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The Journal of Biological Chemistry|August 2, 2002
The +2 NTP binding drives open complex formation in T7 RNA polymeraseNatalie M Stano, Mikhail K Levin, Smita S PatelNature|May 20, 2005
DNA synthesis provides the driving force to accelerate DNA unwinding by a helicaseNatalie M Stano, Yong-Joo Jeong, Ilker Donmez, et al.Journal of Molecular Biology|February 6, 2002
The intercalating beta-hairpin of T7 RNA polymerase plays a role in promoter DNA melting and in stabilizing the melted DNA for efficient RNA synthesisNatalie M Stano, Smita S PatelThe Journal of Biological Chemistry|February 7, 2004
T7 lysozyme represses T7 RNA polymerase transcription by destabilizing the open complex during initiationNatalie M Stano, Smita S PatelThe Journal of Biological Chemistry|May 30, 2002
Helicase from hepatitis C virus, energetics of DNA bindingMikhail K Levin, 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 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 PatelBiochemistry|March 13, 2002
Kinetic and thermodynamic basis of promoter strength: multiple steps of transcription initiation by T7 RNA polymerase are modulated by the promoter sequenceRajiv P Bandwar, Yiping Jia, Natalie M Stano, et al.The Journal of Biological Chemistry|March 28, 2003
ATP binding modulates the nucleic acid affinity of hepatitis C virus helicaseMikhail K Levin, Madhura M Gurjar, Smita S PatelThe Journal of Biological Chemistry|April 17, 2004
The functional interaction of the hepatitis C virus helicase molecules is responsible for unwinding processivityMikhail K Levin, Yuh-Hwa Wang, Smita S PatelPageof 13