Warning: mkdir(): Permission denied in /home/virtual/lib/view_data.php on line 81

Warning: fopen(upload/ip_log/ip_log_2024-09.txt): failed to open stream: No such file or directory in /home/virtual/lib/view_data.php on line 83

Warning: fwrite() expects parameter 1 to be resource, boolean given in /home/virtual/lib/view_data.php on line 84
Gly184 of the Escherichia coli cAMP receptor protein provides optimal context for both DNA binding and RNA polymerase interaction
Skip Navigation
Skip to contents

Journal of Microbiology : Journal of Microbiology

OPEN ACCESS
SEARCH
Search

Articles

Page Path
HOME > J. Microbiol > Volume 55(10); 2017 > Article
Journal Article
Gly184 of the Escherichia coli cAMP receptor protein provides optimal context for both DNA binding and RNA polymerase interaction
Matt N. Hicks 1, Sanjiva Gunasekara 1, Jose Serate 2, Jin Park 3, Pegah Mosharaf 1, Yue Zhou 1, Jin-Won Lee 4, Hwan Youn 1
Journal of Microbiology 2017;55(10):816-822
DOI: https://doi.org/10.1007/s12275-017-7266-x
Published online: September 28, 2017
1Department of Biology, California State University Fresno, California 93740, USA, 2Department of Bacteriology, University of Wisconsin-Madison, Wisconsin 53706, USA, 3Department of Computer Science, California State University Fresno, California 93740, USA, 4Department of Life Science and Institute for Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea1Department of Biology, California State University Fresno, California 93740, USA, 2Department of Bacteriology, University of Wisconsin-Madison, Wisconsin 53706, USA, 3Department of Computer Science, California State University Fresno, California 93740, USA, 4Department of Life Science and Institute for Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea
Corresponding author:  Hwan Youn , Tel: +1-559-278-8305, 
Received: 5 July 2017   • Revised: 11 August 2017   • Accepted: 23 August 2017
prev next
  • 8 Views
  • 0 Download
  • 0 Crossref
  • 3 Scopus

The Escherichia coli cAMP receptor protein (CRP) utilizes the helix-turn-helix motif for DNA binding. The CRP’s recognition helix, termed F-helix, includes a stretch of six amino acids (Arg180, Glu181, Thr182, Val183, Gly184, and Arg185) for direct DNA contacts. Arg180, Glu181 and Arg185 are known as important residues for DNA binding and specificity, but little has been studied for the other residues. Here we show that Gly184 is another F-helix residue critical for the transcriptional activation function of CRP. First, glycine was repeatedly selected at CRP position 184 for its unique ability to provide wild type-level transcriptional activation activity. To dissect the glycine requirement, wild type CRP and mutants G184A, G184F, G184S, and G184Y were purified and their in vitro DNA-binding activity was measured. G184A and G184F displayed reduced DNA binding, which may explain their low transcriptional activation activity. However, G184S and G184Y displayed apparently normal DNA affinity. Therefore, an additional factor is needed to account for the diminished transcriptional activation function in G184S and G184Y, and the best explanation is perturbations in their interaction with RNA polymerase. The fact that glycine is the smallest amino acid could not fully warrant its suitability, as shown in this study. We hypothesize that Gly184 fulfills the dual functions of DNA binding and RNA polymerase interaction by conferring conformational flexibility to the F-helix.

  • Cite this Article
    Cite this Article
    export Copy Download
    Close
    Download Citation
    Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

    Format:
    • RIS — For EndNote, ProCite, RefWorks, and most other reference management software
    • BibTeX — For JabRef, BibDesk, and other BibTeX-specific software
    Include:
    • Citation for the content below
    Gly184 of the Escherichia coli cAMP receptor protein provides optimal context for both DNA binding and RNA polymerase interaction
    J. Microbiol. 2017;55(10):816-822.   Published online September 28, 2017
    Close
Related articles

Journal of Microbiology : Journal of Microbiology
TOP