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Nucleic Acids Research|February 19, 2016
Homologous DNA strand exchange activity of the human mitochondrial DNA helicase TWINKLEDoyel Sen, Gayatri Patel, Smita S PatelJournal of Molecular Biology|September 11, 2002
T7 DNA helicase: a molecular motor that processively and unidirectionally translocates along single-stranded DNADong-Eun Kim, Murli Narayan, Smita S PatelNature Structural & Molecular Biology|April 5, 2005
A Brownian motor mechanism of translocation and strand separation by hepatitis C virus helicaseMikhail K Levin, Madhura Gurjar, Smita S PatelThe Journal of Biological Chemistry|January 1, 2009
Fluorescence mapping of the open complex of yeast mitochondrial RNA polymeraseGuo-Qing Tang, Swaroopa Paratkar, Smita S PatelExperientia Supplementum (2012)|August 7, 2014
Fluorescent methods to study transcription initiation and transition into elongationAishwarya P Deshpande, Shemaila Sultana, Smita S PatelNucleic Acids Research|November 28, 2023
Unraveling blunt-end RNA binding and ATPase-driven translocation activities of the RIG-I family helicase LGP2Kuan-Ying Lee, Candice Craig, Smita S PatelThe Journal of Biological Chemistry|December 17, 2022
The N-terminal domain of human mitochondrial helicase Twinkle has DNA-binding activity crucial for supporting processive DNA synthesis by polymerase γLaura C Johnson, Anupam Singh, Smita S PatelNucleic Acids Research|March 1, 2013
Switching from single-stranded to double-stranded DNA limits the unwinding processivity of ring-shaped T7 DNA helicaseYong-Joo Jeong, Vaishnavi Rajagopal, Smita S PatelMethods in Molecular Biology (Clifton, N.J.)|March 13, 2010
Experimental and computational analysis of DNA unwinding and polymerization kineticsManjula Pandey, Mikhail K Levin, Smita S PatelThe Journal of Biological Chemistry|September 9, 2017
Transcriptional fidelities of human mitochondrial POLRMT, yeast mitochondrial Rpo41, and phage T7 single-subunit RNA polymerasesShemaila Sultana, Mihai Solotchi, Aparna Ramachandran, et al.Pageof 12