Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis
Aggregation is sequence-specific and nucleated by short aggregating protein segments (APR). Here authors use a multidisciplinary approach to show that in E.coli some frequently occurring APRs lead to protein aggregation and ultimately bacterial cell death, which could serve as antibacterial strategy...
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Nature Portfolio
2018
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oai:doaj.org-article:e099418a872446eeb04f67443f1e8e5e2021-12-02T14:40:30ZAggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis10.1038/s41467-018-03131-02041-1723https://doaj.org/article/e099418a872446eeb04f67443f1e8e5e2018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03131-0https://doaj.org/toc/2041-1723Aggregation is sequence-specific and nucleated by short aggregating protein segments (APR). Here authors use a multidisciplinary approach to show that in E.coli some frequently occurring APRs lead to protein aggregation and ultimately bacterial cell death, which could serve as antibacterial strategy.Ladan KhodaparastLaleh KhodaparastRodrigo GallardoNikolaos N. LourosEmiel MichielsReshmi RamakrishnanMeine RamakersFilip ClaesLydia YoungMohammad ShahrooeiHannah WilkinsonMatyas DesagerWubishet Mengistu TadesseK. Peter R. NilssonPer HammarströmAbram AertsenSebastien CarpentierJohan Van EldereFrederic RousseauJoost SchymkowitzNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-15 (2018) |
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Science Q Ladan Khodaparast Laleh Khodaparast Rodrigo Gallardo Nikolaos N. Louros Emiel Michiels Reshmi Ramakrishnan Meine Ramakers Filip Claes Lydia Young Mohammad Shahrooei Hannah Wilkinson Matyas Desager Wubishet Mengistu Tadesse K. Peter R. Nilsson Per Hammarström Abram Aertsen Sebastien Carpentier Johan Van Eldere Frederic Rousseau Joost Schymkowitz Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
description |
Aggregation is sequence-specific and nucleated by short aggregating protein segments (APR). Here authors use a multidisciplinary approach to show that in E.coli some frequently occurring APRs lead to protein aggregation and ultimately bacterial cell death, which could serve as antibacterial strategy. |
format |
article |
author |
Ladan Khodaparast Laleh Khodaparast Rodrigo Gallardo Nikolaos N. Louros Emiel Michiels Reshmi Ramakrishnan Meine Ramakers Filip Claes Lydia Young Mohammad Shahrooei Hannah Wilkinson Matyas Desager Wubishet Mengistu Tadesse K. Peter R. Nilsson Per Hammarström Abram Aertsen Sebastien Carpentier Johan Van Eldere Frederic Rousseau Joost Schymkowitz |
author_facet |
Ladan Khodaparast Laleh Khodaparast Rodrigo Gallardo Nikolaos N. Louros Emiel Michiels Reshmi Ramakrishnan Meine Ramakers Filip Claes Lydia Young Mohammad Shahrooei Hannah Wilkinson Matyas Desager Wubishet Mengistu Tadesse K. Peter R. Nilsson Per Hammarström Abram Aertsen Sebastien Carpentier Johan Van Eldere Frederic Rousseau Joost Schymkowitz |
author_sort |
Ladan Khodaparast |
title |
Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
title_short |
Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
title_full |
Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
title_fullStr |
Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
title_full_unstemmed |
Aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
title_sort |
aggregating sequences that occur in many proteins constitute weak spots of bacterial proteostasis |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/e099418a872446eeb04f67443f1e8e5e |
work_keys_str_mv |
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