Contribution of S-layer proteins to the mosquitocidal activity of Lysinibacillus sphaericus

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Contribution of S-layer proteins to the mosquitocidal activity of Lysinibacillus sphaericus is …
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scholarly articleQ13442814

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P819ADS bibcode2014PLoSO...9k1114A
P356DOI10.1371/JOURNAL.PONE.0111114
P3181OpenCitations bibliographic resource ID486952
P932PMC publication ID4213006
P698PubMed publication ID25354162
P5875ResearchGate publication ID267741522

P50authorSandra Mónica RuzalQ59695490
P2093author name stringCarmen Sánchez-Rivas
Leonardo Lanati
María Mercedes Palomino
Mariana Claudia Allievi
Mariano Prado Acosta
P2860cites workTwo groups of S-layer proteins, SLP1s and SLP2s, in Bacillus thuringiensis co-exist in the S-layer and in parasporal inclusions.Q53245139
Metal biosorption by surface-layer proteins from Bacillus speciesQ83507286
Implications of high-molecular-weight oligomers of the binary toxin from Bacillus sphaericusQ33211829
Proteolytic stability of insecticidal toxins expressed in recombinant bacilliQ33263374
Proposal of Lysinibacillus boronitolerans gen. nov. sp. nov., and transfer of Bacillus fusiformis to Lysinibacillus fusiformis comb. nov. and Bacillus sphaericus to Lysinibacillus sphaericus comb. nov.Q33283391
Cloning, sequencing, and expression of a gene encoding a 100-kilodalton mosquitocidal toxin from Bacillus sphaericus SSII-1.Q33327813
BslA, the S-layer adhesin of B. anthracis, is a virulence factor for anthrax pathogenesisQ33689248
Cryo-EM analysis of the organization of BclA and BxpB in the Bacillus anthracis exosporium.Q33852981
Localization of a mosquito-larval toxin of Bacillus sphaericus 1593.Q34040625
Existence of a true phosphofructokinase in Bacillus sphaericus: cloning and sequencing of the pfk gene.Q34295763
Vip3A, a novel Bacillus thuringiensis vegetative insecticidal protein with a wide spectrum of activities against lepidopteran insectsQ34381574
The amino- and carboxyl-terminal fragments of the Bacillus thuringensis Cyt1Aa toxin have differential roles in toxin oligomerization and pore formationQ34851086
Secondary cell wall polysaccharides from Bacillus cereus strains G9241, 03BB87 and 03BB102 causing fatal pneumonia share similar glycosyl structures with the polysaccharides from Bacillus anthracisQ35032265
Surface architecture of endospores of the Bacillus cereus/anthracis/thuringiensis family at the subnanometer scaleQ35229125
Carbohydrate metabolism in the mosquito pathogen Bacillus sphaericus 2362.Q35732133
Localization and structural analysis of a conserved pyruvylated epitope in Bacillus anthracis secondary cell wall polysaccharides and characterization of the galactose-deficient wall polysaccharide from avirulent B. anthracis CDC 684.Q36056060
Mtx toxins synergize Bacillus sphaericus and Cry11Aa against susceptible and insecticide-resistant Culex quinquefasciatus larvaeQ36137002
Metal binding by bacteria from uranium mining waste piles and its technological applications.Q36187794
Characterization of the surface protein layers of the mosquito-pathogenic strains of Bacillus sphaericusQ36226041
Complete genome sequence of the mosquitocidal bacterium Bacillus sphaericus C3-41 and comparison with those of closely related Bacillus speciesQ36540575
Bacillus cereus G9241 S-layer assembly contributes to the pathogenesis of anthrax-like disease in miceQ36559371
Ultrastructural Analysis of Spores and Parasporal Crystals Formed by Bacillus sphaericus 2297.Q36709630
Bacillus thuringiensis serovariety israelensis and Bacillus sphaericus for mosquito controlQ36939855
Cooperative degradation of chitin by extracellular and cell surface-expressed chitinases from Paenibacillus sp. strain FPU-7.Q37335378
The bacterium, Lysinibacillus sphaericus, as an insect pathogenQ37964299
Bacterial chitinases and chitin-binding proteins as virulence factorsQ38091954
Cross-order and cross-phylum activity of Bacillus thuringiensis pesticidal proteinsQ38112974
Cyt1Ab1 and Cyt2Ba1 from Bacillus thuringiensis subsp. medellin and B. thuringiensis subsp. israelensis Synergize Bacillus sphaericus against Aedes aegypti and resistant Culex quinquefasciatus (Diptera: Culicidae).Q39491779
The introduction into bacillus sphaericus of the Bacillus thuringiensis subsp. medellin Cyt1Ab1 gene results in higher susceptibility of resistant mosquito larva populations to B. sphaericus.Q39562543
Culex mosquitoes in temporary urban rain pools: seasonal dynamics and relation to environmental variables.Q39707743
Identification of a gene for Cyt1A-like hemolysin from Bacillus thuringiensis subsp. medellin and expression in a crystal-negative B. thuringiensis strain.Q39801474
Selective Process for Efficient Isolation of Soil Bacillus spp.Q39924984
Bacillus sphaericus: microbiological factors related to its potential as a mosquito larvicideQ40097085
Oligomerization is a key step in Cyt1Aa membrane insertion and toxicity but not necessary to synergize Cry11Aa toxicity in Aedes aegypti larvae.Q41809266
A Bacillus thuringiensis S-layer protein involved in toxicity against Epilachna varivestis (Coleoptera: Coccinellidae)Q42038778
Involvement of chitinases of Bacillus thuringiensis during pathogenesis in insectsQ42060060
Are the surface layer homology domains essential for cell surface display and glycosylation of the S-layer protein from Paenibacillus alvei CCM 2051T?Q42126400
Phosphoenolpyruvate phosphotransferase system and N-acetylglucosamine metabolism in Bacillus sphaericus.Q42603441
Improving the insecticidal activity against resistant Culex quinquefasciatus mosquitoes by expression of chitinase gene chiAC in Bacillus sphaericusQ42909199
Complexation of uranium by cells and S-layer sheets of Bacillus sphaericus JG-A12.Q42975478
Phylogenetic analysis and heterologous expression of surface layer protein SlpC of Bacillus sphaericus C3-41.Q44141259
Lysinibacillus sphaericus S-layer protein toxicity against Culex quinquefasciatus.Q44158576
Synergistic activity of Cyt1A from Bacillus thuringiensis subsp. israelensis with Bacillus sphaericus B101 H5a5b against Bacillus sphaericus B101 H5a5b-resistant strains of Anopheles stephensi Liston (Diptera: Culicidae).Q44158923
Bacillus sphaericus toxins: molecular biology and mode of actionQ44159828
Identification of proteins in the exosporium of Bacillus anthracis.Q44758442
Deoxyribonucleic Acid Homologies Among Strains of Bacillus sphaericusQ45300991
DNA Similarities among Mosquito-Pathogenic and Nonpathogenic Strains of Bacillus sphaericusQ45312742
A new group of parasporal inclusions encoded by the S-layer gene of Bacillus thuringiensisQ46482412
Distinct functions of polysaccharide deacetylases in cell shape, neutral polysaccharide synthesis and virulence of Bacillus anthracisQ46744527
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue10
P407language of work or nameEnglishQ1860
P921main subjectLysinibacillus sphaericusQ18324723
P304page(s)e111114
P577publication date2014-01-01
P1433published inPLOS OneQ564954
P1476titleContribution of S-layer proteins to the mosquitocidal activity of Lysinibacillus sphaericus
P478volume9

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cites work (P2860)
Q36399180A genome-scale metabolic reconstruction of Lysinibacillus sphaericus unveils unexploited biotechnological potentials
Q35893693Biological Control Activities of Rice-Associated Bacillus sp. Strains against Sheath Blight and Bacterial Panicle Blight of Rice
Q41982419Complete Genome Sequence of Lysinibacillus sphaericus WHO Reference Strain 2362.
Q26700041Complete genome sequencing and comparative genomic analysis of functionally diverse Lysinibacillus sphaericus III(3)7
Q43042503Contribution of Lysinibacillus sphaericus hemolysin and chitin-binding protein in entomopathogenic activity against insecticide resistant Aedes aegypti
Q30250969Efficacy of the vegetative cells of Lysinibacillus sphaericus for biological control of insecticide-resistant Aedes aegypti
Q37606959Emerging facets of prokaryotic glycosylation.
Q55098100Rice Phyllosphere Bacillus Species and Their Secreted Metabolites Suppress Aspergillus flavus Growth and Aflatoxin Production In Vitro and In Maize Seeds.
Q44163609Synergistic Activity Between S-Layer Protein and Spore-Crystal Preparations from Lysinibacillus sphaericus Against Culex quinquefasciatus Larvae.

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