Part of the Genetics and Genomics Commons

Works by Sangita Phadtare in Genetics and Genomics

2018

Creation and implementation of a flipped jigsaw activity to stimulate interest in biochemistry among medical students, Charlene Williams, Susan Perlis, John Gaughan, Sangita Phadtare
Sangita Phadtare

2014

Regression of Solid Tumors by Induction of MazF, a Bacterial mRNA Endoribonuclease, Tsutomu Shimazu, Oleg Mirochnitchenko, Sangita Phadtare, Masayori Inouye
Sangita Phadtare

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

Characterization of LdrA (Long Direct Repeat A) Protein of Escherichia coli, Yoshihiro Yamaguchi, Narumi Tokunaga, Masayori Inouye, Sangita Phadtare
Sangita Phadtare

2012

Identification of two DNA helicases UvrD and DinG as suppressors for lethality caused by mutant cspA mRNAs., Jihwan Hwang, Kangseok Lee, Sangita Phadtare, Masayori Inouye
Sangita Phadtare

Escherichia coli cold‐shock gene profiles in response to over‐expression/deletion of CsdA, RNase R and PNPase and relevance to low‐temperature RNA metabolism, Sangita Phadtare
Sangita Phadtare

2011

Unwinding activity of cold shock proteins and RNA metabolism, Sangita Phadtare
Sangita Phadtare

2010

Escherichia coli RNase R Has Dual Activities, Helicase and RNase, Naoki Awano, Vaishnavi Rajagopal, Mark Arbing, Smita Patel, John Hunt, Masayori Inouye, Sangita Phadtare
Sangita Phadtare

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

2009

Applications of nucleic acid chaperone activity of CspA and its homologues., Sangita Phadtare, Ling Zhu, Takashi Uemori, Hiroyuki Mukai, Ikunoshin Kato, Masayori Inouye
Sangita Phadtare

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

Method of using a gene conferring resistance to 4,5-dihydroxy-2-cyclopenten-1-one (DHCP) and identifying inhibitors of a polypeptide encoded by the gene, Sangita Phadtare, Kunitoshi Yamanaka, Ikunoshin Kato, Masayori Inouye
Sangita Phadtare

2008

RNase Activity of Polynucleotide Phosphorylase Is Critical at Low Temperature in Escherichia coli and Is Complemented by RNase II, Naoki Awano, Masayori Inouye, Sangita Phadtare
Sangita Phadtare

The mRNA interferases, MazF-mt3 and MazF-mt7 from Mycobacterium tuberculosis target unique pentad sequences in single-stranded RNA, Ling Zhu, Sangita Phadtare, Hirofumi Nariya, Ming Ouyang, Robert N. Husson, Masayori Inouye
Sangita Phadtare

2007

Complementation Analysis of the Cold-Sensitive Phenotype of the Escherichia coli csdA Deletion Strain, Naoki Awano, Chunying Xu, Haiping Ke, Koichi Inoue, Masayori Inouye, Sangita Phadtare
Sangita Phadtare

Method of gene encoding a 4,5-dihydroxy-2-cyclopenten-1-one (DHCP) efflux protein promoting resistance to DHCP, Sangita Phadtare, Kunitoshi Yamanaka, Ikunoshin Kato, Masayori Inouye
Sangita Phadtare

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

The design and development of tar-EnvZ chimeric receptors, Takeshi Yoshida, Sangita Phadtare, Masayori Inouye
Sangita Phadtare

Functional and structural characterization of EnvZ, an osmosensing histidine kinase of E. coli., Takeshi Yoshida, Sangita Phadtare, Masayori Inouye
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

Genome-Wide Transcriptional Analysis of the Cold Shock Response in Wild-Type and Cold-Sensitive, Quadruple-csp-Deletion Strains of Escherichia coli, Sangita Phadtare, Masayori Inouye
Sangita Phadtare

Cold-shock induced high-yield protein production in Escherichia coli, Guoliang Qing, Li-Chung Ma, Ahmad Khorchid, G V T Swapna, Tapas K. Mal, Masanori Mitta Takayama, Bing Xia, Sangita Phadtare, Haiping Ke, Thomas Acton, Gaetano T. Montelione, Mitsuhiko Ikura, Masayori Inouye
Sangita Phadtare

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

2003

Effect of treatment with 4,5-dihydroxy- 2-cyclopenten-1-one (dhcp) on gene expression and quorum-sensing in bacteria, Sangita Phadtare, Ikunoshin Kato, Massayori Inouye
Sangita Phadtare

Cold shock inducible expression and production of heterologous polypeptides, Masayori Inouye, Sangita Phadtare, Bing Xia, Guoliang Qing, Haiping Ke
Sangita Phadtare

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

DNA Microarray Analysis of the Expression Profile of Escherichia coli in Response to Treatment with 4,5-Dihydroxy-2-Cyclopenten-1-One, Sangita Phadtare, Ikunoshin Kato, Masayori Inouye
Sangita Phadtare

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

2001

GENE CONFERRING RESISTANCE TO THE ANTIBACTERIAL 4,5-DIHYDROXY-2-CYCLOPENTEN-1-ONE (DHCP), THE PROTEIN ENCODED BY the SAME, AND APPLICATIONS THEREOF, Masayori Inouye, Sangita Phadtare, Kunitoshi Yamanaka, Ikunoshin Kato
Sangita Phadtare

Antibacterial Activity of 4,5-Dihydroxy-2-cyclopentan-1-one (DHCP) and Cloning of a Gene Conferring DHCP Resistance in Escherichia coli, Sangita Phadtare, Kunitoshi Yamanaka, Ikunoshin Kato, Masayori Inouye
Sangita Phadtare

Role of CspC and CspE in Regulation of Expression of RpoS and UspA, the Stress Response Proteins in Escherichia coli, Sangita Phadtare, Masayori Inouye
Sangita Phadtare

1999

Cold-shock response and cold-shock proteins., Sangita Phadtare, Janivette Alsina, Masayori Inouye
Sangita Phadtare

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

Sequence‐selective interactions with RNA by CspB, CspC and CspE, members of the CspA family of Escherichia coli, Sangita Phadtare, Masayori Inouye
Sangita Phadtare