Skip Navigation
Skip to contents

Journal of Microbiology : Journal of Microbiology

OPEN ACCESS
SEARCH
Search

Articles

Page Path
HOME > J. Microbiol > Volume 50(2); 2012 > Article
Research Support, Non-U.S. Gov't
Protein-Protein Interactions between Histidine Kinases and Response Regulators of Mycobacterium tuberculosis H37Rv
Ha-Na Lee 1, Kwang-Eun Jung 1, In-Jeong Ko 2, Hyung Suk Baik 1, Jeong-Il Oh 1
Journal of Microbiology 2012;50(2):270-277.
DOI: https://doi.org/10.1007/s12275-012-2050-4
Published online: April 27, 2012
1Department of Microbiology, Pusan National University, Busan 609-735, Republic of Korea, 2Korea Science Academy of KAIST, Busan 614-822, Republic of Korea1Department of Microbiology, Pusan National University, Busan 609-735, Republic of Korea, 2Korea Science Academy of KAIST, Busan 614-822, Republic of Korea
Corresponding author:  Jeong-Il Oh , Tel: +82-51-510-2593, 
Received: 31 January 2012   • Accepted: 3 February 2012
prev next
  • 54 Views
  • 0 Download
  • 22 Crossref
  • 25 Scopus

Citations

Citations to this article as recorded by  Crossref logo
  • Modulators targeting protein-protein interactions in Mycobacterium tuberculosis
    Guofeng Luo, Tianqi Ming, Luchuan Yang, Lei He, Tao Tao, Yanmei Wang
    Microbiological Research.2024; 284: 127675.     CrossRef
  • Dual functioning by the PhoR sensor is a key determinant to Mycobacterium tuberculosis virulence
    Prabhat Ranjan Singh, Harsh Goar, Partha Paul, Khushboo Mehta, Bhanwar Bamniya, Anil Kumar Vijjamarri, Roohi Bansal, Hina Khan, Subramanian Karthikeyan, Dibyendu Sarkar, Danielle A. Garsin
    PLOS Genetics.2023; 19(12): e1011070.     CrossRef
  • Phosphoproteomics of Mycobacterium-host interaction and inspirations for novel measures against tuberculosis
    Zilu Wang, Jianping Xie
    Cellular Signalling.2022; 91: 110238.     CrossRef
  • PrrA modulates Mycobacterium tuberculosis response to multiple environmental cues and is critically regulated by serine/threonine protein kinases
    David Giacalone, Rochelle E. Yap, Alwyn M. V. Ecker, Shumin Tan, Danielle A. Garsin
    PLOS Genetics.2022; 18(8): e1010331.     CrossRef
  • Sensing of O2 and nitrate by bacteria: alternative strategies for transcriptional regulation of nitrate respiration by O2 and nitrate
    Gottfried Unden, Robin Klein
    Environmental Microbiology.2021; 23(1): 5.     CrossRef
  • Nitrate-nitrite fate and oxygen sensing in dormant Mycobacterium tuberculosis: A bioinorganic approach highlighting the importance of transition metals
    Eduardo H.S. Sousa, Marta S.P. Carepo, José J.G. Moura
    Coordination Chemistry Reviews.2020; 423: 213476.     CrossRef
  • Inhibiting Mycobacterium tuberculosis DosRST Signaling by Targeting Response Regulator DNA Binding and Sensor Kinase Heme
    Huiqing Zheng, John T. Williams, Bilal Aleiwi, Edmund Ellsworth, Robert B. Abramovitch
    ACS Chemical Biology.2020; 15(1): 52.     CrossRef
  • Acetylation of Response Regulator Proteins, TcrX and MtrA in M. tuberculosis Tunes their Phosphotransfer Ability and Modulates Two-Component Signaling Crosstalk
    Krishna Kumar Singh, Neerupma Bhardwaj, Gaurav D. Sankhe, Niveda Udaykumar, Rambir Singh, Vandana Malhotra, Deepak Kumar Saini
    Journal of Molecular Biology.2019; 431(4): 777.     CrossRef
  • In Vivo Methods to Study Protein–Protein Interactions as Key Players in Mycobacterium Tuberculosis Virulence
    Romain Veyron-Churlet, Camille Locht
    Pathogens.2019; 8(4): 173.     CrossRef
  • Dual control of RegX3 transcriptional activity by SenX3 and PknB
    Eun-Jin Park, Yu-Mi Kwon, Jin-Won Lee, Ho-Young Kang, Jeong-Il Oh
    Journal of Biological Chemistry.2019; 294(28): 11023.     CrossRef
  • Oxygen triggers signal transduction in the DevS (DosS) sensor of Mycobacterium tuberculosis by modulating the quaternary structure
    Josiane Bezerra da Silva Lobão, Ana C. S. Gondim, Wellinson G. Guimarães, Marie‐Alda Gilles‐Gonzalez, Luiz Gonzaga de França Lopes, Eduardo H. S. Sousa
    The FEBS Journal.2019; 286(3): 479.     CrossRef
  • Regulation of Three Virulence Strategies of Mycobacterium tuberculosis: A Success Story
    Niels Zondervan, Jesse Van Dam, Peter Schaap, Vitor Martins dos Santos, Maria Suarez-Diez
    International Journal of Molecular Sciences.2018; 19(2): 347.     CrossRef
  • Inhibition of the DevSR Two-Component System by Overexpression of Mycobacterium tuberculosis PknB in Mycobacterium smegmatis
    Hyun-Jung Bae, Ha-Na Lee, Mi-Na Baek, Eun-Jin Park, Chi-Yong Eom, In-Jeong Ko, Ho-Young Kang, Jeong-Il Oh
    Molecules and Cells.2017; 40(9): 632.     CrossRef
  • The two-component signalling networks of Mycobacterium tuberculosis display extensive cross-talk in vitro
    Ruchi Agrawal, Akancha Pandey, Mayooreshwar P. Rajankar, Narendra M. Dixit, Deepak K. Saini
    Biochemical Journal.2015; 469(1): 121.     CrossRef
  • Phylogenomics of Mycobacterium Nitrate Reductase Operon
    Qinqin Huang, Abualgasim Elgaili Abdalla, Jianping Xie
    Current Microbiology.2015; 71(1): 121.     CrossRef
  • Genome-wide prediction of prokaryotic two-component system networks using a sequence-based meta-predictor
    Altan Kara, Martin Vickers, Martin Swain, David E. Whitworth, Narcis Fernandez-Fuentes
    BMC Bioinformatics.2015;[Epub]     CrossRef
  • Two-Component Regulatory Systems of Mycobacteria
    Tanya Parish, Graham F. Hatfull, William R. Jacobs Jr.
    Microbiology Spectrum.2014;[Epub]     CrossRef
  • Rv1027c–Rv1028c encode functional KdpDE two – Component system in Mycobacterium tuberculosis
    Ruchi Agrawal, Deepak Kumar Saini
    Biochemical and Biophysical Research Communications.2014; 446(4): 1172.     CrossRef
  • Serine 83 in DosR, a response regulator from Mycobacterium tuberculosis, promotes its transition from an activated, phosphorylated state to an inactive, unphosphorylated state
    Ha Yeon Cho, Beom Sik Kang
    Biochemical and Biophysical Research Communications.2014; 444(4): 651.     CrossRef
  • Proteome and phosphoproteome analysis of the serine/threonine protein kinase E mutant of Mycobacterium tuberculosis
    Dinesh Kumar Parandhaman, Prashant Sharma, Deepa Bisht, Sujatha Narayanan
    Life Sciences.2014; 109(2): 116.     CrossRef
  • Improved understanding of pathogenesis from protein interactions inMycobacteriumtuberculosis
    Tao Cui, Zheng-Guo He
    Expert Review of Proteomics.2014; 11(6): 745.     CrossRef
  • Involvement of the catalytically important Asp54 residue ofMycobacterium smegmatisDevR in protein-protein interactions between DevR and DevS
    Ha-Na Lee, Na-On Lee, In-Jeong Ko, Si Wouk Kim, Beom Sik Kang, Jeong-Il Oh
    FEMS Microbiology Letters.2013; 343(1): 26.     CrossRef
  • 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
    Protein-Protein Interactions between Histidine Kinases and Response Regulators of Mycobacterium tuberculosis H37Rv
    J. Microbiol. 2012;50(2):270-277.   Published online April 27, 2012
    Close
Related articles

Journal of Microbiology : Journal of Microbiology
TOP