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Smita S Patel

Showing results (41-50 of 114) with videos related to

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The Journal of Biological Chemistry|September 13, 2002
Kinetic pathway of dTTP hydrolysis by hexameric T7 helicase-primase in the absence of DNAYong-Joo Jeong, Dong-Eun Kim, Smita S Patel
The Journal of Biological Chemistry|February 19, 2004
Nucleotide binding induces conformational changes in Escherichia coli transcription termination factor RhoYong-Joo Jeong, Dong-Eun Kim, Smita S Patel
The Journal of Biological Chemistry|October 11, 2005
Extended upstream A-T sequence increases T7 promoter strengthGuo-Qing Tang, Rajiv P Bandwar, Smita S Patel
Proceedings of the National Academy of Sciences of the United States of America|May 5, 2004
The DNA-unwinding mechanism of the ring helicase of bacteriophage T7Yong-Joo Jeong, Mikhail K Levin, Smita S Patel
Journal of Molecular Biology|June 20, 2006
Sequential release of promoter contacts during transcription initiation to elongation transitionRajiv P Bandwar, Guo-Qing Tang, Smita S Patel
The Journal of Biological Chemistry|September 14, 2011
Transcription factor-dependent DNA bending governs promoter recognition by the mitochondrial RNA polymeraseGuo-Qing Tang, Aishwarya P Deshpande, Smita S Patel
Cell Reports|March 18, 2014
Single-molecule fluorescence reveals the unwinding stepping mechanism of replicative helicaseSalman Syed, Manjula Pandey, Smita S Patel, et al.
Journal of the American Chemical Society|June 26, 2009
Fluorescent lifetime trajectories of a single fluorophore reveal reaction intermediates during transcription initiationMaria Sorokina, Hye-Ran Koh, Smita S Patel, et al.
Molecular Cell|June 10, 2008
Transcription initiation in a single-subunit RNA polymerase proceeds through DNA scrunching and rotation of the N-terminal subdomainsGuo-Qing Tang, Rahul Roy, Taekjip Ha, et al.
The Journal of Biological Chemistry|May 17, 2007
Nucleic acid unwinding by hepatitis C virus and bacteriophage t7 helicases is sensitive to base pair stabilityIlker Donmez, Vaishnavi Rajagopal, Yong-Joo Jeong, et al.
Pageof 12

Showing results (41-50 of 114) with videos related to

Sort By:
Pageof 12
The Journal of Biological Chemistry|September 13, 2002
Kinetic pathway of dTTP hydrolysis by hexameric T7 helicase-primase in the absence of DNAYong-Joo Jeong, Dong-Eun Kim, Smita S Patel
The Journal of Biological Chemistry|February 19, 2004
Nucleotide binding induces conformational changes in Escherichia coli transcription termination factor RhoYong-Joo Jeong, Dong-Eun Kim, Smita S Patel
The Journal of Biological Chemistry|October 11, 2005
Extended upstream A-T sequence increases T7 promoter strengthGuo-Qing Tang, Rajiv P Bandwar, Smita S Patel
Proceedings of the National Academy of Sciences of the United States of America|May 5, 2004
The DNA-unwinding mechanism of the ring helicase of bacteriophage T7Yong-Joo Jeong, Mikhail K Levin, Smita S Patel
Journal of Molecular Biology|June 20, 2006
Sequential release of promoter contacts during transcription initiation to elongation transitionRajiv P Bandwar, Guo-Qing Tang, Smita S Patel
The Journal of Biological Chemistry|September 14, 2011
Transcription factor-dependent DNA bending governs promoter recognition by the mitochondrial RNA polymeraseGuo-Qing Tang, Aishwarya P Deshpande, Smita S Patel
Cell Reports|March 18, 2014
Single-molecule fluorescence reveals the unwinding stepping mechanism of replicative helicaseSalman Syed, Manjula Pandey, Smita S Patel, et al.
Journal of the American Chemical Society|June 26, 2009
Fluorescent lifetime trajectories of a single fluorophore reveal reaction intermediates during transcription initiationMaria Sorokina, Hye-Ran Koh, Smita S Patel, et al.
Molecular Cell|June 10, 2008
Transcription initiation in a single-subunit RNA polymerase proceeds through DNA scrunching and rotation of the N-terminal subdomainsGuo-Qing Tang, Rahul Roy, Taekjip Ha, et al.
The Journal of Biological Chemistry|May 17, 2007
Nucleic acid unwinding by hepatitis C virus and bacteriophage t7 helicases is sensitive to base pair stabilityIlker Donmez, Vaishnavi Rajagopal, Yong-Joo Jeong, et al.
Pageof 12