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R T Sauer

Showing results (161-170 of 183) with videos related to

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Molecular Cell|July 6, 2000
Dynamics of substrate denaturation and translocation by the ClpXP degradation machineY I Kim, R E Burton, B M Burton, et al.
Nature Structural Biology|December 2, 2000
An evolutionary bridge to a new protein foldM H Cordes, R E Burton, N P Walsh, et al.
The EMBO Journal|June 19, 2001
Effects of protein stability and structure on substrate processing by the ClpXP unfolding and degradation machineR E Burton, S M Siddiqui, Y I Kim, et al.
Biochemistry|May 13, 1999
The solution structure and dynamics of an Arc repressor mutant reveal premelting conformational changes related to DNA bindingI M Nooren, A W Rietveld, G Melacini, et al.
Biochemistry|January 31, 1995
Crystal structure, folding, and operator binding of the hyperstable Arc repressor mutant PL8J F Schildbach, M E Milla, P D Jeffrey, et al.
Biochemistry|December 12, 1989
NMR studies of Arc repressor mutants: proton assignments, secondary structure, and long-range contacts for the thermostable proline-8----leucine variant of ArcM G Zagorski, J U Bowie, A K Vershon, et al.
Journal of Immunology (Baltimore, Md. : 1950)|July 1, 1984
Amino acid and nucleotide sequences of variable regions of mouse immunoglobulin light chains of the lambda 3-subtypeE B Reilly, R M Reilly, R M Breyer, et al.
The Journal of Biological Chemistry|March 5, 1989
The Arc and Mnt repressors. A new class of sequence-specific DNA-binding proteinK L Knight, J U Bowie, A K Vershon, et al.
Journal of Cellular Biochemistry|January 1, 1985
Increasing and decreasing protein stability: effects of revertant substitutions on the thermal denaturation of phage lambda repressorM H Hecht, K M Hehir, H C Nelson, et al.
Science (New York, N.Y.)|October 8, 1976
Autoregulation and function of a repressor in bacteriophage lambdaM Ptashne, K Backman, M Z Humayun, et al.
Pageof 19

Showing results (161-170 of 183) with videos related to

Sort By:
Pageof 19
Molecular Cell|July 6, 2000
Dynamics of substrate denaturation and translocation by the ClpXP degradation machineY I Kim, R E Burton, B M Burton, et al.
Nature Structural Biology|December 2, 2000
An evolutionary bridge to a new protein foldM H Cordes, R E Burton, N P Walsh, et al.
The EMBO Journal|June 19, 2001
Effects of protein stability and structure on substrate processing by the ClpXP unfolding and degradation machineR E Burton, S M Siddiqui, Y I Kim, et al.
Biochemistry|May 13, 1999
The solution structure and dynamics of an Arc repressor mutant reveal premelting conformational changes related to DNA bindingI M Nooren, A W Rietveld, G Melacini, et al.
Biochemistry|January 31, 1995
Crystal structure, folding, and operator binding of the hyperstable Arc repressor mutant PL8J F Schildbach, M E Milla, P D Jeffrey, et al.
Biochemistry|December 12, 1989
NMR studies of Arc repressor mutants: proton assignments, secondary structure, and long-range contacts for the thermostable proline-8----leucine variant of ArcM G Zagorski, J U Bowie, A K Vershon, et al.
Journal of Immunology (Baltimore, Md. : 1950)|July 1, 1984
Amino acid and nucleotide sequences of variable regions of mouse immunoglobulin light chains of the lambda 3-subtypeE B Reilly, R M Reilly, R M Breyer, et al.
The Journal of Biological Chemistry|March 5, 1989
The Arc and Mnt repressors. A new class of sequence-specific DNA-binding proteinK L Knight, J U Bowie, A K Vershon, et al.
Journal of Cellular Biochemistry|January 1, 1985
Increasing and decreasing protein stability: effects of revertant substitutions on the thermal denaturation of phage lambda repressorM H Hecht, K M Hehir, H C Nelson, et al.
Science (New York, N.Y.)|October 8, 1976
Autoregulation and function of a repressor in bacteriophage lambdaM Ptashne, K Backman, M Z Humayun, et al.
Pageof 19