Part of the Biochemistry, Biophysics, and Structural Biology Commons

Works by Konstantin Severinov in Biochemistry, Biophysics, and Structural Biology

2014

and Cold Acclimation of Cells Leading to Transcription Antitermination Critical for Nucleic Acid Melting Activity CspE Surface-exposed Aromatic Patch Are Escherichia coli Three Amino Acids in REGULATION: GENES: STRUCTURE AND, Konstantin Severinov, Sangita Phadtare, Sanjay Tyagi
Sangita Phadtare

2010

RNA remodeling and gene regulation by cold shock proteins., Sangita Phadtare, Konstantin Severinov
Sangita Phadtare

2009

Comparative analysis of changes in gene expression due to RNA melting activities of translation initiation factor IF1 and a cold shock protein of the CspA family, Sangita Phadtare, Konstantin Severinov
Sangita Phadtare

2007

Transcription Antitermination by Translation Initiation Factor IF1, Sangita Phadtare, Teymur Kazakov, Mikhail Bubunenko, Donald L. Court, Tatyana Pestova, Konstantin Severinov
Sangita Phadtare

2006

Analysis of Escherichia coli Global Gene Expression Profiles in Response to Overexpression and Deletion of CspC and CspE, Sangita Phadtare, Vasisht Tadigotla, Weon-Hye Shin, Anirvan Sengupta, Konstantin Severinov
Sangita Phadtare

2005

Extended −10 Motif Is Critical for Activity of the cspA Promoter but Does Not Contribute to Low-Temperature Transcription, Sangita Phadtare, Konstantin Severinov
Sangita Phadtare

Nucleic acid melting by Escherichia coli CspE, Sangita Phadtare, Konstantin Severinov
Sangita Phadtare

2004

The mechanism of nucleic acid melting by a CspA family protein, Sangita Phadtare, Masayori Inouye, Konstantin Severinov
Sangita Phadtare

2003

Assay of transcription antitermination by proteins of the CspA family., Sangita Phadtare, Konstantin Severinov, Masayori Inouye
Sangita Phadtare

CspB and CspL, thermostable cold-shock proteins from Thermotoga maritima., Sangita Phadtare, Jihwan Hwang, Konstantin Severinov, Masayori Inouye
Sangita Phadtare

2002

Three Amino Acids in Escherichia coli CspE Surface-exposed Aromatic Patch Are Critical for Nucleic Acid Melting Activity Leading to Transcription Antitermination and Cold Acclimation of Cells, Sangita Phadtare, Sanjay Tyagi, Masayori Inouye, Konstantin Severinov
Sangita Phadtare

The nucleic acid melting activity of Escherichia coli CspE is critical for transcription antitermination and cold acclimation of cells., Sangita U. Phadtare, Masayori Inouye, Konstantin Severinov
Sangita Phadtare

1999

CHARACTERIZATION OF ESCHERICHIA COLI CSPE, WHOSE PRODUCT NEGATIVELY REGULATES TRANSCRIPTION OF CSPA, THE GENE FOR THE MAJOR COLD SHOCK PROTEIN, Weonhye Bae, Sangita Phadtare, Konstantin Severinov, Masayori Inouye
Sangita Phadtare