Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
about
Unique physiological and pathogenic features of Leptospira interrogans revealed by whole-genome sequencingLeptospira: the dawn of the molecular genetics era for an emerging zoonotic pathogenAnalysis of the Borrelia burgdorferi cyclic-di-GMP-binding protein PlzA reveals a role in motility and virulenceThe selective value of bacterial shapeAnalysis of a Spontaneous Non-Motile and Avirulent Mutant Shows That FliM Is Required for Full Endoflagella Assembly in Leptospira interrogansReal-time high resolution 3D imaging of the lyme disease spirochete adhering to and escaping from the vasculature of a living hostHypothetical Protein BB0569 Is Essential for Chemotaxis of the Lyme Disease Spirochete Borrelia burgdorferi.Initial characterization of the FlgE hook high molecular weight complex of Borrelia burgdorferiReviewing molecular adaptations of Lyme borreliosis spirochetes in the context of reproductive fitness in natural transmission cyclesFlaA proteins in Leptospira interrogans are essential for motility and virulence but are not required for formation of the flagellum sheathBB0347, from the lyme disease spirochete Borrelia burgdorferi, is surface exposed and interacts with the CS1 heparin-binding domain of human fibronectinVirulence of the zoonotic agent of leptospirosis: still terra incognita?The flagellar cytoskeleton of the spirochetes.Improvement in motion efficiency of the spirochete Brachyspira pilosicoli in viscous environmentsSimilarity searches in genome-wide numerical data setsThe flat-ribbon configuration of the periplasmic flagella of Borrelia burgdorferi and its relationship to motility and morphology.Electron cryotomography: a new view into microbial ultrastructure.Analysis of a Borrelia burgdorferi phosphodiesterase demonstrates a role for cyclic-di-guanosine monophosphate in motility and virulence.The diguanylate cyclase, Rrp1, regulates critical steps in the enzootic cycle of the Lyme disease spirochetes.A novel gene inactivation system reveals altered periplasmic flagellar orientation in a Borrelia burgdorferi fliL mutantTwo CheW coupling proteins are essential in a chemosensory pathway of Borrelia burgdorferi.The unique paradigm of spirochete motility and chemotaxis.Morphological and biochemical features of Borrelia burgdorferi pleomorphic forms.Inactivation of a putative flagellar motor switch protein FliG1 prevents Borrelia burgdorferi from swimming in highly viscous media and blocks its infectivityAcetogenesis from H2 plus CO2 and nitrogen fixation by an endosymbiotic spirochete of a termite-gut cellulolytic protistMotility and Ultrastructure of Spirochaeta thermophilaCarbon storage regulator A (CsrA(Bb)) is a repressor of Borrelia burgdorferi flagellin protein FlaB.Electron cryotomographyFirst evidence for gene replacement in Leptospira spp. Inactivation of L. biflexa flaB results in non-motile mutants deficient in endoflagella.BB0323 function is essential for Borrelia burgdorferi virulence and persistence through tick-rodent transmission cycle.Cytoplasmic filament-deficient mutant of Treponema denticola has pleiotropic defects.Dissociation of infectivity and pathogenicity in Borrelia burgdorferiPolar flagellar motility of the VibrionaceaeAsymmetrical flagellar rotation in Borrelia burgdorferi nonchemotactic mutants.Clonal polymorphism of Borrelia burgdorferi strain B31 MI: implications for mutagenesis in an infectious strain backgroundThree-dimensional structures of pathogenic and saprophytic Leptospira species revealed by cryo-electron tomography.BB0250 of Borrelia burgdorferi is a conserved and essential inner membrane protein required for cell division.Molecular architecture of the bacterial flagellar motor in cellsSpirochetal motility and chemotaxis in the natural enzootic cycle and development of Lyme diseaseIdentification of specific chemoattractants and genetic complementation of a Borrelia burgdorferi chemotaxis mutant: flow cytometry-based capillary tube chemotaxis assay
P2860
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P2860
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
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2000 nî lūn-bûn
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2000 թվականի սեպտեմբերին հրատարակված գիտական հոդված
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Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@ast
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@en
type
label
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@ast
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@en
prefLabel
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@ast
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@en
P2093
P2860
P356
P1476
Borrelia burgdorferi periplasmic flagella have both skeletal and motility functions.
@en
P2093
D S Samuels
M A Motaleb
N W Charon
P2860
P304
10899-10904
P356
10.1073/PNAS.200221797
P407
P577
2000-09-01T00:00:00Z