Cargando…

A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin

LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram-positive organisms. Mutations to liaR can lead to antibiotic resistance to a variety of antibiotics including the cyclic lipopeptide daptomycin. LiaR is phosphorylated in response to membrane stress...

Descripción completa

Detalles Bibliográficos
Autores principales: Davlieva, Milya, Shi, Yiwen, Leonard, Paul G., Johnson, Troy A., Zianni, Michael R., Arias, Cesar A., Ladbury, John E., Shamoo, Yousif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4482077/
https://www.ncbi.nlm.nih.gov/pubmed/25897118
http://dx.doi.org/10.1093/nar/gkv321
_version_ 1782378381866696704
author Davlieva, Milya
Shi, Yiwen
Leonard, Paul G.
Johnson, Troy A.
Zianni, Michael R.
Arias, Cesar A.
Ladbury, John E.
Shamoo, Yousif
author_facet Davlieva, Milya
Shi, Yiwen
Leonard, Paul G.
Johnson, Troy A.
Zianni, Michael R.
Arias, Cesar A.
Ladbury, John E.
Shamoo, Yousif
author_sort Davlieva, Milya
collection PubMed
description LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram-positive organisms. Mutations to liaR can lead to antibiotic resistance to a variety of antibiotics including the cyclic lipopeptide daptomycin. LiaR is phosphorylated in response to membrane stress to regulate downstream target operons. Using DNA footprinting of the regions upstream of the liaXYZ and liaFSR operons we show that LiaR binds an extended stretch of DNA that extends beyond the proposed canonical consensus sequence suggesting a more complex level of regulatory control of target operons. We go on to determine the biochemical and structural basis for increased resistance to daptomycin by the adaptive mutation to LiaR (D191N) first identified from the pathogen Enterococcus faecalis S613. LiaR(D191N) increases oligomerization of LiaR to form a constitutively activated tetramer that has high affinity for DNA even in the absence of phosphorylation leading to increased resistance. Crystal structures of the LiaR DNA binding domain complexed to the putative consensus sequence as well as an adjoining secondary sequence show that upon binding, LiaR induces DNA bending that is consistent with increased recruitment of RNA polymerase to the transcription start site and upregulation of target operons.
format Online
Article
Text
id pubmed-4482077
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-44820772015-06-30 A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin Davlieva, Milya Shi, Yiwen Leonard, Paul G. Johnson, Troy A. Zianni, Michael R. Arias, Cesar A. Ladbury, John E. Shamoo, Yousif Nucleic Acids Res Structural Biology LiaR is a ‘master regulator’ of the cell envelope stress response in enterococci and many other Gram-positive organisms. Mutations to liaR can lead to antibiotic resistance to a variety of antibiotics including the cyclic lipopeptide daptomycin. LiaR is phosphorylated in response to membrane stress to regulate downstream target operons. Using DNA footprinting of the regions upstream of the liaXYZ and liaFSR operons we show that LiaR binds an extended stretch of DNA that extends beyond the proposed canonical consensus sequence suggesting a more complex level of regulatory control of target operons. We go on to determine the biochemical and structural basis for increased resistance to daptomycin by the adaptive mutation to LiaR (D191N) first identified from the pathogen Enterococcus faecalis S613. LiaR(D191N) increases oligomerization of LiaR to form a constitutively activated tetramer that has high affinity for DNA even in the absence of phosphorylation leading to increased resistance. Crystal structures of the LiaR DNA binding domain complexed to the putative consensus sequence as well as an adjoining secondary sequence show that upon binding, LiaR induces DNA bending that is consistent with increased recruitment of RNA polymerase to the transcription start site and upregulation of target operons. Oxford University Press 2015-05-19 2015-04-19 /pmc/articles/PMC4482077/ /pubmed/25897118 http://dx.doi.org/10.1093/nar/gkv321 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Structural Biology
Davlieva, Milya
Shi, Yiwen
Leonard, Paul G.
Johnson, Troy A.
Zianni, Michael R.
Arias, Cesar A.
Ladbury, John E.
Shamoo, Yousif
A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin
title A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin
title_full A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin
title_fullStr A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin
title_full_unstemmed A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin
title_short A variable DNA recognition site organization establishes the LiaR-mediated cell envelope stress response of enterococci to daptomycin
title_sort variable dna recognition site organization establishes the liar-mediated cell envelope stress response of enterococci to daptomycin
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4482077/
https://www.ncbi.nlm.nih.gov/pubmed/25897118
http://dx.doi.org/10.1093/nar/gkv321
work_keys_str_mv AT davlievamilya avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT shiyiwen avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT leonardpaulg avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT johnsontroya avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT ziannimichaelr avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT ariascesara avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT ladburyjohne avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT shamooyousif avariablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT davlievamilya variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT shiyiwen variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT leonardpaulg variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT johnsontroya variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT ziannimichaelr variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT ariascesara variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT ladburyjohne variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin
AT shamooyousif variablednarecognitionsiteorganizationestablishestheliarmediatedcellenvelopestressresponseofenterococcitodaptomycin