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1. Targeting of secretory vesicles to cytoplasmic domains in AtT-20 and PC-12 cells

3. Prostate multi-parametric magnetic resonance imaging appearance of diffuse adenosis of the peripheral zone (DAPZ).

4. Inducible expression of immediate early genes is regulated through dynamic chromatin association by NF45/ILF2 and NF90/NF110/ILF3.

5. Anterior Gradient 2 (AGR2) Induced Epidermal Growth Factor Receptor (EGFR) Signaling Is Essential for Murine Pancreatitis-Associated Tissue Regeneration.

6. Epidermal growth factor receptor (EGFR) signaling requires a specific endoplasmic reticulum thioredoxin for the post-translational control of receptor presentation to the cell surface.

7. Correction of postprandial hypoglycemia after gastric bypass.

8. Conversion of hepatic biliary cells to hepatocytes in zebrafish.

10. Insights into cell lineage of pancreatic adenocarcinoma.

11. Subcutaneous golimumab therapy for ulcerative colitis.

13. Leptin receptor somatic mutations in HCV-related cirrhosis.

17. Detection of pancreatic ductal adenocarcinoma in mice by ultrasound imaging of thymocyte differentiation antigen 1.

18. Results from early therapy with azathioprine in Crohn's disease.

19. Loss of anterior gradient 2 (Agr2) expression results in hyperplasia and defective lineage maturation in the murine stomach.

20. Diagnostic accuracy of cyst fluid amphiregulin in pancreatic cysts.

21. AGR2 gene function requires a unique endoplasmic reticulum localization motif.

22. The human adenocarcinoma-associated gene, AGR2, induces expression of amphiregulin through Hippo pathway co-activator YAP1 activation.

23. Uptake through glycoprotein 2 of FimH(+) bacteria by M cells initiates mucosal immune response.

24. The pancreatic zymogen granule membrane protein, GP2, binds Escherichia coli Type 1 fimbriae.

25. Detection of colonic dysplasia in vivo using a targeted heptapeptide and confocal microendoscopy.

26. The adenocarcinoma-associated antigen, AGR2, promotes tumor growth, cell migration, and cellular transformation.

27. Mistaken identity of widely used esophageal adenocarcinoma cell line TE-7.

28. Gene expression changes associated with Barrett's esophagus and Barrett's-associated adenocarcinoma cell lines after acid or bile salt exposure.

29. Gene expression patterns in pancreatic tumors, cells and tissues.

30. The pancreatic stellate cell: a star on the rise in pancreatic diseases.

31. Gene expression profiling reveals stromal genes expressed in common between Barrett's esophagus and adenocarcinoma.

32. Absence of the major zymogen granule membrane protein, GP2, does not affect pancreatic morphology or secretion.

33. Exploration of global gene expression patterns in pancreatic adenocarcinoma using cDNA microarrays.

34. Hyposmotic stress induces cell growth arrest via proteasome activation and cyclin/cyclin-dependent kinase degradation.

35. Characterization of an alternatively spliced isoform of rat vesicle associated membrane protein-2 (VAMP-2).

36. Tissue-specific alternative RNA splicing of rat vesicle-associated membrane protein-1 (VAMP-1).

37. Sequence of the cDNA encoding human GP-2, the major membrane protein in the secretory granule of the exocrine pancreas.

38. Hierarchy of mechanisms involved in generating Na/K-ATPase polarity in MDCK epithelial cells.

39. The level of the zymogen granule protein GP2 is elevated in a rat model for acute pancreatitis.

40. Apical plasma membrane proteins are not obligatorily stored in secretory granules in exocrine cells.

41. GP-3, a newly characterized glycoprotein on the inner surface of the zymogen granule membrane, undergoes regulated secretion.

42. Identification of a vesicle-associated membrane protein (VAMP)-like membrane protein in zymogen granules of the rat exocrine pancreas.

43. Antisense oligodeoxynucleotides to the cystic fibrosis transmembrane conductance regulator inhibit cAMP-activated but not calcium-activated chloride currents.

44. Biogenesis of synaptic vesicle-like structures in a pheochromocytoma cell line PC-12.

45. Endocrine secretory granules and neuronal synaptic vesicles have three integral membrane proteins in common.

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