?Parasitism? refers to the successful invasion of and survival within a host by a microbe. The outcome of microbial infection is influenced by both host defense and microbial virulence factors. Advances in immunology, molecular biology, cell biology and host/microbial genetics have illuminated common themes governing the outcome of microbe-initiated diseases. Lessons learned from one infectious disease can enhance our understanding of diseases caused by another. This Mechanisms of Parasitism training program represents a union between the fields of parasitology, bacterial pathogenesis and immunology into a single program. Its goal is to enhance collaborative research and training among laboratories at the University of Iowa specializing in these disciplines, and in the process provide a rich environment for the development of trainees. Since its beginning four years ago, the Mechanisms in Parasitism program has funded 15 trainees, initiated a Research Retreat and Journal Club, sponsored outside speakers, and created a ?T32 room? to provide trainees with computerized support. During the coming grant period we additionally propose to expand the Journal club to a Parasitism Research Meeting, add faculty from the new and productive Inflammation Group, and initiate a ?target recruiting? approach for postdoctoral fellows. We propose to maintain our postdoctoral fellow positions at 3 but expand from 3 to 4 predoctoral trainee positions due to the number of high quality candidates we have had to turn down for funding. This program has provided a productive environment where there is exchange of creative ideas between faculty and trainees working on different aspects of microbial infection. We propose in this application to enhance the program and to further enrich our training environment during an additional five-year funding period.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Institutional National Research Service Award (T32)
Project #
5T32AI007511-09
Application #
6784535
Study Section
Microbiology and Infectious Diseases B Subcommittee (MID)
Program Officer
Mcsweegan, Edward
Project Start
1996-08-01
Project End
2006-07-31
Budget Start
2004-08-01
Budget End
2005-07-31
Support Year
9
Fiscal Year
2004
Total Cost
$211,527
Indirect Cost
Name
University of Iowa
Department
Biochemistry
Type
Schools of Medicine
DUNS #
062761671
City
Iowa City
State
IA
Country
United States
Zip Code
52242
Van Braeckel-Budimir, Natalija; Varga, Steven M; Badovinac, Vladimir P et al. (2018) Repeated Antigen Exposure Extends the Durability of Influenza-Specific Lung-Resident Memory CD8+ T Cells and Heterosubtypic Immunity. Cell Rep 24:3374-3382.e3
Janssen, Kayley H; Diaz, Manisha R; Gode, Cindy J et al. (2018) RsmV, a Small Noncoding Regulatory RNA in Pseudomonas aeruginosa That Sequesters RsmA and RsmF from Target mRNAs. J Bacteriol 200:
Janssen, Kayley H; Diaz, Manisha R; Golden, Matthew et al. (2018) Functional Analyses of the RsmY and RsmZ Small Noncoding Regulatory RNAs in Pseudomonas aeruginosa. J Bacteriol 200:
Grunewald, Matthew E; Fehr, Anthony R; Athmer, Jeremiah et al. (2018) The coronavirus nucleocapsid protein is ADP-ribosylated. Virology 517:62-68
Kinkead, Lauren C; Whitmore, Laura C; McCracken, Jenna M et al. (2018) Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition. Cell Microbiol 20:
Scorza, Breanna M; Carvalho, Edgar M; Wilson, Mary E (2017) Cutaneous Manifestations of Human and Murine Leishmaniasis. Int J Mol Sci 18:
Athmer, Jeremiah; Fehr, Anthony R; Grunewald, Matthew et al. (2017) In Situ Tagged nsp15 Reveals Interactions with Coronavirus Replication/Transcription Complex-Associated Proteins. MBio 8:
Clay, Gwendolyn M; Valadares, Diogo G; Graff, Joel W et al. (2017) An Anti-Inflammatory Role for NLRP10 in Murine Cutaneous Leishmaniasis. J Immunol 199:2823-2833
Davis, Richard E; Sharma, Smriti; Conceição, Jacilara et al. (2017) Phenotypic and functional characteristics of HLA-DR+ neutrophils in Brazilians with cutaneous leishmaniasis. J Leukoc Biol 101:739-749
Scorza, Breanna M; Wacker, Mark A; Messingham, Kelly et al. (2017) Differential Activation of Human Keratinocytes by Leishmania Species Causing Localized or Disseminated Disease. J Invest Dermatol 137:2149-2156

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