| Literature DB >> 20205943 |
Andrea Reinartz1, Josef Ehling, Susanne Franz, Verena Simon, Ignacio G Bravo, Claudia Tessmer, Hanswalter Zentgraf, Stefan Lyer, Ursula Schneider, Jan Köster, Kerstin Raupach, Elke Kämmerer, Christina Klaus, Jens J W Tischendorf, Jürgen Kopitz, Angel Alonso, Nikolaus Gassler.
Abstract
BACKGROUND: Maturation of enterocytes along the small intestinal crypt-villus axis is associated with significant changes in gene expression profiles. fls485 coding a putative chaperone protein has been recently suggested as a gene involved in this process. The aim of the present study was to analyze fls485 expression in human small intestinal mucosa.Entities:
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Year: 2010 PMID: 20205943 PMCID: PMC2838759 DOI: 10.1186/1471-230X-10-27
Source DB: PubMed Journal: BMC Gastroenterol ISSN: 1471-230X Impact factor: 3.067
Figure 1Characterization of anti-fls485 antibodies. Detection of chimeric EGFP-fls485158 protein in transfected 3T3 (A: Western blot) or CaCo2 cells (B-H: immunofluorescence) with different anti-fls485 antibodies. (A) Western blots of EGFP-fls485158 expressed in 3T3 cells incubated with antibodies directed against fls485158 clone/subclone #7 (left) or clone/subclone #10 (middle). Endogenous fls485 expression by 3T3 cells is detectable as a signal about 55 kDa when incubated with the anti-fls485 clones. One additional signal about 35 kDa is exclusively found when clone/subclone #10 is used. EGFP-fls485158 expression in 3T3 transfectants was additionally visualized with anti-EGFP antibodies as control (right). (B-D) Immunofluorescence of EGFP-fls485158 protein in transfected CaCo2 cells incubated with clone/subclone #7, secondary antibody Cy3-labeled (B), anti-EGFP, secondary antibody FITC-labeled (C), and overlay (D). (E-G) Immunofluorescence of EGFP-fls485158 protein in transfected CaCo2 cells incubated with clone/subclone #10, secondary antibody Cy3-labeled (E), anti-EGFP, secondary antibody FITC-labeled (F), and overlay (G). (H) Negative control; EGFP-fls485158 transfected CaCo2 cells after incubation with all secondary antibodies.
Figure 2Characterization of fls485 expression in intestinal mucosa. fls485 expression in human intestinal mucosa with mRNA in situ hybridization (A and B), Western blot analysis (C and D), or immunohistochemistry (E and F). (A) Distribution of fls485 mRNA in human small intestinal mucosa (antisense riboprobe). The arrows mark strong mRNA accumulation in putative chromaffin cells (original magnification approx. × 200). (B) Serial section of (A) incubated with fls485 sense riboprobe (original magnification approx. × 200). (C) Blotted protein lysates from human small and large intestinal mucosa as well as Rko and Lovo cells after incubation with clone #7. (D) Blotted lysates as shown in (C) probed with clone #10. (E) fls485 protein is found with an increasing gradient along the CVA (clone #10) (original magnification approx. × 200). Chromaffin cells are marked by arrows. Note some interstitial cells are stained. (F) Strong fls485 immunostaining is found in a chromaffin cell (arrow), whereas Paneth cells (arrowheads) are only slightly or not stained (clone #10) (original magnification approx. × 400).
Figure 3Impaired fls485 expression in celiac disease. fls485 expression is impaired in human small intestinal mucosa affected with celiac disease classified Marsh IIIa-c when compared with normal mucosal specimens (controls). (A) fls485 mRNA expression in small intestinal mucosa detected with primer pair I. (B) fls485 mRNA expression detected with primer pair II in the identical probes as shown in (A). (C) Anti-fls485 immunohistochemistry (clone #7/2) of intestinal mucosa classified Marsh IIIb (original magnification approx. × 200). (D) Serial tissue section of (C) incubated with normal serum as negative control (original magnification approx. × 200). (E) Morphological aspects of CaCo2 cells cultured with low or high cellular density (original magnification approx. × 200). (F) fls485 expression normalized to GAPDH is increased in high density CaCo2 cell cultures (primer pair I, p < 0.05).