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Paneth cell defensins: key effector molecules of innate immunity.

Antimicrobial peptides are fundamental effector molecules of innate immunity, utilized in host defence by virtually all organisms studied. These gene-encoded peptides have direct antibiotic activity against a wide range of bacteria and other microbes. In humans and other mammals, defensins are a predominant class of such peptides. In the mammalian small intestine, Paneth cells, specialized secretory epithelial cells located at the base of the crypt invaginations lining the intestinal wall, produce defensins and other antibiotic proteins. Recent investigations in murine models provide compelling support for the hypothesis that enteric defensins play a pivotal role in defence from food- and water-borne pathogens in the intestinal lumen. Investigations by others indicate that intestinal commensal bacteria are key factors in the pathogenesis of IBD (inflammatory bowel disease) in genetically susceptible humans. Recent studies provide evidence that reduced expression of Paneth cell defensins may be a key factor in the pathogenesis of ileal Crohn's disease, a subgroup of IBD. Future studies to further define the function and regulation of Paneth cell defensins will enhance our understanding of normal small bowel physiology, and probably contribute to a better understanding of the pathogenesis of inflammatory and infectious diseases of the bowel. Such knowledge may provide new therapeutic targets and strategies.

Animals↗

Localization of human intestinal defensin 5 in Paneth cell granules.

Antibiotic peptides of higher animals include the defensins, first discovered in phagocytic cells but recently also found to be produced by epithelial cells. We biosynthesized recombinant human intestinal defensin 5 (rHD-5) using the baculovirus-insect cell expression system. Since insect cells process defensin incompletely and secrete the precursor proHD-5, we substituted a methionine for an alanine at a likely processing site to allow selective chemical cleavage with cyanogen bromide, and rHD-5 was used to elicit polyclonal antibodies. By the immunoperoxidase-staining technique, the antibodies selectively stained Paneth cells of the normal adult small intestine. Immunogold electron microscopy further localized HD-5 to the Paneth cell secretory granules. Since some defensins exert activity cytotoxic to mammalian cells, we assayed the effect of rHD-5 on the human intestinal cell lines Caco2 and Int407. proHD-5 did not exert cytotoxic activity, and rHD-5 showed only minimal activity against Int407 and was inert against Caco2. Since Paneth cells release their granules adjacent to the mitotic cells of the intestinal crypts, HD could protect this cell population against invasion and parasitization by microbes.

Adult↗

Jejunal lysozyme activity and the Paneth cell in coeliac disease.

The jejunal mucosa of patients with coeliac disease contains significantly fewer Paneth cells (PCC) per crypt (p less than 0.001) and tissue lysozyme activity (JLA) P less than 0.001) when compared with a group of subjects with normal jejunal mucosa. Neither PCC nor JLA return to normal with complete clinical recovery and otherwise complete histological recovery on a gluten free diet. There is a significant linear correlation between JLA and PCC suggesting that the Paneth cell is the principal source of jejunal lysozyme.

Adult↗

Crypt-restricted proliferation and commitment to the Paneth cell lineage following Apc loss in the mouse intestine.

Loss of Apc appears to be one of the major events initiating colorectal cancer. However, the first events responsible for this initiation process are not well defined and the ways in which different epithelial cell types respond to Apc loss are unknown. We used a conditional gene-ablation approach in transgenic mice expressing tamoxifen-dependent Cre recombinase all along the crypt-villus axis to analyze the immediate effects of Apc loss in the small intestinal epithelium, both in the stem-cell compartment and in postmitotic epithelial cells. Within 4 days, Apc loss induced a dramatic enlargement of the crypt compartment associated with intense cell proliferation, apoptosis and impairment of cell migration. This result confirms the gatekeeper role of Apc in the intestinal epithelium in vivo. Although Apc deletion activated beta-catenin signaling in the villi, we observed neither proliferation nor morphological change in this compartment. This highlights the dramatic difference in the responses of immature and differentiated epithelial cells to aberrant beta-catenin signaling. These distinct biological responses were confirmed by molecular analyses, revealing that Myc and cyclin D1, two canonical beta-catenin target genes, were induced in distinct compartments. We also showed that Apc is a crucial determinant of cell fate in the murine intestinal epithelium. Apc loss perturbs differentiation along the enterocyte, goblet and enteroendocrine lineages, and promotes commitment to the Paneth cell lineage through beta-catenin/Tcf4-mediated transcriptional control of specific markers of Paneth cells, the cryptdin/defensin genes.

Animals↗

The autoradiographic localisation of retained orally administered cadmium tracer within Paneth cells of rat duodenum.

Rats not previously exposed to cadmium and rats whose sole source of drinking water for the previous 9 months contained 0.2 g/litre (200 ppm) cadmium were given 100 microCi Cd109 Cl2 by oral intubation. After 96 h more isotope was retained in the duodenums of rats not previously exposed to cadmium than in the duodenums of cadmium-exposed rats. Autoradiographic studies showed that in the rats not previously exposed to cadmium, radioactivity was concentrated in the Paneth cells at the base of the crypts of Lieberkuhn. This result did not occur in cadmium-exposed rats. Paneth cells are known to contain zinc and metallothionein but their retention of cadmium has not previously been reported. Since exposure to environmental cadmium is largely via contaminated food and water, the role of Paneth cells may be of significance in cadmium toxicology.

Administration, Oral↗

Paneth cells in diverticular disease of the colon.

Paneth cells were found in the mucosa of the sigmoid colon in 13 out of 27 cases of diverticulosis and diverticulitis. It is concluded that their appearance at this site is a non-specific reaction to injury.

Colon, Sigmoid↗

Expression of group II phospholipase A2 in Paneth cells of an adenoma of the rectum. A case report.

A case of tubulovillous adenoma in the rectum of a 51-year-old man is presented. The tumour contained numerous Paneth cells which formed well-developed glands in the basal areas. Group II phospholipase A2 and lysozyme were found in the tumour cells by immunohistochemistry. mRNA of group II phospholipase A2 was localized in the tumour cells by in situ hybridization. It was concluded that a considerable part of this rare type of tumour consisted of Paneth cells which were capable of synthesizing group II phospholipase A2.

Adenoma, Villous↗

Adenocarcinoma of the uterine cervix of small intestinal type containing numerous Paneth cells.

A case of invasive adenocarcinoma of the uterine cervix with small intestinal differentiation to include numerous Paneth cells is presented. The light microscopic findings are confirmed by immunohistochemical and electron microscopic study. To our knowledge, this is only the second reported case of small intestinal cervical adenocarcinoma that contained Paneth cells and the first with ultrastructural and immunohistochemical confirmation. A small focus of in situ adenocarcinoma with similar features is seen adjacent to the invasive area.

Adenocarcinoma↗

Characterization of luminal paneth cell alpha-defensins in mouse small intestine. Attenuated antimicrobial activities of peptides with truncated amino termini.

Paneth cells at the base of small intestinal crypts secrete apical granules that contain antimicrobial peptides including alpha-defensins, termed cryptdins. Using an antibody specific for mouse cryptdin-1, -2, -3, and -6, immunogold-localization studies demonstrated that cryptdins are constituents of mouse Paneth cell secretory granules. Several cryptdin peptides have been purified from rinses of adult mouse small intestine by gel filtration and reverse-phase high performance liquid chromatography. Their primary structures were determined by peptide sequencing, and their antimicrobial activities were compared with those of the corresponding tissue forms. The isolated luminal cryptdins included peptides identical to the tissue forms of cryptdin-2, -4, and -6 as well as variants of cryptdin-1, -4, and -6 that have N termini truncated by one or two residues. In assays of antimicrobial activity against Staphylococcus aureus, Escherichia coli, and the defensin-sensitive Salmonella typhimurium phoP(-) mutant, full-length cryptdins had the same in vitro antibacterial activities whether isolated from tissue or from the lumen. In contrast, the N-terminal-truncated (des-Leu), (des-Leu-Arg)-cryptdin-6, and (des-Gly)-cryptdin-4 peptides were markedly less active. The microbicidal activities of recombinant cryptdin-4 and (des-Gly)-cryptdin-4 peptides against E. coli, and S. typhimurium showed that the N-terminal Gly residue or the length of the cryptdin-4 N terminus are determinants of microbicidal activity. Innate immunity in the crypt lumen may be modulated by aminopeptidase modification of alpha-defensins after peptide secretion.

Animals↗

The defensin-related murine CRS1C gene: expression in Paneth cells and linkage to Defcr, the cryptdin locus.

The site of defensin-related CRS1C gene expression in mouse small bowel and the chromosomal location of the CRS1C locus, Defcr-rs1, have been determined. CRS1C (cryptdin-related sequence 1C) mRNA is an abundant small intestinal sequence that exhibits extensive similarity to the prepro-coding regions of defensin mRNAs yet does not encode a defensin (A. J. Ouellette and J. C. Lualdi, 1990, J. Biol. Chem. 265: 9831-9837). Using sequence-specific probes, CRS1C mRNA was detected in Paneth cells at the base of intestinal crypts by in situ hybridization. Southern blot analysis of genomic DNAs from inbred and recombinant inbred (RI) mouse strains, also conducted with probes specific for CRS1C, showed that the CRS1C locus maps to the proximal region of Chromosome 8. In 62 RI strains, no discordancies were found between Defcr-rs1 and Defcr, the cryptdin gene. Thus, both the Defcr-rs1 and the Defcr genes are expressed in Paneth cells and both are genetically inseparable within 1.58 cM on Chromosome 8. These studies identify a second defensin-related Paneth cell gene in mice.

Animals↗

Paneth cell cryptdins act in vitro as apical paracrine regulators of the innate inflammatory response.

Intestinal-specific antimicrobial alpha-defensins, termed cryptdins, are secreted into the intestinal lumen by mouse Paneth cells in response to microbial pathogens. Cryptdins kill microbes by forming pores in their limiting membranes. The cryptdin isoforms 2 and 3 also can form anion-conductive pores in eukaryotic cell membranes, thus affecting cell physiology. Here, we find that when applied to apical membranes of the human intestinal cell line T84, cryptdin 3 (Cr3) induces secretion of the proinflammatory cytokine interleukin 8 (IL-8) in a dose-dependent manner. The induction of IL-8 secretion is specific to the cryptdins that form channels in mammalian cell membranes because cryptdin 4, which does not form pores in T84 cells, does not induce IL-8 secretion. Cr3 induces inflammatory cytokine secretion by activating NF-kappaB and p38 mitogen-activated protein kinase in a Ca2+-dependent manner, but influx by extra-cellular Ca2+ is not involved. Unlike other known inflammatory agonists, signal transduction by Cr3 occurs slowly, suggesting a novel mechanism of action. These results show that selective cryptdins may amplify their roles in innate immunity by acting as novel paracrine agonists to coordinate an inflammatory response with the antimicrobial secretions of Paneth cells.

Blotting, Western↗

Changes in the Paneth cell population of human small intestine assessed by image analysis of the secretory granule area.

Estimates of the Paneth cell population in human jejunum and ileum were made using measurement of the granule area in micron2 by image analysis in a defined number of crypts. This figure was preferable to granule area per mm as there was a significant difference in crypts per mm between biopsies and surgical samples. In the jejunum no significant difference was found between normal children and adults with and without peptic ulcer. In adults with subtotal or partial villous atrophy the decrease in area was not statistically significant and there was no decrease in area in children with partial villous atrophy and coeliac disease. There was a marked increase in granule area in the jejunum of patients who had had a previous partial gastrectomy which was statistically significant. In the ileum patients with carcinoma of the caecum had higher values than patients with non-inflammatory non-malignant conditions but this was not statistically significant and two patients with Crohn's disease had an increased granule area. Paneth cell populations are affected by alterations in the intestinal luminal environment due to previous surgery or neoplastic or inflammatory disease.

Adolescent↗

Positional specificity of defensin gene expression reveals Paneth cell heterogeneity in mouse small intestine.

Cryptdins are antimicrobial peptides of the defensin family that are expressed specifically by Paneth cells in small intestinal crypts (M.E. Selsted, S.I. Miller, A.H. Henschen, and A.J. Ouellette. J. Cell Biol. 118: 929-936, 1992), and at least 17 cryptdin isoforms have been reported in mouse small intestine (A.J. Ouellette, M.M. Hsieh, M.T. Nosek, D.F. Cano-Gauci, K.M. Huttner, R.N. Buick, and M.E. Selsted. Infect. Immun. 62: 5040-5047, 1994). Analysis of cryptdin gene expression in adult mouse small bowel revealed that the cryptdin-4 isoform is differentially expressed along the proximal-to-distal intestinal axis. By peptide-specific reverse transcriptase-polymerase chain reaction-based assays, cryptdin-4 mRNA was found to be absent from the proximal small bowel, increasing to maximal levels in the ileum. In contrast, intestinal content of cryptdin-1 and -5 mRNAs was equivalent in duodenum, jejunum, and ileum, and Northern blot hybridization experiments were consistent with both sets of data. Similarly, individual crypts isolated from duodenum contain cryptdin-1 mRNA but not cryptdin-4 mRNA. Taken together, the results show that Paneth cells are heterogeneous, depending on their position along the longitudinal axis of the small bowel. The positional specificity of defensin gene expression suggests that cryptdins may be useful markers for investigating the establishment and maintenance of this epithelial lineage in the mouse small intestine.

Animals↗

Quantitative electron microscopic studies on rat ileal Paneth cells under various physiological and experimental conditions.

The Paneth cells of the rat ileum were studied with quantitative electron microscopical methods. Estimations were made of the average volume of the cells and the nucleus, and the mean diameter and volume density of the secretory granules. Six groups of rats, each comprising 6-7 animals, were investigated: the rats in the first group were fasted controls, those in the second group non-fasted controls. In the third group the rats were given pilocarpine and in the fourth atropine. In the fifth group the rats were chemically sympathectomized, and the rats in the sixth group were subjected to partial removal of the small intestine. The secretory granules remained unchanged in all groups, except for the atropinized rats which contained significantly increased amounts, presumably indicating a low secretory rate. Moreover, the secretory granules were smaller in the rats treated with pilocarpine and in those operated on; this probably reflects a high secretory rate.

Animals↗

Influence of high-calorie (cafeteria) diets on the population of Paneth cells in the small intestine of the rat.

A high-calorie (cafeteria) diet is known to cause changes in the intestinal morphology and functioning that seem to be related to calorie overfeeding. Among the cell lineages found in the small intestine epithelium, the Paneth cell (PC) population is known to be influenced by factors related mainly to the intestinal microbiota. The role of PCs in the intestinal cell concert remains unclear, because experimental evidence suggests PC involvement in local processes other than protection against pathogens. Participation of PC in digestive mechanisms has been proposed on this basis. We have analyzed the effect of high-carbohydrate (HC) and high-fat (HF) cafeteria diets on the PC population in the small intestine of the adult rat. For 8 weeks, both HC and HF diets caused a gain in body weight, but whereas the HC-fed rats showed reduced counts of intestinal crypts per 5-mum section, the HF-fed group showed the opposite. In control rats, the number of crypts per section showed a slight tendency to decrease along the duodenum - ileum axis, whereas the number of PCs per crypt was increased towards the ileum. As a result, the number of PCs per section (calculated from these data) remained constant along the three segments of the intestine. The hypercaloric diets did not modify the general tendencies seen in the crypt and PC counts, but reduced the number of PCs per section in the duodenum by 50%. HC-fed, but not HF-fed, rats showed a similar reduction in jejunum also. These changes do not correlate particularly with any of the predictable effects of diet composition, so that a multifactorial control of PC density is proposed.

Adipose Tissue↗

Detection of CD1 mRNA in Paneth cells of the mouse intestine by in situ hybridization.

Cluster of differentiation 1 (CD1) antigens are a family of non-MHC but Class I-like molecules that have been identified in humans and rodents. Although their function(s) remains unknown, it has been proposed that CD1 may present antigens to specific subsets of peripheral T-cells. We now provide evidence in support of this hypothesis through the demonstration by in situ hybridization that Paneth cells of the mouse intestine express CD1 mRNA. These cells are thought to be involved in the immunological regulation of intestinal flora and could accomplish this task through interactions with intestinal intraepithelial lymphocytes. The expression and localization of CD1 mRNA was confirmed by both autoradiographic and non-isotopic techniques. The relevance of these results to CD1 function as well as to Paneth cell biology is discussed.

Animals↗