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Journal of Molecular Biology
|
January 8, 1999
Crystal structure of the tet repressor in complex with a novel tetracycline, 9-(N,N-dimethylglycylamido)- 6-demethyl-6-deoxy-tetracycline
P Orth, D Schnappinger, P E Sum, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
November 7, 1995
Calicheamicin-DNA complexes: warhead alignment and saccharide recognition of the minor groove
N Ikemoto, R A Kumar, T T Ling, et al.
The Journal of Antibiotics
|
December 1, 1983
Components and degradation compounds of the avoparcin complex
W J McGahren, R A Leese, F Barbatschi, et al.
The Journal of Antibiotics
|
November 1, 1986
Chemistry of maduramicin. II. Decarboxylation, abnormal ketalization and dehydration
W J McGahren, G O Morton, M M Siegel, et al.
Biochemistry
|
January 10, 1995
Proximity mapping of the Tet repressor-tetracycline-Fe2+ complex by hydrogen peroxide mediated protein cleavage
N Ettner, J W Metzger, T Lederer, et al.
The Journal of Antibiotics
|
March 1, 1986
Chemistry of maduramicin. I. Salt formation and normal ketalization
G A Ellestad, N Canfield, R A Leese, et al.
Journal of Medicinal Chemistry
|
January 7, 1994
Glycylcyclines. 1. A new generation of potent antibacterial agents through modification of 9-aminotetracyclines
P E Sum, V J Lee, R T Testa, et al.
The Journal of Antibiotics
|
May 1, 1978
Glycocinnamoylspermidines, a new class of antibiotics. II. Isolation, physiocochemical and biological properties of LL-BM123beta, gamma1 and gamma2
J H Martin, M P Kunstmann, F Barbatschi, et al.
Antimicrobial Agents and Chemotherapy
|
November 1, 1991
Molecular basis of tetracycline action: identification of analogs whose primary target is not the bacterial ribosome
B Rasmussen, H F Noller, G Daubresse, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 9, 1998
Crystal structure of the catalytic domain of human tumor necrosis factor-alpha-converting enzyme
K Maskos, C Fernandez-Catalan, R Huber, et al.
Page
of 2
Search research articles
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Showing results (11-20 of 20) with videos related to
Sort By:
Page
of 2
You have reached the last page of results.
This site can display upto 20 results.
Journal of Molecular Biology
|
January 8, 1999
Crystal structure of the tet repressor in complex with a novel tetracycline, 9-(N,N-dimethylglycylamido)- 6-demethyl-6-deoxy-tetracycline
P Orth, D Schnappinger, P E Sum, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
November 7, 1995
Calicheamicin-DNA complexes: warhead alignment and saccharide recognition of the minor groove
N Ikemoto, R A Kumar, T T Ling, et al.
The Journal of Antibiotics
|
December 1, 1983
Components and degradation compounds of the avoparcin complex
W J McGahren, R A Leese, F Barbatschi, et al.
The Journal of Antibiotics
|
November 1, 1986
Chemistry of maduramicin. II. Decarboxylation, abnormal ketalization and dehydration
W J McGahren, G O Morton, M M Siegel, et al.
Biochemistry
|
January 10, 1995
Proximity mapping of the Tet repressor-tetracycline-Fe2+ complex by hydrogen peroxide mediated protein cleavage
N Ettner, J W Metzger, T Lederer, et al.
The Journal of Antibiotics
|
March 1, 1986
Chemistry of maduramicin. I. Salt formation and normal ketalization
G A Ellestad, N Canfield, R A Leese, et al.
Journal of Medicinal Chemistry
|
January 7, 1994
Glycylcyclines. 1. A new generation of potent antibacterial agents through modification of 9-aminotetracyclines
P E Sum, V J Lee, R T Testa, et al.
The Journal of Antibiotics
|
May 1, 1978
Glycocinnamoylspermidines, a new class of antibiotics. II. Isolation, physiocochemical and biological properties of LL-BM123beta, gamma1 and gamma2
J H Martin, M P Kunstmann, F Barbatschi, et al.
Antimicrobial Agents and Chemotherapy
|
November 1, 1991
Molecular basis of tetracycline action: identification of analogs whose primary target is not the bacterial ribosome
B Rasmussen, H F Noller, G Daubresse, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 9, 1998
Crystal structure of the catalytic domain of human tumor necrosis factor-alpha-converting enzyme
K Maskos, C Fernandez-Catalan, R Huber, et al.
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of 2