Alejandra Bravo
Alejandra Bravo
Instituto de Biotecnología, Universidad Nacional Autónoma de México
Geverifieerd e-mailadres voor ibt.unam.mx
Geciteerd door
Geciteerd door
Mode of action of Bacillus thuringiensis Cry and Cyt toxins and their potential for insect control
A Bravo, SS Gill, M Soberon
Toxicon 49 (4), 423-435, 2007
Bacillus thuringiensis: a story of a successful bioinsecticide
A Bravo, S Likitvivatanavong, SS Gill, M Soberón
Insect biochemistry and molecular biology 41 (7), 423-431, 2011
How Bacillus thuringiensis has evolved specific toxins to colonize the insect world
RA De Maagd, A Bravo, N Crickmore
TRENDS in Genetics 17 (4), 193-199, 2001
RNA interference in Lepidoptera: an overview of successful and unsuccessful studies and implications for experimental design
O Terenius, A Papanicolaou, JS Garbutt, I Eleftherianos, H Huvenne, ...
Journal of insect physiology 57 (2), 231-245, 2011
Bacillus thuringiensis insecticidal three-domain Cry toxins: mode of action, insect resistance and consequences for crop protection
L Pardo-Lopez, M Soberon, A Bravo
FEMS microbiology reviews 37 (1), 3-22, 2013
Characterization of cry Genes in a Mexican Bacillus thuringiensis Strain Collection
A Bravo, S Sarabia, L Lopez, H Ontiveros, C Abarca, A Ortiz, M Ortiz, ...
Applied and environmental microbiology 64 (12), 4965-4972, 1998
Structure, diversity, and evolution of protein toxins from spore-forming entomopathogenic bacteria
RA de Maagd, A Bravo, C Berry, N Crickmore, HE Schnepf
Annual review of genetics 37 (1), 409-433, 2003
Bacillus thuringiensis toxin nomenclature
N Crickmore, DR Zeigler, E Schnepf, J Van Rie, D Lereclus, J Baum, ...
Available on line http://www. btnomenclature. info, 2016
Oligomerization triggers binding of a Bacillus thuringiensis Cry1Ab pore-forming toxin to aminopeptidase N receptor leading to insertion into membrane microdomains
A Bravo, I Gómez, J Conde, C Munoz-Garay, J Sánchez, R Miranda, ...
Biochimica et Biophysica Acta (BBA)-Biomembranes 1667 (1), 38-46, 2004
Engineering modified Bt toxins to counter insect resistance
M Soberón, L Pardo-López, I López, I Gómez, BE Tabashnik, A Bravo
Science 318 (5856), 1640-1642, 2007
Cadherin-like receptor binding facilitates proteolytic cleavage of helix α-1 in domain I and oligomer pre-pore formation of Bacillus thuringiensis Cry1Ab toxin
I Gómez, J Sánchez, R Miranda, A Bravo, M Soberón
FEBS letters 513 (2-3), 242-246, 2002
How to cope with insect resistance to Bt toxins?
A Bravo, M Soberón
Trends in biotechnology 26 (10), 573-579, 2008
Evolution of Bacillus thuringiensis Cry toxins insecticidal activity
A Bravo, I Gómez, H Porta, BI García‐Gómez, C Rodriguez‐Almazan, ...
Microbial biotechnology 6 (1), 17-26, 2013
Signaling versus punching hole: How do Bacillus thuringiensis toxins kill insect midgut cells?
M Soberon, SS Gill, A Bravo
Cellular and molecular life sciences 66 (8), 1337-1349, 2009
Specific PCR primers directed to identify cryI and cryIII genes within a Bacillus thuringiensis strain collection
J Ceron, A Ortíz, R Quintero, L Güereca, A Bravo
Applied and environmental microbiology 61 (11), 3826-3831, 1995
Bacillus thuringiensis subsp. israelensis Cyt1Aa synergizes Cry11Aa toxin by functioning as a membrane-bound receptor
C Pérez, LE Fernandez, J Sun, JL Folch, SS Gill, M Soberón, A Bravo
Proceedings of the National Academy of Sciences 102 (51), 18303-18308, 2005
Diversity of Bacillus thuringiensis Strains from Latin America with Insecticidal Activity against Different Mosquito Species
JE Ibarra, MC del Rincón, S Ordúz, D Noriega, G Benintende, R Monnerat, ...
Applied and Environmental Microbiology 69 (9), 5269-5274, 2003
Phylogenetic relationships of Bacillus thuringiensis delta-endotoxin family proteins and their functional domains
A Bravo
Journal of bacteriology 179 (9), 2793-2801, 1997
Bacillus thuringiensis: mechanisms and use
A Bravo, M Soberón, SS Gill
Encyclopedia of Microbiology, 307-332, 2019
Immunocytochemical localization of Bacillus thuringiensis insecticidal crystal proteins in intoxicated insects
A Bravo, S Jansens, M Peferoen
Journal of Invertebrate Pathology 60 (3), 237-246, 1992
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