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Mechanisms of secretion of proteins into bile: studies in the perfused rat liver.

Employing the in situ perfused rat liver, we examined the origins and mechanisms of transport of proteins into bile. First, utilizing polyacrylamide gels, we noted that many biliary proteins co-migrated with dominant serum proteins. Upon liver perfusion with serum-free medium, most proteins disappeared from the biliary profile; one major biliary protein that was not present in serum, identified as secretory component, remained. Kinetic analysis of the disappearance half-lives of the biliary proteins suggested that some serum proteins enter bile by a slow (20 to 30 min; transcellular) route, while others utilize both slow and rapid (5 min; paracellular) routes. In biosynthetic labeling experiments, secretion of newly synthesized proteins into bile was delayed about 20 min when compared with secretion of proteins into the perfusion medium and comprised less than 1% of the total secreted proteins. When a new liver was inserted into the perfusion medium containing newly synthesized secreted proteins, only two proteins, hemopexin and an unidentified protein, were transported into the bile from the perfusion medium; other biliary proteins were presumed to come directly from the hepatocyte. This latter group included some proteins that were secreted into the perfusion medium as well as into bile, and others, e.g., secretory component, that were secreted only into bile. Based on our results we have defined six pathways for entry of proteins into bile.

Animals↗

Nerve-evoked secretion of immunoglobulin A in relation to other proteins by parotid glands in anaesthetized rat.

Secretion of fluid and proteins by salivary cells is under the control of parasympathetic and sympathetic autonomic nerves. In a recent study we have shown that, in the rat submandibular gland, autonomic nerves can also increase the secretion of IgA, a product of plasma cells secreted into saliva as SIgA (IgA bound to Secretory Component, the cleaved poly-immunoglobulin receptor). The present study aimed to determine if parotid secretion of SIgA is increased by autonomic nerves and to compare SIgA secretion with other parotid proteins stored and secreted by acinar and ductal cells. Assay of IgA in saliva evoked by parasympathetic nerve stimulation immediately following an extended rest period under anaesthesia indicated that it had been secreted into intraductal saliva in the absence of stimulation during the rest period. The mean rate of unstimulated IgA secretion (2.77+/-0.28 microg min(-1) g(-1)) and the 2.5-fold increase in IgA secretion evoked by parasympathetic stimulation were similar to results found previously in the rat submandibular gland. Sympathetic nerve stimulation increased SIgA secretion 2.7-fold, much less than in the submandibular gland. SDS-PAGE and Western blot analysis with anti-IgA and anti-Secretory Component antibodies confirmed that SIgA was the predominant form of IgA in saliva. Acinar-derived amylase and ductal-derived tissue kallikrein were more profoundly increased by parasympathetic and particularly sympathetic stimulation than SIgA. Overall, the results of the present study indicate that SIgA forms a prominent component of unstimulated parotid salivary protein secretion and that its secretion is similarly increased by stimulation of either autonomic nerve supply. The secretion of other parotid salivary proteins that are synthesized and stored by acinar or ductal cells is upregulated to a much greater extent by parasympathetic and particularly sympathetic stimulation.

Amylases↗

Decreased excretion of antimicrobial proteins and peptides in saliva of patients with oral candidiasis.

BACKGROUND: Antimicrobial peptides in saliva appear to play a crucial role in the regulation of oral Candida growth, and study on antimicrobial excretion in saliva and oral candidiasis appears useful for the analysis of pathophysiology of oral candidiasis. METHODS: To clarify the role of saliva in the regulation of oral Candida growth, the levels of antimicrobial proteins and peptides and their excretion rates were examined in saliva obtained from 50 patients with oral candidiasis and 35 healthy individuals. RESULTS: The inhibitory activities of patients' saliva against Candida adhesion with HeLa cells and against Candida growth (radiolabeled glucose incorporation) were lower than those of saliva from the healthy controls. The salivary levels of lactoferrin (Lf; 11 +/- 9 microg/ml), secretory immunoglobulin A (sIgA; 160 +/- 37 microg/ml), beta-defensin 1 (375 +/- 37 ng/ml), and beta-defensin 2 (412 +/- 51 ng/ml) in the patients were largely lower than those in the control group (33 +/- 14 microg/ml, 204 +/- 51 microg/ml, 452 +/- 89 ng/ml, and 530 +/- 142 ng/ml, respectively), although the transferrin (Tf) and secretory component (SC) levels were almost same in both groups, and alpha-defensin 1 was slightly increased in the patient group (660 +/- 115 ng/ml vs. 467 +/- 168 ng/ml). In addition, the excretion rates of the proteins and peptides were largely decreased in the patients (Tf: 14 +/- 2 microg/10 min vs. 34 +/- 7 microg/10 min; Lf: 18 +/- 11 microg/10 min vs. 139 +/- 43 microg/10 min; sIgA: 300 +/- 132 microg/10 min vs. 900 +/- 207 microg/10 min; SC: 112 +/- 46 microg/10 min vs. 292 +/- 64 microg/10 min; alpha-defensin 1: 1223 +/- 431 ng/10 min vs. 2044 +/- 612 ng/10 min; beta-defensin 1: 687 +/- 243 ng/10 min vs. 1985 +/- 295 ng/10 min; and beta-defensin 2: 784 +/- 299 ng/10 min vs. 2288 +/- 278 ng/10 min). CONCLUSION: These results conclusively suggest that oral candidiasis is associated with salivary gland hypofunction and that decreases of salivary antibacterial proteins induce Candida overgrowth.

Aged↗

Secretory IgA and squamous epithelization in adenoids of children with otitis media with effusion.

Infection of adenoids has been considered a causative factor of otitis media with effusion (OME). We believe that the deterioration in the mucosal barrier of adenoids makes the adenoids vulnerable to bacterial infections, resulting OME. In this study, we evaluated secretory IgA, secretory component (SC) and reticular and squamous changes of ciliated epithelium in adenoids. Fourteen children with OME (OME(+)) and 6 children without any history of OME (OME(+)) were enrolled in the study. Immunohistological study on the adenoids using anti-IgA and anti-SC revealed no significant difference between two groups in the number of IgA positive cells in the subepithelial layer. However, the proportion of the secretory component-positive area in the epithelium was significantly lower in the OME(+) group (11.4 +/- 13.0%) than in the OME(+) group (20.7 +/- 9.6%) (Mann Whitney U test, p <0.05). Histological study using hematoxylin and eosin staining revealed that the area of squamous epithelization was bigger in the OME(+) group (32%) than in the OME(+) group (16%) (p <0.05). The number of ciliated cells was decreased in the OME(+) group (13%) compared with the OME(+) group (31%). The epithelium was thicker in the OME(+) group (101 mu m) than in the OME(+) than in the OME(+) group (79 mu mm) (p <0.05). These results suggest that the production of the secretory component is lower in the epithelium of adenoids in children with OME. Hyperplasia, squamous epithelization and decreased number of ciliated cells may also hamper mucosal clearance of the adenoids of children with OME. These findings suggest that the adenoids of children with OME are more susceptible to infections than adenoids of children without OME.

Adenoids↗

Protein secretion in Pseudomonas aeruginosa: characterization of seven xcp genes and processing of secretory apparatus components by prepilin peptidase.

The xcp genes are required for the secretion of most extracellular proteins by Pseudomonas aeruginosa. The products of these genes are essential for the transport of exoproteins across the outer membrane after they have reached the periplasm via a signal sequence-dependent pathway. To date, analysis of three xcp genes has suggested the conservation of this secretion pathway in many Gram-negative bacteria. Furthermore, the xcpA gene was shown to be identical to pilD, which encodes a peptidase involved in the processing of fimbrial (pili) subunits, suggesting a connection between pili biogenesis and protein secretion. Here the nucleotide sequences of seven other xcp genes, designated xcpR to -X, are presented. The N-termini of four of the encoded Xcp proteins display similarity to the N-termini of type IV pili, suggesting that XcpA is involved in the processing of these Xcp proteins. This could indeed be demonstrated in vivo. Furthermore, two other proteins, XcpR and XcpS, show similarity to the PilB and PilC proteins required for fimbriae assembly. Since XcpR and PilB display a canonical nucleotide-binding site, ATP hydrolysis may provide energy for both systems.

Amino Acid Sequence↗

Excretory-secretory antigenic components of Paragonimus heterotremus recognized by infected human sera.

Antigenic components of Paragonimus heterotremus metabolic products were revealed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and immunoblot analysis of sera from patients with P. heterotremus infection, from patients with other illnesses, and from healthy adults. By SDS-PAGE, it was found that the metabolic products comprised more than eight major polypeptides. Immunoblot analysis revealed 11 components which were strongly recognized by paragonimiasis antisera. These antigenic components had molecular masses ranging from less than 12.3 kDa to 144 kDa. One antigenic band of 31.5 kDa was found to give a consistent reaction with paragonimiasis antisera (97% sensitivity). Of the other patient sera, only sera from patients with Fasciola sp. infection reacted with antigenic bands of 56, 38, and 18.5 kDa. The present findings suggest that the 31.5-kDa component is sensitive and specific for the diagnosis of human P. heterotremus paragonimiasis.

Animals↗

A study of the secretory immune system of the female genital tract.

Immunocytes in the female genital tract are found principally in the endocervix. The predominant immunoglobulin produced in this site is IgA and this, together with the presence of secretory component in endocervical epithelium, indicates that a local secretory immune system, similar to that found in the gastrointestinal and respiratory tracts, exists in the endocervix. This local secretory immune system appears to be the major source of immunoglobulins in cervical mucus and the presence of secretory IgA in cervico-vaginal secretions provides an effective protection mechanism against viral and bacterial infections. Secretory IgA also acts non-specifically against exogenous antigens and may, by binding spermatozoal antigens, play a role in immunologically mediated infertility.

Adult↗

[Detection of IgA in diseased skin and serum of patients with psoriasis vulgaris].

Origin and function of IgA in the psoriatic skin are unknown. Including a monoclonal antibody against the secretory component (SC) of the secretory IgA (SIga), we have tried to characterize the IgA in psoriasis. With help of a polyclonal antiserum we found depots of IgA in the skin in 69% of all investigated patients. There was a correlation between the degree of akanthosis and the amount of intraepidermal IgA. In the serum of the psoriasis total IgA was significant increased, but never we found SC-bound SIgA in the skin or elevated levels in serum of patients.

Adult↗

Influence of fowl uropygial gland and its secretory lipid components on growth of skin surface bacteria of fowl.

Bacterial species, which occur on the breast skin surface of adult (1 year old) white leghorn fowl with intact uropygial gland, were identified as : Staphylococcus epidermidis, Sarcina lutea, Streptomyces sp. and a facultative diphtheroid belonging to the genus Corynebacterium; S. epidermidis being the most predominant one. Two species of bacteria, namely, Staphylococcus aureus and Proteus sp. were shown to colonize the skin surface after 60 days of captivity. Extirpation of uropygial gland caused severe depletion of population of S. epidermidis, Streptomyces sp. and diphtheroid. The effect was more conspicuous after 60 days compared to that after 30 days of the gland removal. On the skin surface of glandless fowls the population of S. aureus increased significantly and a new form identified as anthracoid bacillus became the most predominant species after 60 days. Addition of total lipids from the free-flowing fowl uropygial secretion, as 0.2% suspension, to trypticase soya broth cultures of individual bacteria of fowl skin surface encouraged strongly the growth of S. epidermidis, Streptomyces sp. and Proteus sp. but suppressed the population of the anthracoid. When identical amount of diester wax or wax alcohol of the secretion was supplemented to the culture, more or less similar result was obtained. Wax alcohol also had a mild inhibitory effect on Streptomyces sp. Wax acids, added to the culture (0.2%) suppressed population of all the bacterial forms except Proteus sp., while the hydrocarbon fraction, which also contained some amount of squalene, produce an opposite effect.

Animals↗

Hormonal influence on the secretory immune system of the eye: androgen modulation of IgA levels in tears of rats.

The objective of the present studies was to determine whether hormones influence the level of IgA in tears of rats. Our results demonstrated that IgA concentrations in tears of male rats were significantly higher than those of females. This difference appeared to be due to an effect of androgens. Castration of male rats led to a significant decline in the content of tear IgA. Administration of testosterone offset this response and stimulated a time-dependent accumulation of IgA in tears of orchiectomized rats. This hormone action was only elicited by androgens, and not by other classes of steroid hormones. The testosterone-induced increase in tear IgA levels may have involved enhanced local production of IgA, and was found to occur in parallel with an elevation in tear secretory component concentrations. These findings indicate that androgens may regulate the ocular secretory immune system of the rat.

Animals↗

Transport models for secretory IgA and secretory IgM.

At least seven models have been proposed for the epithelial transport of IgA, and each model presents particular features which are not generally appreciated. Much of the confusion in this field has been caused by the many conflicting reports about the cellular origin of the secretory component (SC) and the mode in which it is expressed by secretory epithelial cells. The transport model proposed in 1973-74 on the basis of test-tube experiments and immunohistochemical studies has now gained considerable support from observations made on both normal and neoplastic living epithelial cells According to this model, the J ("joining') chain and SC represent "the lock and key' in the selective external translocation of both dimeric IgA and pentameric IgM through serous-type secretory epithelial cell. Incorporation of J chains into these two Ig isotypes during their production in gland-associated immunocytes induces a configurational fit (binding site) allowing them to combine by specific non-covalent interactions with SC in the plasma membrance of the epithelial cell. After being formed on the basolateral surface of the cell, the SC-IgA and SC-IgM complexes are transported in cytoplasmic vesicles to the gland lumen along with some free SC. Covalent stabilization of human secretory IgA during this process depends on unique possibilities for disulphide-exchange reactions and is not an inherent feature of the transport model.

Animals↗

Domain deletions in the human polymeric Ig receptor disclose differences between its dimeric IgA and pentameric IgM interaction.

The human polymeric Ig receptor (pIgR), or transmembrane secretory component, is basolaterally expressed on secretory epithelial cells; its function is to transport externally J chain-containing dimeric IgA and pentameric IgM. The ligand-binding extracellular part of this receptor contains five disulfide-stabilized domains which show considerable homology with the variable domains of Ig chains. The N-terminal domain 1 (D1) mediates the initial noncovalent ligand interaction. In this study we made deletions of the human pIgR D2 and D3 (pIgRDelta2,3), or D4 and D5 (pIgRDelta4,5), to investigate the influence of these domains in receptor binding and transport of dimeric IgA and pentameric IgM across MDCK cells transfected with the truncated receptors. Both mutants were found to bind pentameric IgM, but only pIgRDelta4,5 bound dimeric IgA. These results showed that the two ligands interact differently with human pIgR; binding of pentameric IgM apparently depends fully on strong interactions with D1, while binding of dimeric IgA in addition depends on elements within D2 and / or D3 to support the initial noncovalent binding to D1. Moreover, our studies imply that dimeric human IgA binds differently to pIgR from various species. This observation cautions against interpretation of functional studies performed with non-homologous receptor-ligand pairs.

Animals↗

Changes occurring in the epithelium covering the bronchus-associated lymphoid tissue of rats after intratracheal challenge with horseradish peroxidase.

Changes occurring in the epithelium covering bronchus-associated lymphoid tissue (BALT) in the rat after several intratracheal administrations of horseradish peroxidase (HRP) were studied using morphological and ultrastructural methods. The epithelium is invaded by W3/25-positive (T-helper) lymphocytes, the BALT epithelial cells become Ia-positive and develop microvilli; there is an apparent loss of cilia. The number of non-ciliated cells in stimulated BALT increases. The non-ciliated cells can be subdivided into two cell types, one with electron-dense cytoplasm and cytoplasmic granules and the other without granules. The electron-density of the latter cell type is intermediate between that of the ciliated cells and that of the granule-containing non-ciliated cells. The granule-containing cell types may be responsible for the uptake of antigens, while the other non-ciliated cell may be involved in the production of the secretory component and the passage of secretory IgA.

Animals↗

[The role of airway submucosal glands in the airway mucosal defense system].

Despite constant inhalation of air-borne particles including a variety of microbes and antigens, the normal lungs hardly ever develop infection or airway injury. This is because the normal lung is equipped with sophisticated defense mechanisms against foreign substances. It has been reported that the airway mucosa, especially the submucosal glands, play important roles not only in nonspecific defense using airway secretions but also in specific defense in cooperation with immune cells. In contrast to the nasopharyngeal or intestinal mucosa, which is always exposed to many foreign antigens, the mucosal surface of the lower respiratory tract in known to be kept in a germ-free condition. This fact indicates that immunological information derived from the antigen-rich mucosa, such as the intestine, might be transmitted to the airway mucosa, thus resulting in efficient removal of unwanted substances. This immunological elimination requires specific antibodies (Abs) against harmful antigens, and the major population of Abs in the airway is dimeric IgA. Airway submucosal glands synthesize a secretory component (SC), a transporter of secretory IgA, and immunoglobulin-containing plasma cells have been identified preferentially around the glandular tissue. Overall, the submucosal glands play a key role in the integrity of airway mucosal immunity.

Airway Resistance↗

IgA plasma cells in biliary mucosa: a likely source of locally synthesized IgA in human hepatic bile.

IgA synthesized in hepatobiliary tissues accounts for about one-half of the IgA present in human hepatic bile, but the location of the IgA synthesizing cells has been in doubt because few plasma cells are present in normal liver. Therefore, we immunocytochemically localized IgA, J chain and secretory component in bile duct tissues of six patients operated upon for biliary duct obstruction. Numerous plasma cells containing IgA and J chain were found surrounding the accessory glands of the major bile ducts and in the area just beneath the surface epithelium of the ducts. At the ultrastructural level, IgA and SC in the epithelial cells had the features characteristic of secretory component-mediated endocytic translocation of IgA. We conclude that plasma cells in biliary duct mucosa are the likely source of much of the locally synthesized IgA that is secreted into human hepatic bile. The IgA probably reaches the bile by direct transfer across biliary epithelium.

Aged↗