Picture of Jon Clardy

Jon Clardy, Ph.D.

Christopher T. Walsh Professor of Biological Chemistry and Molecular Pharmacology

The laboratory focuses on biologically active small molecules, especially those from bacteria and fungi with an overall goal of understanding how small molecules control biological processes. 

Research:

The laboratory focuses on biologically active small molecules, especially those from bacteria and fungi with an overall goal of understanding how small molecules control biological processes.  Organizing themes include: 1) function-based discovery of microbially-produced small molecules and their roles in microbial symbioses , 2) function-based discovery of biologically active small molecules using high-throughput screening,  3) genome-based discovery of bacterially-produced small molecules. 

1.  We have focused on the small molecule exchanges that underlie multilateral symbioses involving bacteria, partly because they are widespread and poorly understood and partly because they lead to the discovery of new useful molecules in the biological context in which they evolved.  Current projects involve the bacterial symbionts of fungus-growing ants, members of the human gut microbiome linked to disease, and interactions between micro-algae and bacteria.

2.  We also continue to discover small molecules in a more medically relevant context: high-throughput screening for a variety of diseases.  In these projects we have focused on antibacterial, antifungal, and antiparasitic agents along with immunomodulators and anticancer agents. 

3.  It is now quite clear that well studied bacteria – the producers of drugs that are used on the ton scale, for example – are genetically capable of producing many more potentially useful small molecules.  The biosynthetic gene can be seen but the associated molecules have never been characterized.  Ways to access these cryptic metabolites is a current focus of the laboratory.

Address: 

Room C-643

240 Longwood Avenue

Boston, MA 02115

Publications View
Dynamics of Snake-like Swarming Behavior of Vibrio alginolyticus.
Authors: Authors: Böttcher T, Elliott HL, Clardy J.
Biophys J
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Draft Genome Sequence of Shewanella sp. Strain P1-14-1, a Bacterial Inducer of Settlement and Morphogenesis in Larvae of the Marine Hydroid Hydractinia echinata.
Authors: Authors: Rischer M, Klassen JL, Wolf T, Guo H, Shelest E, Clardy J, Beemelmanns C.
Genome Announc
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Natural Product Screening Reveals Naphthoquinone Complex I Bypass Factors.
Authors: Authors: Vafai SB, Mevers E, Higgins KW, Fomina Y, Zhang J, Mandinova A, Newman D, Shaw SY, Clardy J, Mootha VK.
PLoS One
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Draft Genome Sequences of Six Pseudoalteromonas Strains, P1-7a, P1-9, P1-13-1a, P1-16-1b, P1-25, and P1-26, Which Induce Larval Settlement and Metamorphosis in Hydractinia echinata.
Authors: Authors: Klassen JL, Wolf T, Rischer M, Guo H, Shelest E, Clardy J, Beemelmanns C.
Genome Announc
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Discovery of Dual-Stage Malaria Inhibitors with New Targets.
Authors: Authors: Raphemot R, Lafuente-Monasterio MJ, Gamo-Benito FJ, Clardy J, Derbyshire ER.
Antimicrob Agents Chemother
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Genome Sequences of Three Pseudoalteromonas Strains (P1-8, P1-11, and P1-30), Isolated from the Marine Hydroid Hydractinia echinata.
Authors: Authors: Klassen JL, Rischer M, Wolf T, Guo H, Shelest E, Clardy J, Beemelmanns C.
Genome Announc
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A Rebeccamycin Analog Provides Plasmid-Encoded Niche Defense.
Authors: Authors: Van Arnam EB, Ruzzini AC, Sit CS, Currie CR, Clardy J.
J Am Chem Soc
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Variable genetic architectures produce virtually identical molecules in bacterial symbionts of fungus-growing ants.
Authors: Authors: Sit CS, Ruzzini AC, Van Arnam EB, Ramadhar TR, Currie CR, Clardy J.
Proc Natl Acad Sci U S A
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Actinoramide A Identified as a Potent Antimalarial from Titration-Based Screening of Marine Natural Product Extracts.
Authors: Authors: Cheng KC, Cao S, Raveh A, MacArthur R, Dranchak P, Chlipala G, Okoneski MT, Guha R, Eastman RT, Yuan J, Schultz PJ, Su XZ, Tamayo-Castillo G, Matainaho T, Clardy J, Sherman DH, Inglese J.
J Nat Prod
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Identification of a Dual Inhibitor of Janus Kinase 2 (JAK2) and p70 Ribosomal S6 Kinase1 (S6K1) Pathways.
Authors: Authors: Byun S, Lim S, Mun JY, Kim KH, Ramadhar TR, Farrand L, Shin SH, Thimmegowda NR, Lee HJ, Frank DA, Clardy J, Lee SW, Lee KW.
J Biol Chem
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