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The Journal of Biological Chemistry|October 21, 1994
Identification of residues in the L1 region of the RecA protein which are important to recombination or coprotease activitiesH G Nastri, K L KnightBiochimica Et Biophysica Acta|January 25, 1988
Protein synthesis in polyamine-deficient bacteria during amino-acid starvationH G Nastri, I D AlgranatiCellular and Molecular Biology (Noisy-Le-Grand, France)|July 1, 1996
Effect of polyamines on plasmid-mediated kanamycin resistance and kanamycin phosphotransferase gene expression in Escherichia coliH G Nastri, I D AlgranatiBiochemical and Biophysical Research Communications|February 15, 1988
Inhibition of protein synthesis by aminoglycoside antibiotics in polyamine-requiring bacteriaH G Nastri, I D AlgranatiBiochimica Et Biophysica Acta|December 14, 1993
Polyamines modulate streptomycin-induced mistranslation in Escherichia coliH G Nastri, I G Fastame, I D AlgranatiJournal of Molecular Biology|January 8, 1999
Asp34 of PvuII endonuclease is directly involved in DNA minor groove recognition and indirectly involved in catalysisJ R Horton, H G Nastri, P D Riggs, et al.The Journal of Biological Chemistry|April 14, 1995
Mutations at Pro67 in the RecA protein P-loop motif differentially modify coprotease function and separate coprotease from recombination activitiesJ T Konola, H G Nastri, K M Logan, et al.The Journal of Biological Chemistry|November 5, 1997
Catalytic and DNA binding properties of PvuII restriction endonuclease mutantsH G Nastri, P D Evans, I H Walker, et al.Molecular Microbiology|November 19, 1997
Mutational analysis of the RecA protein L1 region identifies this area as a probable part of the co-protease substrate binding siteH G Nastri, A Guzzo, C S Lange, et al.Pageof 1