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  1. 1.   Homologs of the Escherichia coli F Element Protein TraR, Including Phage Lambda Orf73, Directly Reprogram Host Transcription
  2. Gopalkrishnan, Saumya; Ross, Wilma; Akbari, Madeline S; Li, Xintian; Haycocks, James R J; Grainger, David C; Court,Don; Gourse, Richard L
  3. mBio. 2022, May 18; e0095222.
  1. 2.   Modifying bacteriophage lambda with recombineering
  2. Thomason, L. C.; Oppenheim, A. B.; Court, D. L.
  3. Methods in molecular biology (Clifton, N.J.). 2009 501: 239-251.
  1. 3.   A set of recombineering plasmids for gram-negative bacteria
  2. Datta, S.; Costantino, N.; Court, D. L.
  3. Gene. 2006, Sep; 379: 109-115.
  1. 4.   Quantitative kinetic analysis of the bacteriophage lambda genetic network
  2. Kobiler, O.; Rokney, A.; Friedman, N.; Court, D. L.; Stavans, J.; Oppenheim, A. B.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2005 102(12): 4470-4475.
  1. 5.   On the role of Cro in lambda prophage induction
  2. Svenningsen, S. L.; Costantino, N.; Court, D. L.; Adhya, S.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2005 102(12): 4465-4469.
  1. 6.   Switches in bacteriophage lambda development
  2. Oppenheim, A. B.; Kobiler, O.; Stavans, J.; Court, D. L.; Adhya, S.
  3. Annual Review of Genetics. 2005 39: 409-429.
  1. 7.   In vivo recombineering of bacteriophage lambda by PCR fragments and single-strand oligonucleotides
  2. Oppenheim, A. B.; Rattray, A. J.; Bubunenko, M.; Thomason, L. C.; Court, D. L.
  3. Virology. 2004 319(2): 185-189.
  1. 8.   The global regulator RNase III modulates translation repression by the transcription elongation factor N
  2. Wilson, H. R.; Yu, D. G.; Peters, H. K.; Zhou, J. G.; Court, D. L.
  3. Embo Journal. 2002 21(15): 4154-4161.
  1. 9.   Translational Repression By a Transcriptional Elongation Factor
  2. Wilson, H. R.; Kameyama, L.; Zhou, J. G.; Guarneros, G.; Court, D. L.
  3. Genes & Development. 1997 11(17): 2204-2213.
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