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Single-molecule tracking reveals the functional allocation, in vivo interactions and spatial organization of universal transcription factor NusG
Hafez el Sayyed, Oliver J. Pambos, Mathew Stracy, Max E. Gottesman, View ORCID ProfileAchillefs N. Kapanidis
doi: https://doi.org/10.1101/2022.11.21.517430
Hafez el Sayyed
1Gene Machines group, Clarendon Laboratory, Department of Physics, University of Oxford, Oxford, UK
2Kavli Institute of Nanoscience Discovery, Dorothy Crowfoot Hodgkin Building, University of Oxford, Oxford, UK
Oliver J. Pambos
1Gene Machines group, Clarendon Laboratory, Department of Physics, University of Oxford, Oxford, UK
2Kavli Institute of Nanoscience Discovery, Dorothy Crowfoot Hodgkin Building, University of Oxford, Oxford, UK
Mathew Stracy
1Gene Machines group, Clarendon Laboratory, Department of Physics, University of Oxford, Oxford, UK
3Sir William Dunn School of Pathology, University of Oxford, South Parks Rd, Oxford, UK
Max E. Gottesman
4Department of Microbiology & Immunology, Columbia University Medical Center, New York, USA
Achillefs N. Kapanidis
1Gene Machines group, Clarendon Laboratory, Department of Physics, University of Oxford, Oxford, UK
2Kavli Institute of Nanoscience Discovery, Dorothy Crowfoot Hodgkin Building, University of Oxford, Oxford, UK
Posted November 22, 2022.
Single-molecule tracking reveals the functional allocation, in vivo interactions and spatial organization of universal transcription factor NusG
Hafez el Sayyed, Oliver J. Pambos, Mathew Stracy, Max E. Gottesman, Achillefs N. Kapanidis
bioRxiv 2022.11.21.517430; doi: https://doi.org/10.1101/2022.11.21.517430
Single-molecule tracking reveals the functional allocation, in vivo interactions and spatial organization of universal transcription factor NusG
Hafez el Sayyed, Oliver J. Pambos, Mathew Stracy, Max E. Gottesman, Achillefs N. Kapanidis
bioRxiv 2022.11.21.517430; doi: https://doi.org/10.1101/2022.11.21.517430
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