2020
An asymmetric sheath controls flagellar supercoiling and motility in the leptospira spirochete
Gibson KH, Trajtenberg F, Wunder EA, Brady MR, San Martin F, Mechaly A, Shang Z, Liu J, Picardeau M, Ko A, Buschiazzo A, Sindelar CV. An asymmetric sheath controls flagellar supercoiling and motility in the leptospira spirochete. ELife 2020, 9: e53672. PMID: 32157997, PMCID: PMC7065911, DOI: 10.7554/elife.53672.Peer-Reviewed Original ResearchConceptsCryo-electron tomographyKey functional attributesNative flagellar filamentsHigh-resolution cryo-electron tomographyPeriplasmic spaceSheath proteinStructural basisFlagellar filamentsLeptospira spirochetesSpirochete bacteriaEntire cellFunctional attributesX-ray crystallographyImportant pathogenSupercoilingMotilityBacteriaFilamentsCell bodiesFlagellaSpirochetesProteinFlagellinDistinctive meansEndoflagella
2019
Analysis of a flagellar filament cap mutant reveals that HtrA serine protease degrades unfolded flagellin protein in the periplasm of Borrelia burgdorferi
Zhang K, Qin Z, Chang Y, Liu J, Malkowski MG, Shipa S, Li L, Qiu W, Zhang J, Li C. Analysis of a flagellar filament cap mutant reveals that HtrA serine protease degrades unfolded flagellin protein in the periplasm of Borrelia burgdorferi. Molecular Microbiology 2019, 111: 1652-1670. PMID: 30883947, PMCID: PMC6561814, DOI: 10.1111/mmi.14243.Peer-Reviewed Original ResearchConceptsPeriplasmic flagellaFliD mutantFlagellin proteinMajor flagellin proteinLyme disease spirochete Borrelia burgdorferiFlagellar cap proteinFlagellar cap protein FliDFlagellar filament assemblyFlagella-deficient mutantsMutant cellsCAP mutantsFlaB proteinsPeriplasmFilament assemblyCap proteinB. burgdorferiFlagellar filamentsGenetic studiesMutantsBorrelia burgdorferiHtrASerine proteasesFliDFlagellin polymerizationSpirochete Borrelia burgdorferi