Search PubMed⌕ Search

Biomedical subjects

P Verroust

Publications and source records attributed to P Verroust.

At least 19 recordsLinked to original sources

A two-receptor pathway for catabolism of Clara cell secretory protein in the kidney.

Clara cell secretory protein (CCSP) is a transport protein for lipophilic substances in bronchio-alveolar fluid, plasma, and uterine secretion. It acts as a carrier for steroid hormones and polychlorinated biphenyl metabolites. Previously, the existence of receptors for uptake of CCSP.ligand complexes into the renal proximal tubules had been suggested. Using surface plasmon resonance analysis, we demonstrate that CCSP binds to cubilin, a peripheral membrane protein on the surface of proximal tubular cells. Binding to cubilin results in uptake and lysosomal degradation of CCSP in cultured cells. Surprisingly, internalization of CCSP is blocked not only by cubilin antagonists but also by antibodies directed against megalin, an endocytic receptor that does not bind CCSP but associates with cubilin. Consistent with a role of both receptors in renal uptake of CCSP in vivo, patients deficient for cubilin or mice lacking megalin exhibit a defect in tubular uptake of the protein and excrete CCSP into the urine. These findings identify a cellular pathway consisting of a CCSP-binding protein (cubilin) and an endocytic coreceptor (megalin) responsible for tissue-specific uptake of CCSP and associated ligands.

Animals↗

Membrane receptors for endocytosis in the renal proximal tubule.

The renal proximal tubule exhibits a very extensive apical endocytic apparatus consisting of an elaborate network of coated pits and small coated and noncoated endosomes. In addition, the cells contain a large number of late endosomes/prelysosomes, lysosomes, and so-called dense apical tubules involved in receptor recycling from the endosomes to the apical plasma membrane. This endocytic apparatus is involved in the reabsorption of molecules filtered in the glomeruli. The process is very effective as demonstrated by the fact that although several grams of protein are filtered daily in the human glomeruli, human urine is virtually devoid of proteins under physiological conditions. Several key receptors appear to be involved in this function, which serves not only to conserve protein as such for the organism but also to reabsorb vital substances such as different vitamins in complex with their binding proteins. Recent research has established megalin, a 600-kDa protein belonging to the LDL receptor family, as probably the most important receptor in this process in the proximal tubule mediating endocytosis of a large variety of ligands and therefore classifying it as a scavenger receptor. More specific receptors like the folate receptor, IGF-II/Man-6-P receptor, and gp280/IFR, identical to the intrinsic factor receptor, are also functioning in the apical endocytic pathway of renal proximal tubules. A better understanding of these receptors will give us new insight into these very important processes for the organism.

Animals↗

Characterization of a kidney proximal tubule cell line, LLC-PK1, expressing endocytotic active megalin.

Reabsorption and cellular handling of glomerular filtered vitamins, peptides, and hormones in the proximal tubule are essential, but thus far, poorly elucidated processes. The multiligand receptor megalin, initially described as a Heymann nephritis antigen and later identified as a member of the LDL receptor gene family, mediates reabsorption of several molecules, such as transcobalamin-vitamin B12 and albumin, in the proximal tubule. Consequently, a differentiated cell line of proximal tubular origin expressing megalin is an important requisite for examination of the above-mentioned processes. This study shows, using electron microscopy, that the cell line LLC-PK1, originating from the proximal tubule, maintained differentiated morphology and had a well developed endocytotic apparatus. Furthermore, by immunoblotting and immunohisto- and cytochemistry, megalin was identified in the endocytotic compartments of these cells. Megalin was situated mainly in the endosomes and in the dense apical tubules, but it was also identified in coated pits and in the brush border. The ability of megalin to mediate internalization and degradation of labeled receptor-associated protein (RAP) in a RAP-inhibitable manner was demonstrated. By autoradiography, the endocytosed, iodinated RAP was located in endosomes and lysosomes in the apical part of the cells. Moreover, the LLC-PK1 cells assembled in a monolayer with a hindrance toward diffusion of labeled mannitol, inulin, and dextran at a satisfactory level for the study of proximal tubule handling of smaller proteins. This study reveals a proximal tubule cell line expressing megalin in a functional manner well suited for binding, uptake, and transcellular transport studies.

Animals↗

Megalin-mediated endocytosis in renal proximal tubule.

Megalin, a 600 kDa membrane protein belonging to the IDL receptor family is highly expressed in the endocytic pathway of renal proximal tubules. In addition, this receptor is found in several other epithelia facing transcellular fluids but is also expressed in the parathyroid glands. Recent studies have established this protein as probably the most important receptor for endocytosis of macromolecules filtered in the renal glomeruli. The ligands reported to bind to megalin consist of a variety of different substances including albumin, vitamin-carrier complexes, proteinases and proteinase-inhibitor complexes, lipoprotein particles, receptor associated protein (RAP), different drugs and calcium.

Animals↗

Evidence for increased synthesis of complement C4 in the renal epithelium of rats with passive Heymann nephritis.

Passive Heymann nephritis (PHN) is a complement-dependent model of immune complex glomerulonephritis. This study investigated the contribution of local complement synthesis by studying gene expression of the classical pathway component C4 in relation to the site of the tissue injury and the development of proteinuria induced by the pathogenic antibody (sheep anti-GP330). This study, using in situ hybridization, found that C4 mRNA expression was increased in the glomerular epithelium and the proximal renal tubular epithelium in a distribution similar to that of the targeted GP330 antigen. The total cortical C4 mRNA expression assessed by semiquantitative polymerase chain reaction (PCR) increased in a time-dependent manner (P < 0.05), coincident with the onset and progression of proteinuria, and peaking 11 to 14 days after the induction of the disease. These data suggest a link, in place and time, between local complement gene expression and glomerular barrier dysfunction induced by anti-GP330. It is postulated that increased epithelial synthesis of C4 stimulated by the engagement of GP330 enhances the formation of the membrane attack complex of complement through its classical pathway, and, hence, the formation of complement-mediated injury.

Animals↗

Internalization and recycling of glycoprotein 280 in epithelial cells of yolk sac.

The luminal plasma membrane of the epithelial cells lining the visceral layer of the yolk sac and the renal proximal tubule display a well developed brush border defining numerous clathrin-coated intermicrovillar areas which are further characterized by expressing two glycoproteins, gp280 and gp330, the latter also known as the Heymann nephritis antigen. The present study analyzes the distribution, the internalization and intracellular trafficking of gp280 and gp330 in yolk sac epithelium by immunoultrastructural and cell surface labeling techniques. Immunocytochemistry revealed that gp280 and gp330 were distributed very similarly in the endocytic pathway including dense apical tubules, with the exception that gp330 was found in lysosomes to a much greater extent than gp280. To demonstrate internalization of gp280, apical cell membrane proteins of paired yolk sacs were labeled at 4 degrees C with biotin, linked via a disulfide bond cleavable under mild reducing conditions by glutathione, and either kept at 4 degrees C or incubated at 37 degrees C. These experiments showed that biotin could be cleaved from gp280 by glutathione in yolk sacs kept at 4 degrees C, whereas it became inaccessible to glutathione after incubation at 37 degrees C, suggesting internalization of gp280. Furthermore, incubation of yolk sacs in the presence of colloidal gold-labeled antibodies to gp280 demonstrated that gp280, initially expressed on the cell membrane, was translocated into endocytic vacuoles and accumulated in dense apical tubules, whereas only a small fraction reached the lysosomes. Under similar conditions, gold-labeled antibodies to gp330 were also internalized and followed a similar intracellular routing, but lysosomal accumulation was also found. Bovine serum albumin-labeled gold particles accumulated in lysosomes but were virtually absent from dense apical tubules. These observations suggest that gp280 and gp330, visualized by anti-gp280 and anti-gp330 antibodies coupled to gold particles, returned to the cell surface via dense apical tubules, whereas albumin gold particles dissociated from a potential binding protein in the early endocytic compartment and were subsequently accumulated in lysosomes. Since gp280 is internalized and apparently translocated to a recycling compartment as is gp330, our results suggest that gp280 may play a role as a receptor for endocytosis of as yet unknown ligands.

Animals↗

Intraglomerular C3 synthesis in rats with passive Heymann nephritis.

Passive Heymann nephritis (PHN), a model of human membranous nephropathy, is an immune-complex-mediated glomerulonephritis characterized by the presence of complement-dependent tissue injury. Recent studies have confirmed the synthesis of C3, involved in both the classical and alternative pathways of complement, in injured human and animal renal tissues. However, there is little clear information on the role of local C3 synthesis in the pathogenesis of nephritides such as PHN. In the present study, using nonradioactive in situ hybridization and semiquantitative reverse transcriptase polymerase chain reaction, we examined C3 synthesis in the kidney and its contribution to tissue injury in a rat model of PHN induced by the injection of polyclonal anti-gp330 antibody. C3 mRNA was localized in mesangial cells, glomerular epithelial cells, and cells of Bowman's capsule. During the early stages of PHN, C3 mRNA expression was detected in mesangial cells and glomerular epithelial cells, whereas such expression was limited to mesangial cells during the late stages of the disease. Focal, weak C3 mRNA expression was detected in tubular epithelial cells and occasionally in the interstitium. Semiquantitative polymerase chain reaction demonstrated that the level of C3 mRNA expression correlated with that of proteinuria. Our results suggest that renal cells synthesize C3 mRNA in PHN in a site-specific manner and that locally produced C3 is associated with the development of proteinuria in this model.

Animals↗

Isolation of cDNAs encoding immunogenic regions of gp330, the autoantigen involved in Heymann nephritis.

Active Heymann nephritis is an organ-specific autoimmune disease of the rat kidney, characterized by the formation of immune complexes located subepithelially in the glomerulus. The T cell-mediated humoral immune response is directed to gp330, a large renal epithelial glycoprotein which is expressed both in the proximal tubule and on glomerular podocytes. In this study polyclonal rabbit antibodies raised against affinity-purified rat gp330 were used to screen a lambda-gt11 expression library of the rat kidney. One cDNA clone that was recognized by the antibodies coded for a 2.7-kb protein that is not described in the sequence database of GenBank/EMBL. Two other groups of cDNA clones were identified that displayed similarity with several members of the low-density lipoprotein (LDL)-receptor gene family to which gp330 belongs. By comparison with the gp330-cDNA sequence, these two clones could be mapped to two remote areas on the extracellular domain of gp330. The antigenicity of these two areas is in accordance with their location in highly hydrophilic regions on the extracellular domain of gp330. The cDNA clones described in this study may represent two main immunodominant regions on rat gp330.

Animals↗

Segmental distribution of the endocytosis receptor gp330 in renal proximal tubules.

The subcellular distribution and segmental variations in location of gp330, a scavenger receptor for filtered proteins in renal proximal tubules, was analyzed. Kidney tissue from rats (4 different strains), rabbits and humans were analyzed by light- and electron microscope immunocytochemistry, using cryosections or Lowicryl sections from cryosubstituted tissue. Gp330 was located mainly in apical coated pits, small and large endocytic vacuoles and in dense apical tubules in the proximal tubule cells. The labeling density was markedly higher in segments 1 and 2 as compared to segment 3 of the proximal tubule. In addition to the location in the early part of the endocytic pathway, gp330 was also present in lysosomes, especially in segments 1 and 2. The lysosomal labeling was not restricted to the membrane, but was also seen in the matrix. Localization of gp330 in lysosomes was confirmed on sections from purified lysosomal fractions from rat renal cortex. The brush border localization of gp330 in proximal tubules exhibited a characteristic segmental variation. In the initial part of segment 1, there was virtually no brush border labeling. In the remaining part of segment 1 and in segment 2, there was a distinct but sometimes patchy labeling of the brush border. In segment 3, groups of microvilli of approximately 10 as seen in sections were intensively labeled from bottom to tip and there were often more than one of these groups on a single cell, the remaining microvilli were unlabeled. No differences in the cellular and subcellular localization of gp330 were observed between species or rat strains. In conclusion, the present study demonstrates that in addition to its location in the early endocytic and recycling pathway, gp330 is also present in microvilli and the protein and degradation products thereof is present in lysosomes, consistent with its role as a protein scavenger receptor.

Animals↗

Gp330 is specifically expressed in outer cells during epithelial differentiation in the preimplantation mouse embryo.

During preimplantation development of the mouse embryo, a layer of outer cells differentiates into a perfect epithelium, the trophectoderm. The divergence between the trophectoderm and the inner cell mass takes place from the 8-cell stage to the 64-cell stage and precedes their commitment at the blastocyst stage. In this work, we have investigated the expression of gp330, a 330 x 10(3) M(r) glycoprotein found in clathrin-coated areas of the plasma membrane of some epithelial cells characterized by a high level of endocytic activity. Our results show that gp330 is first synthesized in 16-cell stage embryos and that its appearance is restricted to outer cells until the blastocyst stage. Furthermore, its expression is repressed in inner cells at a post-transcriptional level, probably through the development of extensive cell-cell contacts.

Animals↗

Antibodies to the 280-kd coated pit protein, target of teratogenic antibodies, produce alterations in the traffic of internalized proteins.

Previous studies have identified two high-molecular weight (280 and 330 kd) glycoproteins expressed by coated pits of the proximal renal tubule and yolk sac and have further established that, in vivo, antibodies to gp280 but not to gp330 induce fetal malformations. In the present study, we report the effect of these antibodies on the endocytic process by yolk sac visceral epithelial cells of rat embryos explanted at day 10 of gestation. Antibodies to gp280 markedly altered development of the yolk sac and embryo, induced malformations, inhibited by 40% the uptake of [14C] sucrose and perturbed the intracellular traffic of internalized proteins. Under control conditions, rat immunoglobulin G present in the culture medium was immunolocalized in lysosomes of epithelial cells, whereas in the presence of antibody, it was detected in small vesicles scattered through the apical cytoplasm. Alterations of the endocytic pathway were confirmed by experiments analyzing the uptake of peroxidase added to the medium for 2 to 60 minutes. The initial compartments of endocytosis visualized by peroxidase were increased in size and abnormal in shape and the transfer of the internalized peroxidase to the lysosomal compartment was delayed. In contrast, antibodies to gp330 had a minimal effect on embryonic development and did not induce fetal malformations. Endocytosis was only modestly altered; uptake of [14C] sucrose was decreased by 25%, and only minor modifications of the intracellular transit of peroxidase could be detected. We suggest that the key role of anti-gp280 antibodies is via trapping of the target antigen in the early endocytic compartment thus preventing its normal function in lysosomal transfer.

Animals↗

Epitope specificity of anti-gp330 autoantibodies determines the development of proteinuria in active Heymann nephritis.

In active Heymann nephritis, an experimental autoimmune disease in the rat, gp330 is regarded as the main antigenic target. Immunization with detergent-solubilized renal tubular epithelium (RTE-DOC) has been shown to be less nephritogenic than immunization with crude RTE. In this study immunization with either crude RTE or affinity-purified gp330 did, but immunization with RTE-DOC did not induce proteinuria. Both a possible aberrant subclass distribution of anti-gp330 autoantibodies and the involvement of additional nephritogenic autoantigens such as DPP IV (gp90) or laminin could be excluded. Circulating anti-gp330 autoantibody titers were significantly higher in RTE-DOC-immunized rats than in RTE-immunized animals. In contrast, significantly more antibodies were shown to bind in the glomeruli in the latter group. The time of onset of abnormal proteinuria was shown to be related to the recognition of a particular V8 protease-induced 250 kD fragment of gp330 in Western blots. This study shows that a particular fragment-specific subset of autoantibodies against gp330 is involved in the glomerular damage in Heymann nephritis.

Animals↗

[Teratogenesis and autoimmunity: significance of an experimental murine model for human pathology].

Fetal malformations constitute a major problem of public health. Unfortunately the known causes do not account for more than 50% of the cases observed. The potential role of immune mechanisms is suggested by experimental studies in the rat indicating that antibodies reactive with the yolk sac induce fetal malformations. In this study we show that these antibodies are specific for a 280 kDa protein expressed only in the kidney and the yolk sac by cell structures associated with the formation of endocytic vesicles. We further show that a similar protein is expressed in man by the yolk sac, the kidney and the trophoblasts. The possible role in pathology of antibodies against the human protein is discussed.

Animals↗

Comparative immunochemistry and ontogeny of two closely related coated pit proteins. The 280-kd target of teratogenic antibodies and the 330-kd target of nephritogenic antibodies.

We have previously shown that monoclonal antibodies specific for a 280-kd protein (gp280) concentrated within the coated pits of renal and yolk sac brush border-induced fetal malformations, whereas antibodies specific for gp330, another coated pit protein with a similar distribution, had no deleterious effect on embryonic development. In this study, we show that gp280 and gp330 are closely related proteins, as indicated by: 1) similarities in peptide maps obtained after cyanogen bromide cleavage, 2) immunological cross-reactivity related to a minor contingent of antibodies that do not have teratogenic activity, and 3) asynchronous but related expressions during ontogenesis. During the early stages of development, the expression of the two glycoproteins was limited to (gp330) or predominant in (gp280) the clathrin-coated pits and intermicrovillar areas. In the pre-implantation embryo, gp330 was expressed by trophectodermal cells, which became negative in day-6 embryos trapped in endometrial infoldings. At this stage, gp280 and gp330 were both simultaneously detectable at the apical pole of the first entoblastic cells and remained expressed by the brush border of visceral yolk sac epithelial cells until the end of pregnancy. In addition, gp330 was expressed by amniotic cells and neurectodermal structures. During nephrogenesis, in contrast, the expression of gp280 and gp330 by the intermicrovillar areas of the proximal tubule cell was the result of a complex maturation process. gp280 and gp330 were diffusely distributed in S-shaped bodies in the presumptive areas of the glomerulus, proximal tubule, and distal tubule (gp330). During development of the nephron, the pattern of expression became progressively restricted to the proximal tubule and glomerulus (gp330), and selective localization in the intermicrovillar areas was only achieved in filtrating nephrons.

Animals↗

Expression of cALLa/NEP on gliomas: a possible marker of malignancy.

First described on pre-B leukemia cells, the common acute lymphoblastic leukemia antigen (cALLa) is also expressed on glioma cells in vitro. Its identity to neutral endopeptidase (NEP) (E.C.3.24.11) was corroborated by our finding that cALLa positive glioma cells had NEP activity. To study cALLa/NEP distribution on glial tumours in vivo, we examined 76 brain tumour biopsies by immunostaining techniques on frozen tissue sections using anti-cALLa (FAH99) and anti-NEP (135 A 3) monoclonal antibodies. We found that 96% of grade 4 gliomas (25/26) expressed NEP. Whereas only 45% (4/9) of grade 3 or anaplastic astrocytomas did. In low grade gliomas, we found 2 positive tumours out of 21 tested (10%). Double immunostaining procedures revealed that NEP was co-expressed with GFAP. However no NEP could be detected on non-glial brain tumours nor on reactive astrocytes. These results suggest that cALLa/NEP expression could be linked to malignant progression of gliomas.

Adolescent↗