A variety of indirect data exist which, in aggregate, suggest that exocytosis can alter tight junction structure and/or permeability. These experiments are designed to assess the feasibility of utilizing a homogenous epithelia monolayer derived from a human intestinal cell line to study the effects of exocytosis on tight junction structure and permeability. To accomplish this goal we will utilize the 18N2 clone of the HT29 cell line which was derived from a human colonic carcinoma. HT 29-18N2 cells differentiate as goblet cells, grow as monolayers on coverslips, and respond to cholinergic stimulation with exocytosis of mucin granule content. We will first attempt to identify conditions under which HT2918N2 cells can be grown on permeable supports as confluent monolayers from which electrophysical and flux data can be obtained. Using physiological techniques we will then ascertain if stimulated exocytosis perturbs tight junction barrier function. Using electron microscopy and freeze fracture techniques we will define the effects which exocytosis exert on tight junction structure. Lastly we will define and inter-relate physiological and structural events which occur as monolayers recover from stimulated exocytosis. These studies may yield insights into how local events such as exocytosis influence tight junction barrier function. These studies may also define methods whereby electrophysiological studies can be performed on homogeneous, flat, easily manipulated monolayers composed entirely of one of the major subtypes of cells in the intestinal epithelium - the goblet cell.

Project Start
Project End
Budget Start
Budget End
Support Year
8
Fiscal Year
1991
Total Cost
Indirect Cost
Name
Harvard University
Department
Type
DUNS #
082359691
City
Boston
State
MA
Country
United States
Zip Code
02115
Hong, Shangyu; Song, Wei; Zushin, Peter-James H et al. (2018) Phosphorylation of Beta-3 adrenergic receptor at serine 247 by ERK MAP kinase drives lipolysis in obese adipocytes. Mol Metab 12:25-38
Aden, Konrad; Tran, Florian; Ito, Go et al. (2018) ATG16L1 orchestrates interleukin-22 signaling in the intestinal epithelium via cGAS-STING. J Exp Med 215:2868-2886
Smillie, Christopher S; Sauk, Jenny; Gevers, Dirk et al. (2018) Strain Tracking Reveals the Determinants of Bacterial Engraftment in the Human Gut Following Fecal Microbiota Transplantation. Cell Host Microbe 23:229-240.e5
Sallis, Benjamin F; Acar, Utkucan; Hawthorne, Kelsey et al. (2018) A Distinct Esophageal mRNA Pattern Identifies Eosinophilic Esophagitis Patients With Food Impactions. Front Immunol 9:2059
Li, Katherine; Strauss, Richard; Ouahed, Jodie et al. (2018) Molecular Comparison of Adult and Pediatric Ulcerative Colitis Indicates Broad Similarity of Molecular Pathways in Disease Tissue. J Pediatr Gastroenterol Nutr 67:45-52
Li, Yang; Fu, Tian-Min; Lu, Alvin et al. (2018) Cryo-EM structures of ASC and NLRC4 CARD filaments reveal a unified mechanism of nucleation and activation of caspase-1. Proc Natl Acad Sci U S A 115:10845-10852
Morris, Hayley T; Fort, Loic; Spence, Heather J et al. (2018) Loss of N-WASP drives early progression in an Apc model of intestinal tumourigenesis. J Pathol 245:337-348
Panchal, Pratik; Budree, Shrish; Scheeler, Alex et al. (2018) Correction to: Scaling Safe Access to Fecal Microbiota Transplantation: Past, Present, and Future. Curr Gastroenterol Rep 20:28
O'Connell, Amy E; Zhou, Fanny; Shah, Manasvi S et al. (2018) Neonatal-Onset Chronic Diarrhea Caused by Homozygous Nonsense WNT2B Mutations. Am J Hum Genet 103:131-137
Allegretti, J R; Allegretti, A S; Phelps, E et al. (2018) Asymptomatic Clostridium difficile carriage rate post-fecal microbiota transplant is low: a prospective clinical and stool assessment. Clin Microbiol Infect 24:780.e1-780.e3

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