Determinacao estrutural da anidrase carbonica bovina (1996)
- Authors:
- USP affiliated authors: JESUS, WANDA DRAGHETTA PERUSSI DE - IFSC ; OLIVA, GLAUCIUS - IFSC
- Unidade: IFSC
- Subjects: PROTEÍNAS; BIOLOGIA MOLECULAR
- Language: Português
- Imprenta:
- Source:
- Título do periódico: Resumos
- Conference titles: Encontro Nacional de Fisica da Materia Condensada
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ABNT
BURGER, R et al. Determinacao estrutural da anidrase carbonica bovina. 1996, Anais.. São Paulo: Sbf, 1996. . Acesso em: 28 mar. 2024. -
APA
Burger, R., Caracelli, I., Oliva, G., & Jesus, W. D. P. (1996). Determinacao estrutural da anidrase carbonica bovina. In Resumos. São Paulo: Sbf. -
NLM
Burger R, Caracelli I, Oliva G, Jesus WDP. Determinacao estrutural da anidrase carbonica bovina. Resumos. 1996 ;[citado 2024 mar. 28 ] -
Vancouver
Burger R, Caracelli I, Oliva G, Jesus WDP. Determinacao estrutural da anidrase carbonica bovina. Resumos. 1996 ;[citado 2024 mar. 28 ] - Structure of carbonic anhydrase from bovine erytrocytes at 2.5 'ANGSTRON' resolution
- Structure of carbonic anhydrase from bovine erythrocytes at 2.5 'ANGSTRON' resolution
- Molecular replacement at its limits? the structure determination of t. Cruzi g- glyceraldehyde -3-phosphate dehydrogenase, 12 monomers in the asymmetric unit and 41% data completeness at 3.5'ANGSTRON' resolution
- Analise cristalografica da anidrase carbonica bovina nativa
- Crystallization and preliminary crystallographic studies of bovine carbonic anhydrase
- Molecular replacement at its limits? the structure determination of t. Cruzi g-glyceraldehyde-3-phosphate dehydrogenase, 12 monomers in the asymmetric unit and 41% data completeness at 3.5'ANGSTRON' resolution
- The refined crystal structure of carbonic anhydrase from bovine erythrocytes at 2.5 'ANGSTRON' resolution
- Cristalizacao e investigacao preliminar por raios-x da anidrase carbonica bovina nativa
- Structure of carbonic anhydrase from bovine erythrocytes at 2.5 'ANGSTRON' resolution
- Crystal structure of t. Cruzi glycosomal glyceraldehyde-3-phosphate dehydrogenase: implications for the catalytic mechanism and new potential target sites for selective inhibition
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