MicroRNA 26a (miR-26a)/KLF4 and CREB-C/EBPβ regulate innate immune signaling, the polarization of macrophages and the trafficking of Mycobacterium tuberculosis to lysosomes … SK Sahu, M Kumar, S Chakraborty, SK Banerjee, R Kumar, P Gupta, ... PLoS pathogens 13 (5), e1006410, 2017 | 139 | 2017 |
Polyphosphate kinase 1, a central node in the stress response network of Mycobacterium tuberculosis, connects the two-component systems MprAB and SenX3–RegX3 and the … S Sanyal, SK Banerjee, R Banerjee, J Mukhopadhyay, M Kundu Microbiology 159 (10), 2074-2086, 2013 | 57 | 2013 |
Essential protein SepF of mycobacteria interacts with FtsZ and MurG to regulate cell growth and division S Gupta, SK Banerjee, A Chatterjee, AK Sharma, M Kundu, J Basu Microbiology 161 (8), 1627-1638, 2015 | 46 | 2015 |
Targeting multiple response regulators of Mycobacterium tuberculosis augments the host immune response to infection SK Banerjee, M Kumar, R Alokam, AK Sharma, A Chatterjee, R Kumar, ... Scientific reports 6 (1), 1-15, 2016 | 35 | 2016 |
Modeling pneumonic plague in human precision-cut lung slices highlights a role for the plasminogen activator protease in facilitating type 3 secretion SK Banerjee, SD Huckuntod, SD Mills, RC Kurten, RD Pechous Infection and Immunity 87 (8), 10.1128/iai. 00175-19, 2019 | 22 | 2019 |
Activation and Regulation of NLRP3 by Sterile and Infectious Insults SGAN Srijon K. Banerjee1†, Ayan Chatterjee2† Frontiers in Immunology, 2022 | 19 | 2022 |
The sensor kinase MtrB of Mycobacterium tuberculosis regulates hypoxic survival and establishment of infection SK Banerjee, S Lata, AK Sharma, S Bagchi, M Kumar, SK Sahu, D Sarkar, ... Journal of Biological Chemistry 294 (52), 19862-19876, 2019 | 19 | 2019 |
Global mapping of MtrA-binding sites links MtrA to regulation of its targets in Mycobacterium tuberculosis A Chatterjee, AK Sharma, AC Mahatha, SK Banerjee, M Kumar, S Saha, ... Microbiology 164 (1), 99-110, 2018 | 14 | 2018 |
A Dual Role for the Plasminogen Activator Protease During the Preinflammatory Phase of Primary Pneumonic Plague SK Banerjee, SD Crane, RD Pechous The Journal of infectious diseases 222 (3), 407-416, 2020 | 13 | 2020 |
The Intersection of the Staphylococcus aureus Rex and SrrAB Regulons: an Example of Metabolic Evolution That Maximizes Resistance to Immune Radicals A Dmitriev, X Chen, E Paluscio, AC Stephens, SK Banerjee, NP Vitko, ... mBio 12 (6), e02188-21, 2021 | 9 | 2021 |
The Yersinia pestis GTPase BipA promotes pathogenesis of primary pneumonic plague SD Crane, SK Banerjee, KR Eichelberger, RC Kurten, WE Goldman, ... Infection and Immunity 89 (2), 2021 | 7 | 2021 |
A systems approach to decipher a role of transcription factor RegX3 in the adaptation of Mycobacterium tuberculosis to hypoxic stress AC Mahatha, SK Banerjee, A Ghosh, S Lata, S Saha, J Basu, M Kundu Microbiology 168 (8), 001229, 2022 | 3 | 2022 |
Pulmonary Expression of Interleukin-17 Contributes to Neutrophil Infiltration into the Lungs during Pneumonic Plague RDP Hayley M. Theriot, Priyangi A. Malaviarachchi, Madeleine G. Scott ... Infection and Immunity, 2023 | 2 | 2023 |
Treatment with Fluticasone Propionate Increases Antibiotic Efficacy during Treatment of Late-Stage Primary Pneumonic Plague SD Crane, SK Banerjee, RD Pechous Antimicrobial Agents and Chemotherapy 66 (1), e01275-21, 2022 | 2 | 2022 |
Specialized phosphate transport is essential for Staphylococcus aureus nitric oxide resistance AC Stephens, SK Banerjee, AR Richardson Mbio, e02451-23, 2023 | 1 | 2023 |
The contribution of DNA repair pathways to Staphylococcus aureus fitness and fidelity during nitric oxide stress KE Hurley, SK Banerjee, AC Stephens, MR Scribner, VS Cooper, ... mBio, e02156-23, 2023 | | 2023 |
An ex vivo human precision-cut lung slice platform provides insight into SARS-CoV-2 pathogenesis and antiviral drug efficacy X Zhang, RD Pechous, PA Malaviarachchi, SK Banerjee, S Byrum, ... bioRxiv, 2023.04. 18.537373, 2023 | | 2023 |
Structural and functional studies on two component systems of Mycobacterium tuberculosis SK Banerjee Kolkata, 2017 | | 2017 |