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The Innate Immune Glycoprotein Lactoferrin Represses the Helicobacter pylori cag Type IV Secretion System
Authors:Jacky Lu  Kathryn P Haley  Jamisha D Francis  Miriam A Guevara  Ryan S Doster  Kelly M Craft  Rebecca E Moore  Schuyler A Chambers  Alberto G Delgado  Maria Blanca Piazuelo  Steven M Damo  Dr Steven D Townsend  Dr Jennifer A Gaddy
Affiliation:1. Department of Medicine- Division of Infectious Diseases, Vanderbilt University Medical Center, A2200 Medical Center North, 1161 21st Avenue South, Nashville, Tennessee, 37232 USA;2. Department of Biology, Grand Valley State University Allendale, Michigan, 49401 USA;3. Department of Medicine, Vanderbilt University Medical Center, Nashville, Tennessee, 37232 USA;4. Department of Chemistry, Vanderbilt University, SC?7300 Stevenson Science Center, 1234 Stevenson Center Lane, Nashville, Tennessee, 37235 USA;5. Department of Life and Physical Sciences, Fisk University, Nashville, Tennessee, 37208 USA

Department of Biochemistry, Vanderbilt University, Nashville, Tennessee, 37232 USA

Center for Structural Biology, Vanderbilt University, Nashville, Tennessee, 37232 USA

Abstract:Chronic infection with Helicobacter pylori increases risk of gastric diseases including gastric cancer. Despite development of a robust immune response, H. pylori persists in the gastric niche. Progression of gastric inflammation to serious disease outcomes is associated with infection with H. pylori strains which encode the cag Type IV Secretion System (cag T4SS). The cag T4SS is responsible for translocating the oncogenic protein CagA into host cells and inducing pro-inflammatory and carcinogenic signaling cascades. Our previous work demonstrated that nutrient iron modulates the activity of the T4SS and biogenesis of T4SS pili. In response to H. pylori infection, the host produces a variety of antimicrobial molecules, including the iron-binding glycoprotein, lactoferrin. Our work shows that apo-lactoferrin exerts antimicrobial activity against H. pylori under iron-limited conditions, while holo-lactoferrin enhances bacterial growth. Culturing H. pylori in the presence of holo-lactoferrin prior to co-culture with gastric epithelial cells, results in repression of the cag T4SS activity. Concomitantly, a decrease in biogenesis of cag T4SS pili at the host-pathogen interface was observed under these culture conditions by high-resolution electron microscopy analyses. Taken together, these results indicate that acquisition of alternate sources of nutrient iron plays a role in regulating the pro-inflammatory activity of a bacterial secretion system and present novel therapeutic targets for the treatment of H. pylori-related disease.
Keywords:antimicrobial  bacterial pathogenesis  glycobiology  Helicobacter pylori  host-pathogen interactions  innate immunity  iron homeostasis  lactoferrin  toxin secretion  virulence
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