Diet-induced obesity (DIO) and adult onset diabetes (AODM), which are reaching epidemic proportions in industrialized nations, may be considered as aberrant physiological responses induced by recent lifestyle alterations in genetically predisposed individuals. Intestinal parasitic nematode infections, which have a significant effect on the nutritional status of the host, in general, and on glucose utilization, in particular, provide a link between nutrition and the immune response. We now provide evidence that mouse strains that are prone to DIO and AODM are also susceptible to chronic infection, whereas mice strains that have a lean phenotype are resistant to nematode infections. In Preliminary Data, we show that two genes of the RELM/FIZZ family, known as resistin and RELMbeta, play an important role in glucose metabolism and resistance to intestinal parasitic nematode infections, respectively. RELMbeta expression can be induced in lean/resistant strains of mice, whereas resistin protein is most highly expressed in obese/susceptible strains. We also show that the adipokine, leptin, augments the expression of RELMbeta during Th2-mediated immune stimulation, supporting the premise that leptin is a critical link between DIO, metabolism, and the inflammatory response to parasitic infections. We therefore hypothesize that leptin regulates both the metabolic response and the immune-activated expression of RELMbeta, allowing effective adaptation of the host to parasitic nematode infections of the intestinal tract. Through the study of intestinal nematode infections, measurements of immunologic and metabolic parameters, studies of RELMbeta gene regulation, and the examination of RELMbeta-/- and resistin-/- mice, we propose to use RELMbeta and resistin as models to elucidate leptin-dependent and -independent differences in the host response that are genetically determined in inbred strains of mice. These studies will provide novel insights into the mechanisms by which nutrition affects metabolic and immunologic responses to intestinal parasitic infections.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI039368-12
Application #
7070001
Study Section
Gastrointestinal Mucosal Pathobiology Study Section (GMPB)
Program Officer
Rothermel, Annette L
Project Start
1995-07-01
Project End
2010-02-28
Budget Start
2006-03-01
Budget End
2007-02-28
Support Year
12
Fiscal Year
2006
Total Cost
$371,461
Indirect Cost
Name
University of Pennsylvania
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Bryson, Alexandra L; Hwang, Young; Sherrill-Mix, Scott et al. (2015) Covalent Modification of Bacteriophage T4 DNA Inhibits CRISPR-Cas9. MBio 6:e00648
Dollive, Serena; Chen, Ying-Yu; Grunberg, Stephanie et al. (2013) Fungi of the murine gut: episodic variation and proliferation during antibiotic treatment. PLoS One 8:e71806
Han, Daehee; Walsh, Matthew C; Cejas, Pedro J et al. (2013) Dendritic cell expression of the signaling molecule TRAF6 is critical for gut microbiota-dependent immune tolerance. Immunity 38:1211-22
Dollive, Serena; Peterfreund, Gregory L; Sherrill-Mix, Scott et al. (2012) A tool kit for quantifying eukaryotic rRNA gene sequences from human microbiome samples. Genome Biol 13:R60
Albenberg, Lindsey G; Lewis, James D; Wu, Gary D (2012) Food and the gut microbiota in inflammatory bowel diseases: a critical connection. Curr Opin Gastroenterol 28:314-20
Minot, Samuel; Grunberg, Stephanie; Wu, Gary D et al. (2012) Hypervariable loci in the human gut virome. Proc Natl Acad Sci U S A 109:3962-6
Wu, Gary D; Chen, Jun; Hoffmann, Christian et al. (2011) Linking long-term dietary patterns with gut microbial enterotypes. Science 334:105-8
Minot, Samuel; Sinha, Rohini; Chen, Jun et al. (2011) The human gut virome: inter-individual variation and dynamic response to diet. Genome Res 21:1616-25
Wu, Gary D; Lewis, James D; Hoffmann, Christian et al. (2010) Sampling and pyrosequencing methods for characterizing bacterial communities in the human gut using 16S sequence tags. BMC Microbiol 10:206
Hildebrandt, Marie A; Hoffmann, Christian; Sherrill-Mix, Scott A et al. (2009) High-fat diet determines the composition of the murine gut microbiome independently of obesity. Gastroenterology 137:1716-24.e1-2

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