Works matching DE "FLAGELLARIACEAE"
Results: 84
Comparison 2D flagellar proteins structure in gram positive vs. gram negative motile bacteria.
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- EurAsian Journal of Biosciences, 2020, v. 14, n. 2, p. 6275
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- Article
Flagellar incorporation of proteins follows at least two different routes in trypanosomes.
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- Biology of the Cell (Wiley-Blackwell), 2018, v. 110, n. 2, p. 33, doi. 10.1111/boc.201700052
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- Article
Absence of tektin 4 causes asthenozoospermia and subfertility in male mice.
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- FASEB Journal, 2007, v. 21, n. 4, p. 1013, doi. 10.1096/fj.06-7035com
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- Article
Attachment of Escherichia coli to Listeria monocytogenes for Pediocin-Mediated Killing.
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- Current Microbiology, 2015, v. 70, n. 2, p. 195, doi. 10.1007/s00284-014-0703-8
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- Article
Interdependence of behavioural variability and response to small stimuli in bacteria.
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- Nature, 2010, v. 468, n. 7325, p. 819, doi. 10.1038/nature09551
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- Article
Hypoosmotic stress induces flagellar biosynthesis and swimming motility in Escherichia albertii.
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- Communications Biology, 2020, v. 3, n. 1, p. 1, doi. 10.1038/s42003-020-0816-5
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- Article
STRUCTURE AND PHYSIOLOGY OF THE HAPTONEMA IN <em>CHRYSOCHROMULINA</em> (PRYMNESIOPHYCEAE). II. MECHANISMS OF HAPTONEMATAL COILING AND THE REGENERATION PROCESS.
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- Journal of Phycology, 1993, v. 29, n. 5, p. 686, doi. 10.1111/j.0022-3646.1993.00686.x
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- Article
STRUCTURE AND PHYSIOLOGY OF THE HAPTONEMA IN <em>CHRYSOCHROMULINA</em> (PRYMNESIOPHYCEAE). I. FINE STRUCTURE OF THE FLAGELLAR/HAPTONEMATAL ROOT SYSTEM IN <em>C. ACANTHA AND C. SIMPLEX</em>.
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- Journal of Phycology, 1993, v. 29, n. 5, p. 674, doi. 10.1111/j.0022-3646.1993.00674.x
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- Article
THE FLAGELLAR APPARATUS OF <em>HYMENOMNAS CORONATA</em> (PRYMNESIOPHYTA).
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- Journal of Phycology, 1992, v. 28, n. 5, p. 635, doi. 10.1111/j.0022-3646.1992.00635.x
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- Article
COMPARATIVE ANALYSES OF THE DINOFLAGELLATE FLAGELLAR APPARATUS. III. FREEZE SUBSTITUTION OF <em>AMPHIDINIUM RHYNCHOCEPHALUM</em>.
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- Journal of Phycology, 1989, v. 25, n. 2, p. 280, doi. 10.1111/j.1529-8817.1989.tb00124.x
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COMPARATIVE ANALYSIS OF THE DINOFLAGELLATE FLAGELLAR APPARATUS. I. <em>WOLOSZYNSKIA</em> SP.
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- Journal of Phycology, 1989, v. 25, n. 1, p. 26, doi. 10.1111/j.0022-3646.1989.00026.x
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- Article
FINE STRUCTURE OF MITOSIS AND CLEAVAGE IN FRIEDMANNIA ISRAELENSIS (CHLOROPHYCEAE: CHLOROSARCINACEAE).
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- Journal of Phycology, 1979, v. 15, n. 4, p. 452, doi. 10.1111/j.1529-8817.1979.tb00718.x
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- Article
ELECTRON MICROSCOPE OBSERVATIONS ON THE FLAGELLAR APPARATUS OF BRYOPSIS MAXIMA (CHLOROPHYCEAE).
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- Journal of Phycology, 1977, v. 13, n. 3, p. 238, doi. 10.1111/j.1529-8817.1977.tb02922.x
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- Article
SPANX-A/D protein subfamily plays a key role in nuclear organisation, metabolism and flagellar motility of human spermatozoa.
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- Scientific Reports, 2020, v. 10, n. 1, p. 1, doi. 10.1038/s41598-020-62389-x
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- Article
The Flagellar Regulon of Legionella--A Review.
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- Frontiers in Cellular & Infection Microbiology, 2017, p. 1, doi. 10.3389/fcimb.2017.00454
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- Article
Extracellular Signals of a Human Epithelial Colorectal Adenocarcinoma (Caco-2) Cell Line Facilitate the Penetration of Pseudomonas aeruginosa PAO1 Strain through the Mucin Layer.
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- Frontiers in Cellular & Infection Microbiology, 2017, p. 1, doi. 10.3389/fcimb.2017.00415
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- Article
Reconciling the bizarre inheritance of microtubules in complex (euglenid) microeukaryotes.
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- Protoplasma, 2012, v. 249, n. 4, p. 859, doi. 10.1007/s00709-011-0340-z
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- Article
DAF‐19/RFX controls ciliogenesis and influences oxygen‐induced social behaviors in Pristionchus pacificus.
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- Evolution & Development, 2018, v. 20, n. 6, p. 233, doi. 10.1111/ede.12271
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- Article
The taxonomy of Flagellaria (Flagellariaceae).
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- Australian Systematic Botany, 2014, v. 27, n. 3, p. 159, doi. 10.1071/SB13048
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- Article
Comparative genomics reveals a deep-sea sediment-adapted life style of Pseudoalteromonas sp. SM9913.
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- ISME Journal: Multidisciplinary Journal of Microbial Ecology, 2011, v. 5, n. 2, p. 274, doi. 10.1038/ismej.2010.103
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Studies on the Transfer of Antibody-producing Capacity II. THE SERIAL TRANSFER OF ANTIBODY-PRODUCING CELLS.
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- Immunology, 1960, v. 3, n. 2, p. 109
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Inhibition of the Injectisome and Flagellar Type III Secretion Systems by INP1855 Impairs Pseudomonas aeruginosa Pathogenicity and Inflammasome Activation.
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- 2016
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- journal article
The long and the short of sperm selection in vitro and in vivo: swim-up techniques select for the longer and faster swimming mammalian sperm.
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- Journal of Evolutionary Biology, 2010, v. 23, n. 3, p. 598, doi. 10.1111/j.1420-9101.2010.01935.x
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Deletion of IFT80 Impairs Epiphyseal and Articular Cartilage Formation Due to Disruption of Chondrocyte Differentiation.
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- PLoS ONE, 2015, v. 10, n. 6, p. 1, doi. 10.1371/journal.pone.0130618
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- Article
ATG24 Represses Autophagy and Differentiation and Is Essential for Homeostasy of the Flagellar Pocket in Trypanosoma brucei.
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- PLoS ONE, 2015, v. 10, n. 6, p. 1, doi. 10.1371/journal.pone.0130365
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- Article
Plasmid AZOBR_p1-borne fabG gene for putative 3-oxoacyl-[acyl-carrier protein] reductase is essential for proper assembly and work of the dual flagellar system in the alphaproteobacterium Azospirillum brasilense Sp245.
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- Canadian Journal of Microbiology, 2018, v. 64, n. 2, p. 107, doi. 10.1139/cjm-2017-0561
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Bacterial flagellar switching: a molecular mechanism directed by the logic of an electric motor.
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- Journal of Molecular Modeling, 2018, v. 24, n. 10, p. 1, doi. 10.1007/s00894-018-3819-0
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Competition between Burkholderia pseudomallei and B. thailandensis.
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- BMC Microbiology, 2015, v. 15, n. 1, p. 1, doi. 10.1186/s12866-015-0395-7
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- Article
Direct interaction of FliX and FlbD is required for their regulatory activity in Caulobacter crescentus.
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- BMC Microbiology, 2011, v. 11, n. 1, p. 89, doi. 10.1186/1471-2180-11-89
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- Article
Evaluation of the Pathogenesis of Pseudomonas aeruginosa's Flagellum Before and After Flagellar Gene Knockdown by Small Interfering RNAs (siRNA).
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- Jundishapur Journal of Microbiology, 2013, v. 6, n. 3, p. 273, doi. 10.5812/jjm.5401
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Biochemical characterization of the flagellar stator-associated inner membrane protein FliL from Vibrio alginolyticus.
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- Journal of Biochemistry, 2017, v. 161, n. 4, p. 331, doi. 10.1093/jb/mvw076
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Construction of functional fragments of the cytoplasmic loop with the C-terminal region of PomA, a stator component of the Vibrio Na+ driven flagellar motor.
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- Journal of Biochemistry, 2014, v. 155, n. 3, p. 207, doi. 10.1093/jb/mvt115
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- Article
Role of VcrD1 protein in expression and secretion of flagellar components in Vibrio parahaemolyticus.
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- Archives of Microbiology, 2015, v. 197, n. 3, p. 397, doi. 10.1007/s00203-014-1069-9
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Morphological evolution in the graminid clade: comparative floral anatomy of the grass relatives Flagellariaceae and Joinvilleaceae.
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- Botanical Journal of the Linnean Society, 2012, v. 170, n. 3, p. 393, doi. 10.1111/j.1095-8339.2012.01283.x
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Retrograde Intraflagellar Transport Mutants Identify Complex A Proteins With Multiple Genetic Interactions in Chlamydomonas reinhardtii.
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- Genetics, 2009, v. 183, n. 3, p. 885, doi. 10.1534/genetics.109.101915
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- Article
Rearrangement of the flagellar apparatuses and eyespots of isogametes during the fertilization of the marine green alga, M onostroma nitidum ( Ulvophyceae, Chlorophyta).
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- Phycological Research, 2015, v. 63, n. 4, p. 284, doi. 10.1111/pre.12108
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- Article
Development of a 5′-nuclease PCR assay for the identification of Escherichia coli strains expressing the flagellar antigen H21 and their detection in food after enrichment.
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- Journal of Applied Microbiology, 2008, v. 104, n. 3, p. 899, doi. 10.1111/j.1365-2672.2007.03607.x
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- Article
A pleiotropic role of FlaG in regulating the cell morphogenesis and flagellar homeostasis at the cell poles of Treponema denticola.
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- Cellular Microbiology, 2019, v. 21, n. 2, p. N.PAG, doi. 10.1111/cmi.12886
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- Article
Autonomous control mechanism of stator assembly in the bacterial flagellar motor in response to changes in the environment.
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- Molecular Microbiology, 2018, v. 109, n. 6, p. 723, doi. 10.1111/mmi.14092
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The evolutionary impact of intragenic FliA promoters in proteobacteria.
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- Molecular Microbiology, 2018, v. 108, n. 4, p. 361, doi. 10.1111/mmi.13941
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Type-III secretion pore formed by flagellar protein FliP.
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- Molecular Microbiology, 2018, v. 107, n. 1, p. 94, doi. 10.1111/mmi.13870
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- Article
Structural stability of flagellin subunit affects the rate of flagellin export in the absence of FliS chaperone.
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- Molecular Microbiology, 2016, v. 102, n. 3, p. 405, doi. 10.1111/mmi.13469
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A scaffold protein connects type IV pili with the Chp chemosensory system to mediate activation of virulence signaling in Pseudomonas aeruginosa.
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- Molecular Microbiology, 2016, v. 101, n. 4, p. 590, doi. 10.1111/mmi.13410
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Rearrangements of α-helical structures of FlgN chaperone control the binding affinity for its cognate substrates during flagellar type III export.
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- Molecular Microbiology, 2016, v. 101, n. 4, p. 656, doi. 10.1111/mmi.13415
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- Article
A novel flagellar sheath protein, FcpA, determines filament coiling, translational motility and virulence for the Leptospira spirochete.
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- Molecular Microbiology, 2016, v. 101, n. 3, p. 457, doi. 10.1111/mmi.13403
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FlhG employs diverse intrinsic domains and influences FlhF GTPase activity to numerically regulate polar flagellar biogenesis in Campylobacter jejuni.
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- Molecular Microbiology, 2016, v. 99, n. 2, p. 291, doi. 10.1111/mmi.13231
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Comparative analysis of the secretion capability of early and late flagellar type III secretion substrates.
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- Molecular Microbiology, 2014, v. 93, n. 3, p. 505, doi. 10.1111/mmi.12675
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The mobility of two kinase domains in the Escherichia coli chemoreceptor array varies with signalling state.
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- Molecular Microbiology, 2013, v. 89, n. 5, p. 831, doi. 10.1111/mmi.12309
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Structural basis of FliG- FliM interaction in Helicobacter pylori.
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- Molecular Microbiology, 2013, v. 88, n. 4, p. 798, doi. 10.1111/mmi.12222
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- Article
Peptidoglycan maturation enzymes affect flagellar functionality in bacteria.
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- Molecular Microbiology, 2013, v. 88, n. 2, p. 456, doi. 10.1111/mmi.12205
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- Article