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Secretory immune system in human intrauterine development: immunopathomorphological analysis of the role of secretory component (pIgR/SC) in immunoglobulin transport (review).

Several proteins, such as polymeric immunoglobulin (Ig) receptor/secretory component (pIgR/SC), immunoglobulins (Igs) and joining (J) chain, and cellular components of the secretory immune system (SIS) of the human embryo and fetus were analyzed and compared with reviewed information concerning SIS organization and function. All organs and structures, including extracorporeal ones, of 18 embryos (4-8 weeks of development) and 45 fetuses (9-38 weeks) were studied using methods of pathomorphology, immunohistochemistry and morphometry. This approach enabled us to analyze the problem in the whole organism during its entire development. SC, Igs and J chain were already widely distributed in 4-week-old embryos and were later seen in the mucosa and glands of the digestive, respiratory and urogenital tracts, ovaries, testis, endocrine glands, extracorporeal tissues, blood-brain and other blood-organ barrier structures, as well as in serous membranes. The presence of protein transport and later of cellular components suggests an active role for SIS not only in mucous membranes, but also in blood-tissue barriers. Loss of morphological contact between epithelial structures and mucous membranes during organogenesis of some endocrine organs (hypophysis, pancreatic islets, etc.) is followed by the disappearance of SC as a result of cessation of Ig exocytosis. Secretion of Igs increased in the epithelium and glands of the digestive and respiratory tracts following massive antigenic attack in cases of acute chorioamnionitis. All of this demonstrates that SIS is a widely branching immune system which appears and acts early in the human embryo, before the lymphoid system is formed, using IgG and IgA of maternal origin. IgA and IgM-synthesized lymphocytes appear in 9-week-old fetuses.

Animals↗

Immunohistochemical investigation of secretory component and immunoglobulin A in the genital tract of the female rat.

There was intense labelling of secretory component (sc) in the glandular and luminal epithelia of the uterine horns at pro-oestrus, oestrus and Day 1 of pregnancy, but at other stages labelling was weak or undetectable. There was also intense labelling of sc in the superficial layer of cells in the stratified epithelia of the cervix and vagina at pro-oestrus and Days 4-7 of pregnancy, but not at other stages. Plasma cells containing immunoglobulin A (IgA) were not observed in any region of the genital tract at any of the times studied. The presence of sc coupled with an absence of IgA-containing plasma cells suggest that IgA in genital tract secretions of the female rat may be derived mainly from serum.

Animals↗

The expression of carcinoembryonic antigen and secretory component in adenomas of the human colon and rectum.

The immunohistochemical staining for carcinoembryonic antigen (CEA) and secretory component (SC) was evaluated in 166 endoscopically obtained colorectal adenomas of 124 patients. Expression of CEA, both in the cytoplasm and on the surface of the epithelial cells, was found to be moderately correlated with the severity of dysplasia in all adenomas. This relation was not observed with the SC expression in the adenomas. Both CEA and SC expressions were found to be increased with the size of the adenomas, but only in the villous adenomas and not in the tubular adenomas. These findings indicate that evaluation of CEA and SC expression does not add much additional information to the known parameters of malignant potential of colonic adenomas, such as dysplasia, size, and pattern of mucosal growth.

Adult↗

The human transmembrane secretory component (poly-Ig receptor): molecular cloning, restriction fragment length polymorphism and chromosomal sublocalization.

The human transmembrane secretory component (SC) mediates glandular translocation of polymeric IgA and IgM into exocrine secretions. A 2898-bp cDNA clone, encoding the entire sequence of the human transmembrane SC, was isolated from a colonic adenocarcinoma cell line cDNA library. The deduced amino-acid sequence had a length of 764 residues and showed an overall similarity of 56% and 64% with the rabbit and rat counterpart, respectively. A restriction fragment length polymorphism (RFLP) was found with PvuII, revealing a two-alle RFLP with an autosomal codominant inheritance pattern and allele frequencies of 0.65 and 0.35. Southern blot analysis of human-rodent somatic hybrid panels, including hybrids with translocation chromosomes carrying different parts of chromosome 1, assigned the SC gene to 1q31-q42, thus confirming a previously reported provisional assignment.

Amino Acid Sequence↗

Immunoassays of secretory IgA and secretory component.

1. A sandwich-type enzyme-linked immunosorbent assay (ELISA) is described for quantitation of secretory IgA (sIgA) in human serum, as well as an ELISA and a radioimmunoassay (RIA) for measurement of secretory component (SC) in human serum. Samples were reduced and alkylated prior to the measurement of SC. 2. Healthy individuals (N = 53) presented low levels of SC (median, 0.9 mg/l). The protein levels were significantly elevated when compared with the controls, in sera of women during the second (N = 31; median, 1.5 mg/l) and third (N = 35; median, 4.2 mg/l) trimesters of pregnancy and in sera of patients with alcoholic cirrhosis (N = 38; median, 2.4 mg/l) and acute viral hepatitis (N = 25; median, 2.4 mg/l). SC levels of women in the first trimester of pregnancy (N = 24; median, 0.5 mg/l) did not differ from the controls. 3. sIgA levels were also significantly elevated when sera of women in the third trimester of pregnancy (N = 41; median, 25.4 mg/l) and sera of patients with alcoholic cirrhosis (N = 32; median, 75.0 mg/l) or acute viral hepatitis (N = 38; median, 28.5 mg/l) were compared with controls (N = 49; median, 9.0 mg/l). Women in the first (N = 25; median, 7.7 mg/l) and second (N = 29; median, 10.2 mg/l) trimester of pregnancy did not present levels statistically different from the controls. 4. The results obtained for SC by RIA and ELISA were positively correlated (rs = 0.88; P less than 0.001). sIgA levels determined by ELISA were also positively correlated with the results of RIA-SC (rs = 0.77; P less than 0.001) or ELISA-SC (rs = 0.79; P less than 0.001). 5. The assays described are specific, relatively simple to perform, and can be useful for the study of the secretory immune system.

Adult↗

Secretory component, the receptor for polymeric immunoglobulin, has nothing to do with beta-galactosyltransferase in human milk.

Secretory component (SC) in external secretions is a soluble form of the polymeric immunoglobulin-receptor that is expressed on the cell membrane of mucosal epithelial cells. beta-(1-4)galactosyl transferase (beta-GT) is an enzyme that transfers galactose to non-reducing N-acetylglucosamine residues on various glycoproteins and is present in a soluble form in secretions as well as in a membrane-bound form. beta-GT is considered to have affinity for glycoproteins, including IgA in secretion. It has been claimed that these two proteins are related to or identical with each other. In the present study, we defined that the SC and the beta-GT are each independent molecules by the following facts; (1) both molecules are separable either by antibody-affinity chromatography, conventional ion-exchange or molecular exclusion chromatography, (2) conventionally purified SC from human milk contained neither enzymatic activity or antigenic determinants of the beta-GT, (3) recombinant beta-GT does not show reactivity with antibodies to SC, and (4) the SC showed no reactivity with antibody to beta-GT.

Antibodies, Monoclonal↗

In vivo experiments involving secretory component in the rat hepatic transfer of polymeric IgA from blood into bile.

Human or rat purified secretory IgA (sIgA) injected intravenously (i.v.) into rats is transferred to bile much less (seven to twenty-four times) than human or rat polymeric IgA (pIgA) devoid of secretory component (SC). A polymeric Fc alpha (pFc alpha) fragment of a human IgAl myeloma protein, obtained by IgA-protease digestion, bound in vitro to rat SC and was actively transferred in vivo into bile, in contrast to the corresponding Fab alpha. The IgA recovered in bile was not degraded, as judged by sedimentation in density gradients. Purified rabbit IgG anti-rat SC antibody was also efficiently transported in vivo into bile, about forty times more than normal rabbit IgG. The biliary transport of anti-Sc antibody could be reduced and retarded by the simultaneous i.v. injection of purified rat SC or human pIgA. The transfer of rat 125I-pIgA into bile was also significantly reduced and retarded by the concomitant i.v. injection of purified rat or human SC. Moreover, i.v. injection of purified rat or human SC induced a marked and prolonged decrease of the sIgA level in the bile. Rat SC was more effective than human SC in this respect. All these in vivo experiments confirm the in vitro findings of Orlans, Peppard, Fry, Hinton : Mullock, (1979) and Socken, Jeejeebhoy, Bazin & Underdown, (1979) showing that Sc is the IgA-receptor on the hepatocyte membrane for the transfer of pIgA from rat plasma into bile.

Animals↗

Androgen specificity of a response unit upstream of the human secretory component gene is mediated by differential receptor binding to an essential androgen response element.

The expression of secretory component (SC), the epithelial receptor for poly-immunoglobulins, is regulated in a highly tissue-specific manner. In several tissues, e.g. lacrimal gland and prostate, SC synthesis is enhanced by androgens at the transcriptional level. In this study, we describe the presence of an androgen response unit, located 3.3 kb upstream of the sc transcription initiation site and containing several 5'-TGTTCT-3'-like motifs. Although each of these elements is implicated in the enhancer function, one element, the ARE1.2 motif, is found to be the main interaction site for the androgen receptor as demonstrated in in vitro binding assays as well as in transient transfection assays. A high-affinity binding site for nuclear factor I, adjacent to this ARE, is also involved in the correct functioning of the sc upstream enhancer. The ARE1.2 motif consists of an imperfect direct repeat of two core binding elements with a three-nucleotide spacer and therefore constitutes a nonconventional ARE. We demonstrate that this element displays selectivity for the androgen receptor as opposed to glucocorticoid receptor both in in vitro binding assays and in transfection experiments. Mutational analysis suggests that the direct nature of the half-site repeat is responsible for this selectivity. We have thus determined a complex and androgen-specific response unit in the far upstream region of the human SC gene, which we believe to be involved in its androgen responsiveness in epithelial cells of different organs such as prostate and lacrimal gland. We were also able to demonstrate that the primary sequence of a single nonconventional ARE motif within the enhancer is responsible for its androgen specificity.

Androgens↗

Role of secretory component, a secreted glycoprotein, in the specific uptake of IgA dimer by epithelial cells.

The binding of secretory component (SC) to epithelial cells and its role in the specific uptake of immunoglobulin A (IgA) dimer has been studied in rabbit mammary gland and liver. SC, Mr approximately 80,000, secreted by epithelial cells of the mammary gland was found associated with the cell surface of mammary cells in intact tissue. Dispersed mammary cells and plasma membrane-enriched fractions obtained from mammary glands of midpregnant rabbits bound 125I-labeled SC in a saturable time- and temperature-dependent process. The association rate followed a second order reversible reaction (k+1 approximately equal to 2.7 x 10(6) M-1 min-1 at 4 degrees C) and equilibrium was reached in about 4 h at 4 degrees C. The dissociation rate for membranes was first order (k-1 approximately equal to 1.7 x 10(-2) min-1 at 4 degrees C), whereas displacement from cells was incomplete. The apparent affinity constant was similar for membranes and cells (Ka approximately equal to 5 x 10(8) M-1) with one class of binding sites. The number of binding sites varied from one animal to another (260 to 7,000 sites/mammary cell) in relation to endogenous occupancy by SC, which was assessed by immunocytochemistry and complement-mediated cytotoxicity. Rabbit liver and heart membranes did not bind SC, and serum proteins present in rabbit milk failed to interact with mammary cells or membranes. Mammary membranes or cells and liver membranes bound 125I-labeled IgA dimer in a saturable, reversible time- and temperature-dependent process. Association and dissociation rate constants at 4 degrees C (k+1 approximately equal to 5 x 10(6) M-1 min-1 and k-1 approximately equal to 5 x 10(-3) min-1, respectively) and the apparent affinity constant (Ka approximately equal to 10(9) M-1) were similar for liver and mammary membranes; these parameters differed, however, from those reported for free SC-IgA dimer interaction. The binding capacity of membranes for IgA dimer was directly related to the amount of free SC bound to membranes. Interaction of IgA dimer with mammary or liver membranes or cells was abrogated by excess of free SC and was prevented by preincubation of membranes or cells with Fab antibody fragments directed against SC. These data indicate that the first step in the translocation process of polymeric immunoglobulins across epithelia consists of binding of SC to the surface of epithelial cells which in turn acts as a receptor for the specific uptake of IgA dimer.

Animals↗

Expression of epithelial membrane antigen and secretory component in carcinomas of the laryngeal ventricle, epiglottis and vocal cord.

Expression of epithelial membrane antigen (EMA) and secretory component (SC) in 11 laryngeal carcinomas from the laryngeal ventricle was studied immunohistochemically and the results were compared with findings in carcinomas originating from the epiglottis and vocal cord. EMA was almost constantly present in laryngeal carcinomas of each type, while the expression of SC was observed in 7 of 11 (64%) ventricle carcinomas, 9 of 34 (26%) carcinomas from the epiglottis and 2 of 11 (18%) carcinomas from the vocal cord. In 4 ventricle carcinomas, immunostaining for SC was intense. It would appear that some carcinomas in the laryngeal ventricle originate from cells of the secretory glandular acini or the epithelium.

Adult↗

[Determination of S-IgA and free secretory component in saliva].

Saliva of 95 patients of different ages was investigated for S-IgA and free secretory component (SC). The two-directional rocket method was used as assay for separating S-IgA and free SC in the presence of heparin-Ca-EDTA. The method employs electrophoresis in an antibody containing agarose/agar gel.--The value of S-IgA in children about 4 years old was 40,0 mg/l and the relation of free SC to S-IgA was 1 to 5. The S-IgA level in patients over 50 years old was 55,2 mg/l, in no case free SC was detectable.

Age Factors↗

Tertiary structures for the extracellular domains of the epithelial polyimmunoglobulin receptor (secretory component) derived by primary structure comparisons with immunoglobulins.

The amino acid sequences of the rabbit receptor and human secretory component (SC) domains have been compared with those of immunoglobin (Ig) domains. Accessible and inaccessible sites of tryptic cleavage in bovine SC have been located by sequence homology. Computerized secondary structure prediction and three dimensional model building have been carried out. The resulting tertiary structures are extremely Ig-like consisting of two superposed beta-pleated sheets. All carbohydrate sites lie at external positions as do tryptic cleavage sites. Potential sites for tryptic hydrolysis that are not cleaved lie at buried or partially buried positions. 6. Inter-beta-sheet contact between domains appears to be highly unlikely so that the quaternary structure is largely determined by longitudinal contacts.

Amino Acid Sequence↗

Role of secretory IgA, secretory component, and eosinophils in mucosal inflammation.

Eosinophils and their products are important in the pathophysiology of allergic inflammation in mucosal tissues. Secretory component (SC) bound to IgA mediates transepithelial transport of IgA. As another biological activity of SC, we have reported that secretory IgA (sIgA) and SC preferentially activate human eosinophils. When eosinophils were stimulated with immobilized sIgA, degranulation and superoxide production were greater than when stimulated with serum IgA. In contrast, neutrophils responded similarly to sIgA and serum IgA. Superoxide production by eosinophils stimulated with cytokines was enhanced synergistically by immobilized SC, while SC showed no effect on neutrophil activation. Eosinophil superoxide production stimulated with sIgA was abolished by anti-CD18 mAb, suggesting that beta2 integrins might be crucial for this reaction. There are several reports that SC and sIgA may play important roles in regulating eosinophil functions in vivo in diseases associated with mucosal eosinophilia and in various allergic diseases. It is speculated that eosinophils in the mucosa are activated by SC or sIgA, and that subsequent degranulation and superoxide production are induced.

Animals↗

High serum levels of secretory IgA in liver disease: possible liver origin of the circulating secretory component.

Patients with liver disease frequently display unexplained elevations of serum secretory IgA (sIgA). The sIgA levels in various liver diseases were compared to various biochemical or clinical parameters. Patients with primary biliary cirrhosis, biliary tract obstruction, or acute hepatitis displayed highest sIgA levels. In chronic parenchymal liver disease sIgA levels correlated strongly with serum alkaline phosphatase (r = 0.79), leucine aminopeptidase (r = 0.83), and direct bilirubin levels (r = 0.63), but not with prothrombin time, aminopyrine breath test, or presence of portacaval shunting. In acute hepatitis sIgA correlated best with serum glutamic oxaloacetic transaminase (r = 0.69) but not with bilirubin; in four patients with fulminant hepatitis, sIgA fell rapidly together with all liver enzymes and prothrombin time; it rose quickly again in one patient when parenchymal regeneration occurred. These results suggest a hepatobiliary origin of the serum sIgA in liver disease. In acute hepatitis the persistence of hepatocytes seems necessary for maintaining high serum sIgA levels, suggesting a possible hepatocyte origin of the secretory component.

Adolescent↗

Secretory component (polymeric immunoglobulin receptor) expression on human keratinocytes by stimulation with interferon-gamma and differences in response.

Secretory IgA (sIgA) is a major protective factor in the mucosal immune system because of its great ability to form complexes with bacteria. Secretory component (SC) is an 80-kDa glycoprotein, a component of sIgA, which functions as a polymeric immunoglobulin receptor for IgA and aids the secretion of sIgA from the epithelial surface. We studied SC production by keratinocytes which were involved in the inflammatory process using interferon-gamma (IFN-gamma) as one of the major inflammatory promoters produced by helper T cells. Using two human squamous cell carcinoma cell lines (HSCs) and normal human keratinocytes (NHKs), results from flow cytometric analysis, enzyme-linked immunosorbent assay (ELISA), and Northern blotting revealed that HSCs produced SC when stimulated with IFN-gamma, although their responses differed; one line exhibited enhanced SC production whereas the production in the other line was suppressed. NHKs also exhibited SC expression on the cell surface by means of immunocytochemical analysis, flow cytometry and ELISA, however the responses were also different in each strain. Although the reason for the diversity of SC expression on keratinocytes is not clear, these differences may influence epidermal sIgA secretion level.

Base Sequence↗

Hormonal influence on the secretory immune system of the eye: endocrine interactions in the control of IgA and secretory component levels in tears of rats.

Previous research from our laboratory has demonstrated that androgens regulate the ocular secretory immune system of the rat. The purpose of the present study was to determine whether other hormones might influence this androgen effect. Experiments involved the daily administration of saline or hormones to adult orchiectomized rats, the collection of tears 24 hr after the fourth hormone injection, and the measurement of free secretory component (SC), IgA and total protein levels in tears. Our first aim was to evaluate whether female sex steroids might antagonize androgen action on tear IgA and SC: orchiectomized rats were treated with combinations of saline, testosterone, oestradiol or progesterone. Testosterone induced a significant increase in the tear SC and IgA concentrations, as compared to those of saline-injected controls. This androgen effect was not inhibited by co-treatment with oestradiol or progesterone, nor duplicated by the administration of these hormones alone. Our second aim was to assess whether the absence of certain hormones might alter tear SC and IgA levels, or influence the ocular response to androgen exposure: rats underwent orchiectomies and specific endocrine organ ablations or appropriate sham-surgery. Absence of the pituitary gland, but not the thyroid, adrenal or pineal glands, resulted in a significant decrease in tear SC, IgA and total protein content. In addition, removal of the thyroid or adrenal glands did not prevent the testosterone-associated increase in tear SC and IgA, although thyroidectomy or adrenalectomy did diminish the magnitude of the androgen response. In contrast, hypophysectomy completely blocked the effect of testosterone on both tear SC and IgA. These results indicate that the hypothalamic-pituitary axis may regulate, or mediate, the action of androgens on ocular immunity in the rat.

Adrenal Glands↗

Secretory component and immunoglobulins in the intrahepatic biliary tree and peribiliary gland in normal livers and hepatolithiasis.

Distribution of secretory component (SC), IgA, IgM and joining chain (J chain) in the intrahepatic biliary epithelium and peribiliary glandular epithelium were studied in normal livers and hepatolithiasis. In normal livers, SC was immunohistochemically demonstrated homogeneously in the cytoplasm of the biliary lining and peribiliary glandular epithelium. Immunoelectron-microscopically, SC was localized in the basolateral plasma membranes, nuclear membranes, rough endoplasmic reticulums, Golgi complexes and intracytoplasmic small vesicles, suggesting that the biliary lining and peribiliary glandular epithelium has an ability to synthesize SC. On the other hand, IgA and IgM were found heterogeneously in the biliary lining epithelium, and immunoelectron-microscopically they were only localized in the basolateral plasma membranes and vesicles. J chain was found in similar portions, suggesting that IgA and IgM in biliary lining and glandular epithelium were polymeric. It seems likely that polymeric IgA and IgM combine with SC on the biliary lining and glandular epithelial membranes, and subsequent endocytic transport and secretion of these complexes into the bile occur. In hepatolithiasis in which biliary living epithelia are hyperplastic and peribiliary glands proliferate markedly, such endocytic transport and secretion seemed to be increased. From these findings, it was suggested that the peribiliary glandular as well as biliary lining epithelium contributes to a local immunity in the biliary tree, especially in hepatolithiasis.

Aged↗

Antisera to the secretory component recognize the murine Fc receptor for IgA.

Studies were undertaken to determine a possible structural relationship between the secretory component (SC) and the receptor for IgA (Fc alpha R). An IgA-mediated rosetting technique was used to assess the presence of Fc alpha R+ cells in various lymphoid tissues from normal BALB/c mice and mice bearing an IgA plasmacytoma (MOPC 315). Tissues from the MOPC 315-bearing BALB/c mice were found to have a significantly higher percentage of Fc alpha R+ cells; thus, nonadherent spleen cells from MOPC 315-bearing mice were used as a source of Fc alpha R+ cells in these studies. The cells were preincubated with anti-SC and then assayed for the ability of IgA to bind to the Fc alpha R. Antisera to SC from various species inhibited the formation of IgA-mediated rosettes, although preincubation of the Fc alpha R+ cells with antisera directed against other cell surface molecules (e.g., Thy1.2, Lyt1, Lyt2, Fc gamma R, MHC class I and II) or preimmune sera had no significant effect on IgA-mediated rosette formation. Preabsorption of the anti-SC with secretory IgA or with free SC removed the inhibitory effect; preabsorption with myeloma IgA had no effect. These data suggest that SC and Fc alpha R are related serologically and may be structurally related, possible in the IgA-binding region.

Animals↗