Linda J KenneyManagement2020-02-03T15:31:05+08:00
Linda J Kenney

Linda J Kenney

Alumni

Research Areas

Signal transduction in bacteria; Bacterial Pathogenesis; Mechanotransduction and osmotic signaling in E. coli; Mechanisms of anti-silencing of virulence genes in Salmonella

Research Interests

Our laboratory is interested in signal transduction and the regulation of gene expression in prokaryotes. In particular, we are studying the two-component regulatory system EnvZ/OmpR that regulates the expression of outer membrane proteins as well as many other genes. Our present work focuses on how OmpR activates genes required for systemic infection (located on Salmonella pathogenicity island 2) in Salmonella enterica.

The Kenney Lab’s research was recently featured in an article exploring the bacterial molecular switch between virulence or dormancy, Salmonella Lifestyle Choices. Members of her lab have discovered that the bacterial protein SsrB is the molecular switch for determining whether Salmonella infections become acute and virulent, or remain in a dormant carrier state.

The study is published in eLife (Desai et al., The horizontally-acquired response regulator SsrB drives a Salmonella lifestyle switch by relieving biofilm silencing, February 2, 2016, eLife 2016; 5: e10747, doi: 10.7554/eLife.10747). Read full article.

Biography

Dr Kenney is a Professor of Microbiology at the University of Illinois-Chicago. Her laboratory studies two-component systems in bacteria that control gene expression at a single cell and nanometer level.

Professor Linda J Kenney and Professor Michael Sheetz interviewed by the Washington Post at the April 2017 March for Science.

Education

PhD University of Pennsylvania

Recent Publications

  1. Fernandez M, Yamanaka Y, Zangoui P, White MA, and Kenney LJ. The sulfur assimilation pathway mitigates redox stress from acidic pH in Salmonella Typhi H58. mBio 2025;:e0046725. [PMID: 40422406]
  2. Shetty D, and Kenney LJ. A pH-sensitive switch activates virulence in Salmonella. Elife 2023; 12. [PMID: 37706506]
  3. Oh D, Liu X, Sheetz MP, and Kenney LJ. Small, Dynamic Clusters of Tir-Intimin Seed Actin Polymerization. Small 2023;:e2302580. [PMID: 37649226]
  4. Mon KKZ, Si Z, Chan-Park MB, and Kenney LJ. Polyimidazolium Protects against an Invasive Clinical Isolate of Salmonella Typhimurium. Antimicrob Agents Chemother 2022;:e0059722. [PMID: 36094258]
  5. Jacob H, Geng H, Shetty D, Halow N, Kenney LJ, and Nakano MM. Distinct Interaction Mechanism of RNAP and ResD and Distal Subsites for Transcription Activation of Nitrite Reductase in Bacillus subtilisψ. J Bacteriol 2021;:JB0043221. [PMID: 34898263]
  6. Singh MK, Zangoui P, Yamanaka Y, and Kenney LJ. Genetic code expansion enables visualization of Salmonella type three secretion system components and secreted effectors. Elife 2021; 10. [PMID: 34061032]
  7. Kenney LJ, and Anand GS. EnvZ/OmpR Two-Component Signaling: An Archetype System That Can Function Noncanonically. EcoSal Plus 2020; 9(1). [PMID: 32003321]
  8. Desai SK, and Kenney LJ. Switching Lifestyles Is an in vivo Adaptive Strategy of Bacterial Pathogens. Front Cell Infect Microbiol 2019; 9:421. [PMID: 31921700]
  9. Desai SK, Padmanabhan A, Harshe S, Zaidel-Bar R, and Kenney LJ. Salmonella biofilms program innate immunity for persistence in Caenorhabditis elegans. Proc. Natl. Acad. Sci. U.S.A. 2019;. [PMID: 31160462]
  10. Ottemann KM, and Kenney LJ. Editorial overview: Host-pathogen interactions: bacteria. Curr. Opin. Microbiol. 2019; 47:iii-v. [PMID: 31138403]

Lab Members

Stefan Mueller

Apr 5th, 2022|Comments Off on Stefan Mueller

Research Fellow, Li Group

Hepi Hari Susapto

Apr 5th, 2022|Comments Off on Hepi Hari Susapto

Research Fellow, Young Group

Choosing Sides

Feb 4th, 2022|Comments Off on Choosing Sides

The Scientist magazine features the work of Prof Alexander Bershadsky and Senior Research Fellow Dr Yee Han Tee in their February 2022 TS:Digest cover story on cell chirality

Finding order through repulsion

Jan 28th, 2022|Comments Off on Finding order through repulsion

A collaborative study from the Saunders Lab and the Telley Lab at Instituto Gulbenkian de Ciência, Portugal, demonstrates how mechanical repulsive forces lead to precise arrangement of nuclei during development Learn more

  • Li Lab_Cui Hongyue

Cui Hongyue

Jan 27th, 2022|Comments Off on Cui Hongyue

PhD Student, Class of August 2021, Li Group

Understanding the effects of aneuploidy

Jan 13th, 2022|Comments Off on Understanding the effects of aneuploidy

A review from Prof Rong Li and Dr. Jin Zhu outlines the the causes of aneuploidy and how it can affect cell behaviour and function. Learn more

Hugo Raveton

Jan 13th, 2022|Comments Off on Hugo Raveton

Intern, Chan Group

  • Yu Lab_Kwang Leng Gek

Kwang Leng Gek

Jan 4th, 2022|Comments Off on Kwang Leng Gek

PhD Student, Class of August 2021, Yu Group

  • Holle Lab_Nicole Lee

Lee Jia Wen Nicole

Jan 4th, 2022|Comments Off on Lee Jia Wen Nicole

PhD Student, Class of August 2021, Holle Group

  • Yan Lab_Guo Yanyu

Guo Yanyu

Dec 29th, 2021|Comments Off on Guo Yanyu

Research Fellow, Class of August 2021, Yan Jie Group

  • Li Lab_Shu Chang

Shu Chang

Dec 17th, 2021|Comments Off on Shu Chang

PhD Student, Class of August 2021, Li Group

About the National University of Singapore

About NUSA leading global university centred in Asia, NUS is Singapore's flagship university, offering a global approach to education and research with a focus on Asian perspectives and expertise.

About the Mechanobiology Institute, National University of Singapore

About MBIOne of four Research Centres of Excellence at NUS, MBI is working to identify, measure and describe how the forces for motility and morphogenesis are expressed at the molecular, cellular and tissue level.
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