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Cellular location of the cleavage event of the polymeric immunoglobulin receptor and fate of its anchoring domain in the rat hepatocyte.

Transcytosis of polymeric immunoglobulin (pIg) across glandular and mucosal epithelia is mediated by a member of the immunoglobulin supergene family, the pIg receptor. During transcellular routing, the receptor is cleaved and its ectoplasmic domain, known as secretory component (SC), is released into secretions bound to pIg. Using receptor-domain-specific antibodies, we have combined cell fractionation and immunoblotting of rat liver to examine the cellular routing of the receptor, the cellular location of the cleavage event and the fate of the anchor domain. Cleavage is a late event in receptor processing. It appears to occur at the canalicular plasma membrane, since intact receptor is present in this membrane domain and no SC is detected in whole liver homogenate or in cell fractions. The membrane anchor remaining after cleavage can be recovered in bile, as well as in a low-density fraction obtained after equilibrium centrifugation of liver (microsomal fractions) on sucrose density gradients. These data suggest that the membrane-anchor domain may be internalized as well as secreted together with SC into bile.

Animals↗

Secretory IgA: immune defence pattern in ankylosing spondylitis and klebsiella.

Saliva secretory IgA (sIgA), secretory component (SC); serum immunoglobulins (IgG, IgA, IgM), complement (C3, C4), C-reactive protein (CRP), and erythrocyte sedimentation rate (ESR) were performed in 32 patients with ankylosing spondylitis and 29 normal controls. They were investigated for carriage in the faeces of Klebsiella spp. on 3 occasions over the previous months. Throat swabs and urine were cultured at the same time as immunological estimations were done. 24-hour urine sIgA specimens were studied in 13 patients and 12 normal controls. Significantly raised mean values of saliva sIgA and serum IgG, IgA, C3, and C4 were found in patients with raised values of serum ESR and CRP levels when correlated with controls. Raised values of sIgA in saliva, which is an important factor of the local immune defence mechanism of mucosal surfaces, suggests the presence of an antigenic stimulus from the gastrointestinal system in ankylosing spondylitis during activity of disease.

Adult↗

[Immunopathologic reactions in chronic sialadenitis of the submandibular gland (so-called Küttner tumor)].

The aim of this study was to investigate immunological aspects of the inflammatory reaction in the submandibular gland during chronic sialadenitis. Specimens of 54 patients registered at the Institute of Pathology at the University of Hamburg were stained according to the indirect immunoperoxidase method. The distribution patterns of Ig-secreting plasma cells (IgA, IgG, IgM) and of the enzymes lactoferrin, lysozyme, and secretory component were analysed. The formation of lymph follicles was also examined. The results were as follows: Stage 1 of the chronic sialadenitis starts as a simple inflammation with an increase of IgA-secreting plasma cells around the ducts. During stage 2 the unspecific, humoral part of the immune system is stimulated. The production of lactoferrin and lysozyme is enhanced. The titer of IgA rises due to activation of the local, specific immune system. The simultaneous rise of the IgG titer is probably caused by production at different sites. During the course of stage 3--4, the cells involved in the local, unspecific immune system are destroyed. The number of IgG secreting plasma cells also decreases. The formation of lymph follicles and the infiltration of the gland by lymphocytes is interpreted as a transition to the cellular immune response. Stage 4 of the Küttner tumor shows similarities to the autoimmune disease of Sjögren's syndrome.

Chronic Disease↗

Unlabeled antibody peroxidase-antiperoxidase method combined with direct immunofluorescence.

Paired staining with the unlabeled antibody peroxidase-antiperoxidase (PAP) method and direct immunofluorescence (DIF) differentiated distinctly between gastrin- and somatostatin-producing cells in the human gastric antrum. Similar paired staining of complexed lambda and alpha chains in immunoglobulin (Ig)A myeloma cells, of kappa and free J chains in IgG myeloma cells, and of secretory IgA and its epithelial transport protein, the free secretory component (SC), in colonic crypt cells, demonstrated that PAP staining inhibits subsequent DIF staining of an antigenic determinant present on the same molecule as the antigen revealed by the brown color of diaminobenzidine (DAB) or present or an unassociated molecule in the same cell. A quenching effect of the DAB reaction product was noted for both fluorescein (green) and rhodamine (red) emissions. In addition, a blocking effect of the DAB deposits has been demonstrated and is assumed to be the principal methodological basis for the paired PAP-DIF staining approach omitting intermediate antibody elution, as well as for the more time-consuming sequential PAP staining with DAB substrate for the first and 4-chloro-1-naphthol (CN) for the second antigen. The quenching and blocking effects limit in practice the paired PAP-DIF method to the localization of antigens present in separate cells.

Colon↗

Analysis of cytomegalovirus infection and replication in acinar epithelial cells of the rat lacrimal gland.

PURPOSE: The objectives of this investigation were threefold: to advance understanding of the nature and impact of herpesvirus infection in the lacrimal gland; to determine the influence of gender and sex hormones on viral infectivity and replication capacity in lacrimal tissue; and to compare the susceptibilities of lacrimal, submandibular, and parotid cells to viral invasion. METHODS: Acinar epithelial cells were isolated from lacrimal or salivary glands from intact, orchiectomized, ovariectomized, or sham-operated rats, cultured on Matrigel in serum-free media, and briefly exposed to rat cytomegalovirus (RCMV). Cells were then incubated for varying time intervals, and RCMV titers and secretory component (SC) levels in media or cell extracts were measured by plaque assay or radioimmunoassay. Exocrine glands also were obtained from rats after RCMV inoculation in vivo and were analyzed for viral infection. RESULTS: These findings demonstrated that RCMV invades the rat lacrimal gland after intravenous or intraperitoneal viral inoculation; RCMV infects and undergoes a time-, dose-, strain-, and gender-dependent replication in acinar epithelial cells from rat lacrimal tissue; the magnitude of RCMV replication in acinar epithelial cells in vitro may, in fact, induce an acute increase in the cellular production of SC; and the extent of viral replication in lacrimal and salivary gland epithelial cells displays distinct, tissue-specific variations. CONCLUSIONS: The herpesvirus RCMV invades and replicates in acinar epithelial cells from the rat lacrimal gland. The magnitude of the viral infection may be significantly influenced by gender and alterations in the hormonal environment.

Animals↗

Intra-abdominal sepsis: an immunocytochemical study of the small intestine mucosa.

AIM: To investigate immunocytochemical changes in intestinal tissues from patients with intra-abdominal sepsis, and to relate the changes to the possibility of enhanced bacterial adhesion and translocation. METHODS: Tissues from 17 patients suffering from intra-abdominal sepsis and from controls were sectioned and stained immunocytochemically for IgA, IgM, secretory component, J chain, and HLA-DR. Differences in the distribution and characteristics of positively staining cells between the patient groups were assessed. RESULTS: Patients with intra-abdominal sepsis had noticeable reductions in numbers of IgA and IgM plasma cells, reduced J chain staining, and had little immunoglobulin on the surfaces of enterocytes. In contrast, HLA-DR positive cells were increased in the sepsis compared with the control group. The plasma cells present showed cytological changes suggestive of apoptosis. CONCLUSIONS: Stress associated with sepsis and its immediate causes might result in increased plasma glucocorticoid levels that bring about apoptosis of mucosal plasma cells (or their precursors). The consequent reduction in expression of IgA and IgM may favour bacterial adhesion to the enterocytes and facilitate bacterial translocation into the tissues.

Adult↗

A sensitive solid phase radioimmunoassay for secretory IgA: its application for the determination of urinary levels of secretory IgA in children and adults.

A sensitive solid phase radioimmunoassay method was established for the specific quantitative determination of secretory IgA (sIgA) by taking advantage of the dual antigenicities of sIgA, one specific for alpha-chain and the other for secretory component (SC). The sIgA and IgA in the sample were first bound by anti-IgA antibodies coated on the polystyrene tube, then the amount of bound sIgA was quantified by the use of 125I-labeled anti-SC antibodies. This method is quite sensitive and allows us to distinguish sIgA from IgA and free SC which usually coexist in exocrine secretions. Linear relationship was observed between the bound radioactivity of radioiodinated anti-SC and the amount of sIgA in the range of 5 to 60 ng of sIgA. With this method, the urinary sIgA levels in normal children and adults were measured. Urinary sIgA was detected in half of infants within 7 days after birth, while it could be demonstrated in almost all of the infants by 14th day. Then, it gradually increased and reached about a half of the adult level by the age of puberty. This method will be useful for the sensitive and specific measurement of sIgA in various exocrine secretions.

Adolescent↗

Morphology and function of lacrimal gland acinar cells in primary culture.

The objectives of the current investigation were fourfold: (1) to establish an effective procedure for the isolation of acinar cells from the rat lacrimal gland; (2) to evaluate the functional capacity of freshly isolated cells; (3) to determine defined culture conditions which permit maintenance of viable, differentiated cells, as well as secretory component (SC) production, during long-term culture; and (4) to characterize the morphological features of cultured cells. Acinar cells were isolated by serial incubation of gland fragments in chelating and enzymatic solutions, followed by centrifugation through a Ficoll gradient. The yield of viable cells/gland appeared to be age-dependent: cell recovery was inversely proportional to the age of the animals. Immunofluorescence analysis of freshly isolated cells showed the presence of SC, the IgA antibody receptor, within isolated cells. In addition, experiments with a labeled analog (Nle4-D-Phe7-alpha MSH) of alpha-melanocyte-stimulating hormone (alpha-MSH) demonstrated specific binding sites on freshly isolated cells; alpha-MSH is a known modulator of acinar protein secretion. Maximum binding of the alpha-MSH analog occurred within 30 min, was dependent upon cell density and was reduced by coincubation with unlabeled alpha-MSH. To determine the culture requirements of acinar cells, cells were cultured on a variety of substrates (plastic or modified plastic [Primaria], coated with or without extracellular matrix [Matrigel]) in the presence or absence of various supplements and/or fetal calf serum (FCS) for 0.7 to 3.5 weeks. Cell attachment, function and long-term viability required an extracellular matrix. Moreover, in long term cultures (25 days), acinar cell attachment was enhanced by the inclusion of supplements to media containing 10% FCS. Replacement of serum with fibroblast growth factor, high-density lipoprotein and an increased concentration of epidermal growth factor resulted in a distinct "cobblestone" morphology characteristic of epithelial cell cultures. Electron microscopic analysis of cells cultured in supplemented serum-free media demonstrated extensive rough endoplasmic reticulum and Golgi, intermediate filaments and numerous secretory granules, as well as tight junctions and desmosomes. In addition to cell maintenance and attachment, acinar cell synthesis and/or secretion of SC was positively influenced by inclusion of supplements in the media. In summary, we have isolated lacrimal gland acinar cells, which express receptors for IgA antibodies and alpha-MSH. In addition, we have defined culture conditions which permit the long-term maintenance of SC-secreting acinar cells.

Animals↗

Polarized transport of the polymeric immunoglobulin receptor in transfected rabbit mammary epithelial cells.

A cDNA for the rabbit low Mr polymeric immunoglobulin (poly-Ig) receptor was expressed in an immortalized rabbit mammary cell line. The intracellular routing of the receptor and its cell surface expression was analyzed in stably transfected cells grown on permeable supports. Initially the cells formed a monolayer with no transmural electrical resistance. All monolayer cells expressed the poly-Ig receptor and cytokeratin 7 filaments characteristic of luminal mammary cells but absent in myoepithelial cells. Within 7 d in culture, the cells underwent cytodifferentiation and formed a bilayer with a transepithelial electrical resistance of approximately 500 omega x cm2. Upper layer cells formed tight junctions with adjacent cells and gap junctions with basal cells. Expression of the poly-Ig receptor and cytokeratin 7 was restricted to the cells from the upper layer. The kinetics of receptor biosynthesis and processing was similar to that reported for rabbit mammary gland and rat liver. The receptor was cleaved at the apical cell surface and release of secretory component into the apical medium occurred with a half-time of approximately 2 h. Selective cell surface trypsinization combined with pulse-chase experiments served to determine at which cell surface domain newly synthesized receptor appeared first. The receptor was digested with a half-time of approximately 60 min with trypsin present in the basolateral medium and 90 min with apical trypsin. These data are consistent with selective targeting of newly synthesized receptor to the basolateral surface. The results indicate that transcytosis of the receptor from basolateral to apical membrane in the presence or the absence of its ligand requires approximately 30 min. Cleavage of the receptor by endogenous protease is not concomitant with its appearance at the apical surface, but requires additional time, thus explaining the presence of intact receptor on the apical membrane.

Animals↗

Influence of implantation site on growth, antigen expression and metastatic potential of human colonic cancer HT29 and 5583 xenografts in nude mice.

In order to study the interaction between tumors and host environmental factors, we xenografted cells from the human colonic carcinoma cell lines HT29 and 5583-S in the subcutis, cecum, spleen and liver of nude mice and compared growth characteristics, metastatic potential and some phenotypic features of the xenografts in these sites. No remarkable differences were observed between the tumors at different inoculation sites in regard of their expression of carcinoembryonic antigen and secretory component or type of mucin produced. Also the proportion of DNA synthesizing cells as determined by bromodeoxyuridine incorporation appeared to be comparable in the studied implantation sites. Local invasive growth characteristics and metastatic potential, however, showed marked differences. Subcutaneous and cecal xenografts frequently showed tumor cell invasion into the surrounding tissue, vasoinvasive growth and discontinuous basement membrane deposition, whereas splenic and hepatic implants demonstrated more encapsulation, no invasion of blood vessels and more continuous basement membrane deposition. Subcutaneous xenografts produced no metastasis. With HT29 cells liver and lymph node metastases occurred frequently from the splenic as well as the cecal xenografts. 5583 cells regularly produced liver metastases from the splenic xenografts, whereas no metastasis from cecal xenografts were observed. We conclude that although the patterns of invasive growth and the metastatic potential differ for various implantation sites, antigen expression and cell kinetic features of tumor implants are hardly influenced by the site of inoculation.

Animals↗

Cloning and characterization of two forms of bovine polymeric immunoglobulin receptor cDNA.

The polymeric immunoglobulin receptor (transmembrane secretory component) mediates transcellular transport of dimeric immunoglobulin A (IgA) and pentameric IgM in glandular and mucosal epithelial cells. cDNAs encoding two forms of the bovine polymeric immunoglobulin receptor (pIgR) have been cloned and sequenced. The long form contains 3,527 bp and predicts a single open reading frame of 2,271 bp encoding a protein of 757 bp. The extracellular part contains five immunoglobulin (Ig)-like domains. The shorter form lacks the region from residues 458-1,111 corresponding to Ig-like domains 2 and 3. In Northern blot analysis of various bovine tissues, only the long form of pIgR mRNA was detected. By using the reverse transcription-polymerase chain reaction (RT-PCR), both forms were detected. An alignment of the cytoplasmic tail of the pIgR from bovine, human, rabbit, and rat revealed highly conserved areas that may reflect the importance of these regions for intracellular sorting of the receptor.

Amino Acid Sequence↗

Immunoperoxidase study of the secretory immunoglobulin system in colonic neoplasia.

The relation of the secretory immunoglobulin system in the colon to colorectal cancer and dysplasia has been examined by staining routine formalin-fixed, paraffin-embedded sections from cases of carcinoma, adenoma and ulcerative colitis for secretory component (SC), IgA and J chain. In carcinomas there was a close relation between SC synthesis and differentiation and a similar relation was apparent between SC synthesis and degrees of dysplasia in adenomas. In both morphological and functional (SC synthesis) terms degrees of dysplasia in adenomas resembled degrees of differentiation in carcinomas suggesting that the essential "switch" in the progression towards neoplasia may occur at the level of the adenoma and that invasive malignancy can arise from dysplastic mucosa of varying severity. Actively regenerating mucosa in ulcerative colitis (UC) showed intense staining for SC as opposed to foci of precancerous dysplasia where, with one exception, staining was markedly reduced or absent, suggesting staining for SC could be useful in identifying foci of precancerous dysplasia in UC. In the absence of severe chronic inflammation, as in UC, the number of IgA-containing plasma cells was closely related to SC staining of neoplastic mucosa suggesting that SC may be important in the mechanism by which IgA lymphocytes home to the lamina propria of the colon.

Adenoma↗

Characterization of the immune barrier in human olfactory mucosa.

Immunologic defense factors in the human olfactory mucosa were localized immunohistochemically. Olfactory epithelium was identified with an antiserum to olfactory marker protein, specific for olfactory receptor neurons. Constituents of the secretory immune system, including IgA, IgM, secretory component, and J chain, were localized in the acinar and duct cells of Bowman's glands and in the mucociliary complex. In addition, B lymphocytes in the lamina propria near Bowman's glands displayed immunoreactivity for IgA, IgM, and J chain. Immunostaining also localized other humoral factors. Immunoreactivity for IgG was present throughout the stroma and in B lymphocytes in the lamina propria. Antibody to IgD stained numerous B lymphocytes clustered below the basement membrane. Antibody to IgE stained similarly distributed cells; toluidine blue staining demonstrated that many were mast cells. In addition, antibodies to IgD and IgE stained occasional intraepithelial B lymphocytes or mast cells. Two antimicrobial proteins, lactoferrin and lysozyme, were localized in Bowman's glands and the mucociliary complex. Thus, the human olfactory mucosa, which provides a direct neural route for pathogens to the brain, is a site for synthesis and secretion of immune and other defense factors.

Adolescent↗

Sclerosing hemangioma of the lung. An epithelial tumor composed of immunohistochemically heterogenous cells.

Lung tissues from 16 patients with pulmonary sclerosing hemangioma were studied with the use of serial sections and immunoperoxidase staining for surfactant apoprotein, secretory component (SC), and epithelial membrane antigen (EMA). The cells lining papillary projections or cystic spaces were stained with surfactant apoprotein, SC, and EMA. Characteristic round stromal cells, which were considered to be the main component of the sclerosing hemangioma, consisted of immunohistochemically heterogenous cells, that is, positive findings were attained with all three antigens, surfactant apoprotein- and EMA-positive ones, SC- and EMA-positive ones, only EMA-positive ones, and all three negative. When investigating the immunoreactivity of neoplastic type II pneumocytes in bronchioalveolar cell carcinoma and hyperplastic ones in nonneoplastic pulmonary disorders, the authors found that almost all the neoplastic type II pneumocytes had all three antigens. Many of the hyperplastic and normal type II pneumocytes, however, were stained with surfactant apoprotein and EMA but not with SC. The authors' findings add further support for the proposal that sclerosing hemangioma of the lung is epithelial in origin. In view of the various staining patterns found in the stromal cells, sclerosing hemangioma probably consists of immunohistochemically heterogenous epithelial cells. The staining pattern of the cells lining papillary projections or cystic spaces was similar to that of neoplastic type II pneumocytes rather than that of hyperplastic type II pneumocytes.

Apoproteins↗

Structural and functional consequences of cleavage of human secretory and human serum immunoglobulin A1 by proteinases from Proteus mirabilis and Neisseria meningitidis.

The cleavage of human serum monomeric immunoglobulin A1 (IgA1) and human secretory IgA1 (S-IgA1) by IgA1 proteinase of Neisseria meningitidis and cleavage by the proteinase from Proteus mirabilis have been compared. For serum IgA1, both proteinases cleaved only the alpha chain. N. meningitidis proteinase cleaved only in the hinge. P. mirabilis proteinase sequentially removed the tailpiece, the CH3 domain, and the CH2 domain. The cleavage of S-IgA1 by N. meningitidis proteinase occurred only in the hinge and was as rapid as that of serum IgA1. P. mirabilis proteinase predominantly cleaved the secretory component (SC) of S-IgA1. The SC of S-IgA1, whether cleaved or not, appeared to protect the alpha1 chain. Purified Fc fragment derived from the cleavage of serum IgA1 by N. meningitidis proteinase stimulated a respiratory burst in neutrophils through Fcalpha receptors, whereas the (Fcalpha1)(2)-SC fragment from digested S-IgA1 did not. The loss of the tailpiece from serum IgA1 treated with P. mirabilis proteinase had little effect, but the loss of the CH3 domain was concurrent with a rapid loss in the ability to bind to Fcalpha receptors. S-IgA1 treated with P. mirabilis proteinase under the same conditions retained the ability to bind to Fcalpha receptors. The results are consistent with the Fcalpha receptor binding site being at the CH2-CH3 interface. These data shed further light on the structure of S-IgA1 and indicate that the binding site for the Fcalpha receptor in S-IgA is protected by SC, thus prolonging its ability to activate phagocytic cells at the mucosal surface.

Binding Sites↗

The development of mucosal immunity in guinea pig middle ears.

Recent studies have suggested to us that the middle ear is an organ capable of responding immunologically to antigenic substance. However, it is still not known when and how the middle ear starts to provide the immunologic defense system. To clarify this, we investigated immunoglobulin forming cells of different classes and secretory proteins, such as secretory component and lactoferrin, in the mucous membrane of eustachian tube and tympanic bulla of 20 developing and 5 normal adult guinea pigs by the use of a direct immunofluorescence technique. Other organs, such as nose, larynx, trachea, small intestine, spleen and lymph node were also subjected to this investigation. Changes in the middle ear mucosa were also observed after antigenic challenges directly to the tympanic cavity of 6 developing and 39 adult guinea pigs. IgA and IgM forming cells began to appear in the tubal mucosa on 7th postnatal day, wile it was scarcely possible to find IgG1 and IgG2 forming cells in developing guinea pigs. Immunoglobulin forming cells of all classes increased in the middle ear mucosa after the antigenic stimuli. Results of this study showed that local synthesis of IgA, as well as other classes, is latent in the middle ear, that the middle ear of immature animals is vulnerable to antigenic stimuli, and that the middle ear of developing animals possesses potential immune responsiveness.

Animals↗

Receptor-mediated transcytosis of IgA in MDCK cells is via apical recycling endosomes.

Classically, the polymeric immunoglobulin receptor and its ligand, IgA, are thought to be sorted from basolateral early endosomes into transcytotic vesicles that directly fuse with the apical plasma membrane. In contrast, we have found that in MDCK cells IgA is delivered from basolateral endosomes to apical endosomes and only then to the apical cell surface. When internalized from the basolateral surface of MDCK cells IgA is found to accumulate under the apical plasma membrane in a compartment that is accessible to two apically added membrane markers: anti-secretory component Fab fragments, and avidin internalized from the biotinylated apical pole of the cell. This accumulation occurs in the presence of apical trypsin, which prevents internalization of the ligand from the apical cell surface. Using a modification of the diaminobenzidine density-shift assay, we estimate that approximately 80% of basolaterally internalized IgA resides in the apical endosomal compartment. In addition, approximately 50% of basolaterally internalized transferrin, a basolateral recycling protein, has access to this apical endosomal compartment and is efficiently recycled back to the basolateral surface. Microtubules are required for the organization of the apical endosomal compartment and it is dispersed in nocodazole-treated cells. Moreover, this compartment is largely inaccessible to fluid-phase markers added to either pole of the cell, and therefore seems analogous to the recycling endosome described in nonpolarized cells. We propose a model in which transcytosis is not a specialized pathway that uses unique transcytotic vesicles, but rather combines portions of pathways used by non-transcytosing molecules.

Animals↗

Generation of polymeric immunoglobulin receptor-deficient mouse with marked reduction of secretory IgA.

We generated mouse lacking exon 2 of polymeric Ig receptor (pIgR) gene by a gene-targeting strategy (pIgR-deficient mouse; pIgR-/- mouse) to define the physiological role of pIgR in the transcytosis of Igs. pIgR-/- mice were born at the expected ratio from a cross between pIgR+/- mice, indicating that disruption of the pIgR gene in mice is not lethal. pIgR and secretory component proteins were not detected in pIgR-/- mice by Western blot analysis. Moreover, immunohistochemical analysis showed that pIgR protein is not expressed in jejunal and colonic epithelial cells of pIgR-/- mice, whereas IgA+ cells are present in the intestinal mucosa of pIgR-/- mice as well as wild-type littermates. Disruption of the pIgR gene caused a remarkable increase in serum IgA concentration and a slight increment of serum IgG and IgE levels, leaving serum IgM level unaltered. In contrast, IgA was much reduced but not negligible in the bile, feces, and intestinal contents of pIgR-/- mice. Additionally, IgA with a molecular mass of 280 kDa preferentially accumulated in the serum of pIgR-/- mice, suggesting that transepithelial transport of dIgA is severely blocked in pIgR-/- mice. These results demonstrate that dIgA is mainly transported by pIgR on the epithelial cells of intestine and hepatocytes, but a small quantity of IgA may be secreted via other pathways.

Animals↗