan, Smriti Teplow, David B. Feinstein, Stuart C. Sawaya, Michael R. Eisenberg, David S. Bowers, Michael T. J Phys Chem B [Image: see text] Five different mutants of [Leu-5] Enkephalin YGGFL peptide have been investigated for fibril formation propensities. The early oligomer structures have been probed with a combination of ion-mobility mass spectrometry and computational modeling. The two peptides YVIFL and YVVFL form oligomers and amyloid-like fibrils. YVVFV shows an early stage oligomer distribution similar to those of the previous two, but amyloid-like aggregates are less abundant. Atomic resolution X-ray structures of YVVFV show two different modes of interactions at the dry interface between steric zippers and pairs of antiparallel β-sheets, but both are less favorable than the packing motif found in YVVFL. Both YVVFV and YVVFL can form a Class 6 steric zipper. However, in YVVFV, the strands between mating sheets are parallel to each other and in YVVFL they are antiparallel. The overall data highlight the importance of structurally characterizing high order oligomers within oligomerization pathways in studies of nanostructure assembly. American Chemical Society 2014-06-10 2014-07-03 /pmc/articles/PMC4084844/ /pubmed/24915112 http://dx.doi.org/10.1021/jp502473s Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Do, Thanh D.
LaPointe, Nichole E.
Sangwan, Smriti
Teplow, David B.
Feinstein, Stuart C.
Sawaya, Michael R.
Eisenberg, David S.
Bowers, Michael T.
Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
title Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
title_full Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
title_fullStr Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
title_full_unstemmed Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
title_short Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
title_sort factors that drive peptide assembly from native to amyloid structures: experimental and theoretical analysis of [leu-5]-enkephalin mutants
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4084844/
https://www.ncbi.nlm.nih.gov/pubmed/24915112
http://dx.doi.org/10.1021/jp502473s
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