Personal information

Activities

Employment (1)

University of Texas Southwestern Medical Center: Dallas, TX, US

2004-06-01 to present | Principal Investigator (Microbiology)
Employment
Source: Self-asserted source
David Hendrixson

Education and qualifications (3)

University of Michigan Medical School: Ann Arbor, MI, US

1999-11-01 to 2004-05-31 | Post-doctoral Fellow (Microbiology and Immunology)
Qualification
Source: Self-asserted source
David Hendrixson

Washington University: Saint Louis, MO, US

1994-06-01 to 1999-09-21 | Ph.D. (Microbiology)
Education
Source: Self-asserted source
David Hendrixson

University of Arkansas: Fayetteville, AR, US

1990-08-27 to 1994-05-13 | B.S. (Microbiology)
Education
Source: Self-asserted source
David Hendrixson

Funding (8)

Control of Flagellar Filament Length by FlaG in Polarly-Flagellated Bacterial Pathogens

2021-09-22 to 2024-08-31 | Grant
National Institute of Allergy and Infectious Diseases (Bethesda, US)
GRANT_NUMBER: R21AI159140
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Impact of Microbiota-Generated Metabolites on Campylobacter jejuni Colonization

2019-08-07 to 2025-05-31 | Grant
Eunice Kennedy Shriver National Institute of Child Health and Human Development (Bethesda, US)
GRANT_NUMBER: R01HD095830
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Signal Transduction Pathways for Flagellar Gene Expression in Polar Flagellates

2015-07-01 to 2018-06-30 | Grant
National Institute of Allergy and Infectious Diseases (Bethesda, US)
GRANT_NUMBER: R21AI115362
Source: Self-asserted source
David Hendrixson via DimensionsWizard

REGULATION OF CAPSULAR POLYSACCHARIDE PRODUCTION IN CAMPYLOBACTER JEJUNI AND ITS ROLE IN HOST INTERACTIONS

2013-09-01 to 2016-08-31 | Grant
National Institute of Food and Agriculture (Washington D.C., US)
GRANT_NUMBER: 2009-35201-05039
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Structural Components of the Campylobacter jejuni Polar Flagellar Motor

2013-02-05 to 2016-01-31 | Grant
National Institute of Allergy and Infectious Diseases (Bethesda, US)
GRANT_NUMBER: R21AI103643
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Regulation of Capsular Polysaccharide Production in Campylobacter jejuni and its Role in Host Interactions

2009-01-15 to 2013-01-14 | Grant
National Institute of Food and Agriculture (Washington D.C., US)
GRANT_NUMBER: TEXR-2008-01453
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Factors of Campylobacter Jejuni Involved in Colonization of Poultry

2006-08-01 to 2010-07-31 | Grant
National Institute of Food and Agriculture (Washington D.C., US)
GRANT_NUMBER: TEXR-2006-01332
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Genetic Analysis of Campylobacter jejuni Colonization

2001-04-01 to 2004-03-31 | Grant
National Institute of Diabetes and Digestive and Kidney Diseases (Bethesda, US)
GRANT_NUMBER: F32DK059710
Source: Self-asserted source
David Hendrixson via DimensionsWizard

Works (50 of 52)

Items per page:
Page 1 of 2

FlaG competes with FliS-flagellin complexes for access to FlhA in the flagellar T3SS to control <i>Campylobacter jejuni</i> filament length.

Proceedings of the National Academy of Sciences of the United States of America
2024-10-23 | Journal article | Author
Contributors: Alexis Waller; Ribardo DA; David Hendrixson
Source: Self-asserted source
David Hendrixson

Evolution of a large periplasmic disk in Campylobacterota flagella enables both efficient motility and autoagglutination.

Developmental cell
2024-09-27 | Journal article
Contributors: Cohen EJ; Drobnič T; Ribardo DA; Yoshioka A; Umrekar T; Guo X; Fernandez JJ; Emma Elizabeth Brock; Wilson L; Daisuke Nakane et al.
Source: Self-asserted source
David Hendrixson

Infection-associated gene regulation of L-tartrate metabolism in <i>Salmonella enterica</i> serovar Typhimurium.

mBio
2024-04-29 | Journal article | Author
Contributors: Vivian K. Rojas; Winter MG; Jimenez AG; Tanner NW; Crockett SL; Spiga L; David Hendrixson; Sebastian Winter
Source: Self-asserted source
David Hendrixson

Viscosity-dependent determinants of <i>Campylobacter jejuni</i> impacting the velocity of flagellar motility.

mBio
2023-12-12 | Journal article | Author
Contributors: Ribardo DA; Jeremiah Johnson; David Hendrixson
Source: Self-asserted source
David Hendrixson

Role of the major determinant of polar flagellation FlhG in the endoflagella-containing spirochete Leptospira.

Molecular microbiology
2021-10-30 | Journal article
Contributors: Fule L; Halifa R; Fontana C; Sismeiro O; Rachel LEGENDRE; Varet H; Coppée JY; Gerald Murray; Adler B; Hendrixson DR et al.
Source: Self-asserted source
David Hendrixson

Campylobacter jejuni motility integrates specialized cell shape, flagellar filament, and motor, to coordinate action of its opposed flagella.

PLoS pathogens
2020-07-02 | Journal article
Contributors: Cohen EJ; Daisuke Nakane; Kabata Y; Hendrixson DR; Nishizaka T; Morgan Beeby
Source: Self-asserted source
David Hendrixson

<i>Campylobacter jejuni</i> BumSR directs a response to butyrate via sensor phosphatase activity to impact transcription and colonization.

Proceedings of the National Academy of Sciences of the United States of America
2020-05-12 | Journal article | Author
Contributors: Kyle Goodman; Powers MJ; Crofts AA; M. Stephen Trent; David Hendrixson
Source: Self-asserted source
David Hendrixson

Binding of Phage-Encoded FlaGrab to Motile <i>Campylobacter jejuni</i> Flagella Inhibits Growth, Downregulates Energy Metabolism, and Requires Specific Flagellar Glycans.

Frontiers in microbiology
2020-03-20 | Journal article
Contributors: Jessica Sacher; Asif Shajahan; James Butcher; Patry RT; Flint A; Hendrixson DR; Stintzi A; Azadi P; Szymanski CM
Source: Self-asserted source
David Hendrixson

A Polar Flagellar Transcriptional Program Mediated by Diverse Two-Component Signal Transduction Systems and Basal Flagellar Proteins Is Broadly Conserved in Polar Flagellates.

mBio
2020-03-03 | Journal article | Author
Contributors: Peter Burnham; Kolar WP; David Hendrixson
Source: Self-asserted source
David Hendrixson

Diversification of Campylobacter jejuni Flagellar C-Ring Composition Impacts Its Structure and Function in Motility, Flagellar Assembly, and Cellular Processes.

mBio
2020-01-07 | Journal article | Author
Contributors: Louie Derek Henderson; Teige Matthews-Palmer; Connor Gulbronson; Ribardo DA; Morgan Beeby; David Hendrixson
Source: Self-asserted source
David Hendrixson

A Chaperone for the Stator Units of a Bacterial Flagellum.

mBio
2019-08-06 | Journal article | Author
Contributors: Ribardo DA; Kelley BR; Jeremiah Johnson; David Hendrixson
Source: Self-asserted source
David Hendrixson

<i>Campylobacter jejuni</i> promotes colorectal tumorigenesis through the action of cytolethal distending toxin.

Gut
2018-10-30 | Journal article
Contributors: Zhen He; Gharaibeh RZ; Newsome RC; Pope JL; Michael W Dougherty; Sarah Tomkovich; Benoît J. Pons; Gladys Mirey; Julien Vignard; Hendrixson DR et al.
Source: Self-asserted source
David Hendrixson

Campylobacter jejuni: collective components promoting a successful enteric lifestyle.

Nature reviews. Microbiology
2018-09-01 | Journal article
Contributors: Peter Burnham; Hendrixson DR
Source: Self-asserted source
David Hendrixson

FliW controls growth-phase expression of Campylobacter jejuni flagellar and non-flagellar proteins via the post-transcriptional regulator CsrA.

Microbiology (Reading, England)
2018-08-16 | Journal article
Contributors: Li J; Connor Gulbronson; Bogacz M; Hendrixson DR; Stuart Thompson
Source: Self-asserted source
David Hendrixson

Microbiota-Derived Short-Chain Fatty Acids Modulate Expression of <i>Campylobacter jejuni</i> Determinants Required for Commensalism and Virulence.

mBio
2017-05-09 | Journal article
Contributors: Luethy PM; Huynh S; Ribardo DA; Sebastian Winter; Craig Thomas Parker; Hendrixson DR
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

Campylobacter jejuni CsrA Regulates Metabolic and Virulence Associated Proteins and Is Necessary for Mouse Colonization.

PloS one
2016-06-03 | Journal article
Contributors: Fields JA; Li J; Connor Gulbronson; Hendrixson DR; Stuart Thompson
Source: Self-asserted source
David Hendrixson

Diverse high-torque bacterial flagellar motors assemble wider stator rings using a conserved protein scaffold.

Proceedings of the National Academy of Sciences of the United States of America
2016-03-14 | Journal article
Contributors: Morgan Beeby; Ribardo DA; Caitlin Brennan; Ruby EG; Jensen GJ; Hendrixson DR
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

FlhG employs diverse intrinsic domains and influences FlhF GTPase activity to numerically regulate polar flagellar biogenesis in Campylobacter jejuni.

Molecular microbiology
2015-10-30 | Journal article
Contributors: Connor Gulbronson; Ribardo DA; Balaban M; Knauer C; Gert Bange; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Analysis of the activity and regulon of the two-component regulatory system composed by Cjj81176_1484 and Cjj81176_1483 of Campylobacter jejuni.

Journal of bacteriology
2015-02-17 | Journal article
Contributors: Luethy PM; Huynh S; Craig Thomas Parker; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Flagellar biosynthesis exerts temporal regulation of secretion of specific Campylobacter jejuni colonization and virulence determinants.

Molecular microbiology
2014-07-30 | Journal article
Contributors: Barrero-Tobon AM; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Hemerythrins in the microaerophilic bacterium Campylobacter jejuni help protect key iron-sulphur cluster enzymes from oxidative damage.

Environmental microbiology
2013-12-17 | Journal article
Contributors: Kendall JJ; Barrero-Tobon AM; Hendrixson DR; Kelly DJ
Source: Self-asserted source
David Hendrixson

A regulatory checkpoint during flagellar biogenesis in Campylobacter jejuni initiates signal transduction to activate transcription of flagellar genes.

mBio
2013-09-03 | Journal article
Contributors: Joseph Boll; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Spatial and numerical regulation of flagellar biosynthesis in polarly flagellated bacteria.

Molecular microbiology
2013-04-21 | Journal article
Contributors: Barbara Kazmierczak; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Architecture of the major component of the type III secretion system export apparatus.

Nature structural & molecular biology
2012-12-09 | Journal article
Contributors: Abrusci P; Vergara-Irigaray M; Steven Johnson; Morgan Beeby; Hendrixson DR; Pietro Roversi; Friede ME; Janet Deane; Jensen GJ; Tang CM et al.
Source: Self-asserted source
David Hendrixson

EptC of Campylobacter jejuni mediates phenotypes involved in host interactions and virulence.

Infection and immunity
2012-11-26 | Journal article
Contributors: Cullen TW; O'Brien JP; Hendrixson DR; David K. Giles; Hobb RI; Stuart Thompson; Brodbelt JS; Trent MS
Source: Self-asserted source
David Hendrixson

Identification and analysis of flagellar coexpressed determinants (Feds) of Campylobacter jejuni involved in colonization.

Molecular microbiology
2012-03-15 | Journal article
Contributors: Barrero-Tobon AM; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Polar flagellar biosynthesis and a regulator of flagellar number influence spatial parameters of cell division in Campylobacter jejuni.

PLoS pathogens
2011-12-01 | Journal article
Contributors: Balaban M; Hendrixson DR
Source: Self-asserted source
David Hendrixson

A specificity determinant for phosphorylation in a response regulator prevents in vivo cross-talk and modification by acetyl phosphate.

Proceedings of the National Academy of Sciences of the United States of America
2011-11-29 | Journal article
Contributors: Joseph Boll; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Analysis of the LIV system of Campylobacter jejuni reveals alternative roles for LivJ and LivK in commensalism beyond branched-chain amino acid transport.

Journal of bacteriology
2011-09-23 | Journal article
Contributors: Ribardo DA; Hendrixson DR
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

Structural diversity of bacterial flagellar motors.

The EMBO journal
2011-06-14 | Journal article
Contributors: Chen S; Morgan Beeby; Murphy GE; Jared Leadbetter; Hendrixson DR; Ariane Briegel; Li Z; Shi J; Tocheva EI; Müller A et al.
Source: Self-asserted source
David Hendrixson

Change is good: variations in common biological mechanisms in the epsilonproteobacterial genera Campylobacter and Helicobacter.

Microbiology and molecular biology reviews : MMBR
2011-03-01 | Journal article
Contributors: Gilbreath JJ; Cody WL; Merrell DS; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Motility and chemotaxis in Campylobacter and Helicobacter .

Annual review of microbiology
2011-01-01 | Journal article
Contributors: Lertsethtakarn P; Karen Ottemann; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Functional analysis of the RdxA and RdxB nitroreductases of Campylobacter jejuni reveals that mutations in rdxA confer metronidazole resistance.

Journal of bacteriology
2010-01-29 | Journal article
Contributors: Ribardo DA; Bingham-Ramos LK; Hendrixson DR
Source: Self-asserted source
David Hendrixson

FlhF and its GTPase activity are required for distinct processes in flagellar gene regulation and biosynthesis in Campylobacter jejuni.

Journal of bacteriology
2009-08-28 | Journal article
Contributors: Balaban M; Joslin SN; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Activation of the Campylobacter jejuni FlgSR two-component system is linked to the flagellar export apparatus.

Journal of bacteriology
2009-02-06 | Journal article
Contributors: Joslin SN; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Restoration of flagellar biosynthesis by varied mutational events in Campylobacter jejuni.

Molecular microbiology
2008-08-29 | Journal article
Contributors: Hendrixson DR
Source: Self-asserted source
David Hendrixson

Skim milk enhances the preservation of thawed -80 degrees C bacterial stocks.

Journal of microbiological methods
2008-05-14 | Journal article
Contributors: Cody WL; Wilson JW; Hendrixson DR; Kevin McIver; Hagman KE; C. Mark Ott; Nickerson CA; Michael J. Schurr
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

Analysis of the Campylobacter jejuni FlgR response regulator suggests integration of diverse mechanisms to activate an NtrC-like protein.

Journal of bacteriology
2008-01-25 | Journal article
Contributors: Joslin SN; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Characterization of two putative cytochrome c peroxidases of Campylobacter jejuni involved in promoting commensal colonization of poultry.

Infection and immunity
2007-12-17 | Journal article
Contributors: Bingham-Ramos LK; Hendrixson DR
Source: Self-asserted source
David Hendrixson

Analysis of the roles of FlgP and FlgQ in flagellar motility of Campylobacter jejuni.

Journal of bacteriology
2006-10-13 | Journal article
Contributors: Sommerlad SM; Hendrixson DR
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

A phase-variable mechanism controlling the Campylobacter jejuni FlgR response regulator influences commensalism.

Molecular microbiology
2006-08-08 | Journal article
Contributors: Hendrixson DR
Source: Self-asserted source
David Hendrixson

Identification of Campylobacter jejuni genes involved in commensal colonization of the chick gastrointestinal tract.

Molecular microbiology
2004-04-01 | Journal article
Contributors: Hendrixson DR; Victor DiRita
Source: Self-asserted source
David Hendrixson

Transcription of sigma54-dependent but not sigma28-dependent flagellar genes in Campylobacter jejuni is associated with formation of the flagellar secretory apparatus.

Molecular microbiology
2003-10-01 | Journal article
Contributors: Hendrixson DR; DiRita VJ
Source: Self-asserted source
David Hendrixson

Natural transformation of Campylobacter jejuni requires components of a type II secretion system.

Journal of bacteriology
2003-09-01 | Journal article
Contributors: Wiesner RS; Hendrixson DR; DiRita VJ
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

Human milk lactoferrin is a serine protease that cleaves Haemophilus surface proteins at arginine-rich sites.

Molecular microbiology
2003-02-01 | Journal article
Contributors: Hendrixson DR; Qiu J; Shewry SC; Fink DL; Petty S; Edward Baker; Plaut AG; St Geme JW 3rd
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

Transposon mutagenesis of Campylobacter jejuni identifies a bipartite energy taxis system required for motility.

Molecular microbiology
2001-04-01 | Journal article
Contributors: Hendrixson DR; Brian Akerley; Victor DiRita
Source: Self-asserted source
David Hendrixson

Secretion of virulence determinants by the general secretory pathway in gram-negative pathogens: an evolving story.

Microbes and infection
2000-07-01 | Journal article
Contributors: Stathopoulos C; Hendrixson DR; Thanassi DG; Hultgren SJ; St Geme JW 3rd; Curtiss R 3rd
Source: Self-asserted source
David Hendrixson

Molecular determinants of the pathogenesis of disease due to non-typable Haemophilus influenzae.

FEMS microbiology reviews
1999-04-01 | Journal article
Contributors: Rao VK; Krasan GP; Hendrixson DR; Dawid S; St Geme JW 3rd
Source: Self-asserted source
David Hendrixson

The Haemophilus influenzae Hap serine protease promotes adherence and microcolony formation, potentiated by a soluble host protein.

Molecular cell
1998-12-01 | Journal article
PMID: 9885571
Contributors: Hendrixson DR; St Geme JW 3rd
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎

Human milk lactoferrin inactivates two putative colonization factors expressed by Haemophilus influenzae.

Proceedings of the National Academy of Sciences of the United States of America
1998-10-01 | Journal article
PMID: 9770539
Contributors: Qiu J; Hendrixson DR; Edward Baker; Timothy Murphy; St Geme JW 3rd; Plaut AG
Source: Self-asserted source
David Hendrixson
grade
Preferred source (of 2)‎
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