Skip to content
VuFind
    • English
    • Deutsch
    • Español
    • Français
    • Italiano
    • 日本語
    • Nederlands
    • Português
    • Português (Brasil)
    • 中文(简体)
    • 中文(繁體)
    • Türkçe
    • עברית
    • Gaeilge
    • Cymraeg
    • Ελληνικά
    • Català
    • Euskara
    • Русский
    • Čeština
    • Suomi
    • Svenska
    • polski
    • Dansk
    • slovenščina
    • اللغة العربية
    • বাংলা
    • Galego
    • Tiếng Việt
    • Hrvatski
    • हिंदी
    • Հայերէն
    • Українська
    • Sámegiella
    • Монгол
Advanced
  • Correction: Structure of an Mm...
  • Cite this
  • Text this
  • Email this
  • Print
  • Export Record
    • Export to RefWorks
    • Export to EndNoteWeb
    • Export to EndNote
  • Permanent link
Correction: Structure of an MmyB-Like Regulator from , Member of a New Transcription Factor Family Linked to Antibiotic Metabolism in Actinomycetes.

Correction: Structure of an MmyB-Like Regulator from , Member of a New Transcription Factor Family Linked to Antibiotic Metabolism in Actinomycetes.

Bibliographic Details
Main Authors: Qingping Xu, Gilles P. van Wezel, Hsiu-Ju Chiu, Lukasz Jaroszewski, Heath E. Klock, Mark W. Knuth, Mitchell D. Miller, Scott A. Lesley, Adam Godzik, Marc-André Elsliger, Ashley M. Deacon, Ian A. Wilson
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3413718
  • Holdings
  • Description
  • Similar Items
  • Staff View

Internet

http://europepmc.org/articles/PMC3413718

Similar Items

  • Structure of an MmyB-like regulator from C. aurantiacus, member of a new transcription factor family linked to antibiotic metabolism in actinomycetes.
    by: Qingping Xu, et al.
    Published: (2012-01-01)
  • Correction: Structure of an MmyB-Like Regulator from C. aurantiacus, Member of a New Transcription Factor Family Linked to Antibiotic Metabolism in Actinomycetes
    Published: (2012-01-01)
  • Structural and sequence analysis of imelysin-like proteins implicated in bacterial iron uptake.
    by: Qingping Xu, et al.
    Published: (2011-01-01)
  • Insights into Substrate Specificity of NlpC/P60 Cell Wall Hydrolases Containing Bacterial SH3 Domains
    by: Qingping Xu, et al.
    Published: (2015-10-01)
  • Structure of a novel winged-helix like domain from human NFRKB protein.
    by: Abhinav Kumar, et al.
    Published: (2012-01-01)

Search Options

  • Search History
  • Advanced Search

Find More

  • Browse the Catalog
  • Browse Alphabetically
  • Explore Channels
  • Course Reserves
  • New Items

Need Help?

  • Search Tips
  • Ask a Librarian
  • FAQs