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Biomedical subjects

L Orci

Publications and source records attributed to L Orci.

At least 199 records · Page 11Linked to original sources

LLC-PK1 cells: cloning of phenotypically stable subpopulations.

The LLC-PK1 pig kidney-derived cell line is morphologically and functionally heterogeneous. We have clonally derived three sublines that differ in their response to calcitonin and in their ability to form domes. The three clones were analyzed for their basal and hormonally induced plasminogen activator production. In contrast to the D + Sc clone, in which calcitonin induced a greater than 100-fold increase in plasminogen activator synthesis, the D + Rc clone did not respond to the hormone; this was related to a deficiency of the cells in calcitonin binding. Transepithelial electrical resistance measurements revealed a direct correlation with the capacity of the cells to form domes; in one of the isolated clones (D-), the lack of dome formation coincided with a low electrical resistance; the D + Sc clone, in which all single cell-derived colonies formed domes, showed a higher electrical resistance than that developed by the original cell line. Thus the LLC-PK1 clones provide a useful in vitro model for the study of epithelial properties.

Animals↗

Interactions of lectins with specific cell types in toad urinary bladder. Surface distribution revealed by colloidal gold probes and label fracture.

Colloidal gold probes were used in conjunction with pre-embedding labeling and label-fracture to show the plasma membrane distribution of Helix pomatia lectin (HPL) and wheat germ lectin (WGL) binding sites on different epithelial cell types of toad urinary bladder. Mitochondria-rich cells were virtually unlabeled with HPL, but showed a strong affinity for WGL. Granular cells were weakly labeled with WGL but had a variable affinity for HPL. Strongly labeled granular cells were arranged in either chains or clusters that were surrounded by poorly-stained granular cells. By label-fracture, the distribution of gold-labeled lectins was related to other membrane features seen in freeze-fracture. Neither HPL nor WGL binding sites appeared to be specifically related to the large intramembrane particles that characterize granular cells, or to the rod-shaped intramembrane particles that are a feature of membranes of mitochondria-rich cells. The preferential lectin binding affinity of these functionally distinct cell types provides an important starting point for their isolation and the characterization of their plasma membranes. Furthermore, the label-fracture approach can now be used to examine the plasma membrane modifications that occur in these cells under different physiologic conditions affecting epithelial transport processes.

Animals↗

Loss of polarization of plasma membrane domains in transformed pancreatic endocrine cell lines.

Using enveloped RNA viruses that bud selectively from either the apical or basolateral surface in polarized epithelial cells, we have recently provided evidence for polarization of plasma membrane domains in cultured pancreatic islet cells. In this study, we have followed the same experimental strategy to establish whether these polarized properties are maintained in transformed pancreatic endocrine cells. We find that influenza virus and vesicular stomatitis virus emerge from both the attached and free surfaces of cultured insulinoma cells (RIN cells) and SV40-transformed beta-cells (HIT cells). This demonstrates loss of polarization in transformed pancreatic endocrine cells.

Animals↗

Receptor-mediated endocytosis of polypeptide hormones is a regulated process: inhibition of [125I]iodoinsulin internalization in hypoinsulinemic diabetes of rat and man.

Much data suggest that receptor-mediated endocytosis is regulated in states of hormone excess. Thus, in hyperinsulinemic states there is an accelerated loss of cell surface insulin receptors. In the present experiments we addressed this question in hypoinsulinemic states, in which insulin binding to cell surface receptors is generally increased. In hepatocytes obtained from hypoinsulinemic streptozotocin-induced diabetic rats, [125I]iodoglucagon internalization was increased, while at the same time [125I]iodoinsulin internalization was decreased. The defect in [125I]iodoinsulin internalization was corrected by insulin treatment of the animal. In peripheral blood monocytes from patients with type I insulinopenic diabetes, internalization of [125I]iodoinsulin was impaired; this defect was not present in insulin-treated patients. These data in the hypoinsulinemic rat and human diabetes suggest that receptor-mediated endocytosis is regulated in states of insulin deficiency as well as insulin excess. Delayed or reduced internalization of the insulin-receptor complex could amplify the muted signal caused by deficient hormone secretion.

Adolescent↗

Direct cell-to-cell transmission of vesicular stomatitis virus.

Vesicular stomatitis virus (VSV) infection of kidney-derived, LLC-PK1 epithelial cells resulted in the budding of new viral particles into the basolateral space of the cultures. In lateral regions where cells were in close apposition, the majority of assembling viral particles in the process of budding from the producing cell had their apex already engaged in clathrin-coated pits of the neighbouring cell surface. These observations suggest that the viral envelope-plasma membrane interaction triggers the focal formation of clathrin-coated pits; they also show how VSV infection could spread throughout a tissue with only minimal exposure to a host's extracellular environment.

Animals↗

Tris(hydroxymethyl)aminomethane inhibits the synthesis and processing of proinsulin in isolated rat pancreatic islets without affecting release of insulin stores.

Isolated rat islets of Langerhans were pulse-labeled (5 min, [3H]leucine) and then exposed to 10 or 50 mM tris(hydroxymethyl)aminomethane (Tris) at pH 7.4 during an 85-min chase period. There was a dose-related inhibition of the conversion of labeled proinsulin to insulin by Tris. At 50 mM, Tris also inhibited the release of newly synthesized (labeled) proinsulin and insulin. These inhibitory effects of Tris were almost absent if the islets were exposed to 50 mM Tris during only the last 60 min of the 85-min chase period. Both proinsulin and total islet protein synthesis (as indexed by incorporation of [3H]leucine) were inhibited acutely by 50 mM Tris (5-min exposure); after 85 min of exposure to 50 mM Tris, the inhibition of proinsulin biosynthesis was more marked than that of total islet protein. In contrast to its effects on newly synthesized products, 50 mM Tris failed to inhibit the release of immunoreactive insulin during an 85-min incubation. However, when islets were exposed to 50 mM Tris for a longer period, a partial inhibition of immunoreactive insulin release was observed as from 120 min. Insulin released from islets consists of a mixture of older stored material and of newly synthesized products, the latter being released preferentially. These results are consistent with a selective effect of 50 mM Tris on the production of newly synthesized insulin. During the first 120 min of exposure to Tris, islet reserves of newly synthesized products will be depleted thereby leading to a new, reduced, rate of release of immunoreactive material consisting only of older insulin stores.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regional heterogeneity of glycoconjugate distribution in the glomerulus revealed by lectin-gold cytochemistry and SDS-PAGE.

The authors have used SDS-PAGE and lectin overlay analysis in parallel with lectin-gold cytochemistry to identify Helix pomatia lectin (HPL) binding glycoconjugates in rat kidney glomeruli. Previous work revealed HPL binding sites only beneath podocyte foot process bases, where they contact the glomerular basement membrane. It is shown here that after neuraminidase digestion of thin sections of glomeruli before incubation with HPL-gold complexes, the number of HPL binding sites is markedly increased. These new sites are mainly associated with the podocyte free surface (adjacent to the urinary space) and with capillary endothelial cells. By lectin overlays, this neuraminidase-dependent HPL binding was shown to be due to reaction of the lectin with desialylated podocalyxin. In contrast, HPL binding sites detected prior to neuraminidase digestion are associated with a novel glycoconjugate having a lower electrophoretic mobility than podocalyxin. Although any role for this glycoconjugate is at present speculative, it is strategically positioned at the site of interaction between foot process bases and the glomerular basement membrane. Its presence correlates with normal podocyte architecture, as shown by our previous studies on developmental and aminonucleoside nephrosis-associated changes in HPL binding to podocytes.

Animals↗

Insulin receptors and bioresponses in a human liver cell line (Hep G-2).

A newly developed human hepatoma cell line, designated Hep G-2, expresses high-affinity insulin receptors meeting all the expected criteria for classic insulin receptors. 125I-insulin binding is time-dependent and temperature-dependent and unlabeled insulin competes for the labeled hormone with a half-maximal displacement of 1-3 ng/ml. This indicates a Kd of about 10(-10) M. Since Scatchard analysis of the binding data results in a curvilinear plot and unlabeled insulin accelerates the dissociation of bound hormone, these receptors exhibit the negative cooperative interactions characteristic of insulin receptors in many other cell and tissue types. Proinsulin and des(Ala, Asp)-insulin compete for 125I-insulin binding with 4% and 2%, respectively, of the potency of insulin. Anti-(insulin receptor) antibody competes fully for insulin binding. The two insulin-like growth factors, multiplication-stimulating activity and IGF-I are 2% as potent as insulin against the Hep G-2 insulin receptor. Furthermore, Hep G-2 cells respond to insulin in several bioassays. Glucose uptake, glycogen synthase, uridine incorporation into RNA and acetate incorporation into lipid are all stimulated to varying degrees by physiological concentrations of insulin. In addition, these cells 'down-regulate' their insulin receptor, internalize 125I-insulin and degrade insulin in a manner similar to freshly isolated rodent hepatocytes. This is the first available human liver cell line in permanent culture in which both insulin receptors and biological responses have been carefully examined.

Cell Line↗

Human endothelial cell cultures: phenotypic modulation by leukocyte interleukins.

We report here that soluble factors from activated mononuclear leukocytes have a dramatic effect on cultured endothelial cells. While human umbilical vein endothelial cells grown under standard conditions show a polygonal, epithelial-like morphology, cells exposed to culture media conditioned by lectin-activated human mononuclear leukocytes become extremely elongated and/or send out numerous cytoplasmic processes, assuming a dendritic configuration. This effect cannot be mimicked by exogenous cyclic AMP, is reversible upon interruption of the treatment, and appears specific for endothelial cells, since it has not been observed so far with other cell types. The shape changes are accompanied by a reorganization of the endothelial cell cytoskeleton: actin microfilament bundles tend to be disposed in parallel arrays, while intermediate filaments and microtubules penetrate up to the extremity of the cytoplasmic processes. Colchicine prevents endothelial cell elongation but only slightly impairs the formation of lateral cell processes ("dendritic configuration"). Purified interleukins were tested for their ability to induce these changes of cell shape. Escherichia coli-recombinant human interleukin 2 had no effect, and gamma-interferon only a slight effect on endothelial cell morphology. Interleukin 1 induced moderate cell elongation, while combined treatment with both interleukin 1 and gamma-interferon resulted in shape changes indistinguishable from those elicited by supernatants of activated mononuclear leukocytes. The possible relevance of the observed endothelial cell changes to the reported angiogenic activity of mononuclear cell products is discussed.

Cells, Cultured↗

LLC-PK1 cysts: a model for the study of epithelial polarity.

In the present work, we have taken advantage of the properties of two recently isolated clonal subpopulations of the pig kidney-derived LLC-PK1 cell line to study aspects of the establishment of epithelial polarity. When grown in suspension, LLC-PK1/D + Sc cells reaggregated within a few hours and, during the following days of culture, formed free-floating, hollow spheres or cysts, lined by a monolayer of polarized cells. In contrast, LLC-PK1/D- cells were unable to develop such polarized structures even upon prolonged culture in suspension. The polarity of the LLC-PK1/D + Sc cells lining the cysts was inverted compared to that in intact renal tubules, the microvilli-rich "apical" pole being oriented toward the external medium. However, upon embedding these preformed cysts in collagen gels, a reversal of polarity was observed within hours, the microvilli-rich pole now facing the cyst cavity. Thus, in the same clonally derived cell population, cell-to-cell contact and interaction with the extracellular matrix differentially affect the orientation of cellular polarity. The LLC-PK1/D + Sc cysts provide a suitable in vitro model system for further study of the sequential events by which extracellular matrix components induce an appropriately oriented polarization. In addition, the comparison between LLC-PK1/D + Sc and D- cells, which differ in their ability to polarize in response to cell-to-cell contact, should help define some of the cellular determinants involved in epithelial organization.

Animals↗

The alpha cell response to glucose change during perfusion of anti-insulin serum in pancreas isolated from normal rats.

To determine the effect of neutralization of endogenous insulin upon the glucagon response to a rise and fall of glucose concentration, pancreata isolated from normal rats were perfused with either a potent anti-pork insulin guinea pig serum or a nonimmune guinea pig serum for 30 min. During this period glucose concentration was changed from 100 mg/dl to either 130, 180 or 80 mg/dl for 10 min. Antiserum perfusion at 100 mg/dl caused an approximately two-fold increase in glucagon which was not suppressed by an increase in glucose concentration to either 130 or 180 mg/dl, although glucagon secretion was significantly suppressed in the control experiments in which nonimmune serum was perfused. However, the 0.38 +/- 0.21 ng/min rise in glucagon secretion in response to a reduction in glucose concentration to 80 mg/dl in the control experiments was not abolished by antiserum perfusion but, instead, was enhanced (2.66 +/- 0.60 ng/min). These findings suggest that insulin may be required for glucose-mediated suppression of glucagon in the isolated pancreas of normal rats but not for stimulation of glucagon secretion by mild glucopenia. Alternatively, neutralization of insulin-mediated release-inhibition of glucagon secretion may simply have altered alpha cell responsiveness in a direction that desensitized it nonspecifically to suppression and sensitized it to stimulation.

Animals↗

Ultrastructural detection of granulated cells in the autonomic ganglia of the rat pancreas.

Electron microscopic examination of the intrinsic autonomic ganglia of the rat pancreas revealed the presence of small cells, when compared to the principal ganglionic neurons, within a particular type of ganglia. The small cells were often located in clusters around fenestrated capillaries, but their most striking characteristic was the presence of catecholamine-like granules distributed throughout the cytoplasm. The possible implication of this new source of catecholamines, acting either as interneurons or as neuroendocrine cells, is discussed in the light of a local regulatory mechanism for islet secretion.

Animals↗

Beckwith-Wiedemann syndrome: a quantitative, immunohistochemical study of pancreatic islet cell populations.

The endocrine cell content of the pancreas of two cases of Beckwith-Wiedemann syndrome with islet cell adenomatosis were studied. Insulin, glucagon, somatostatin and pancreatic polypeptide cells were evaluated qualitatively and quantitatively with the indirect immunofluorescence method and morphometry was used to establish the volume density of the four endocrine cell populations. This evaluation showed a marked increase of insulin and glucagon cells and a lesser augmentation of pancreatic polypeptide cells and somatostatin cells. However, the percent of somatostatin cells was decreased in comparison with controls. Qualitatively, the two pancreas were characterized by the lack of segregation of glucagon and pancreatic polypeptide cells to distinct parts of the gland, with each cell type being abundant in the pancreatic region in which they are normally very sparse. The marked increase of endocrine cells often took the form of giant islet-like structures formed by smaller subunits; however, despite this increase, the distribution of insulin cells respected the normal pattern, i.e. clusters of B cells surrounded by non-B cells. These findings indicate that besides the proliferation of pancreatic endocrine cells maintaining a normal topographical distribution of B versus non-B cells, the pancreas of patients with the Beckwith-Wiedemann syndrome may have undergone abnormal development with a consequent lack of segregation of glucagon and pancreatic polypeptide cells to different parts of the gland.

Beckwith-Wiedemann Syndrome↗

Polarized plasma membrane domains in cultured endothelial cells.

To determine whether distinct plasma membrane domains exist in endothelial cells, we infected monolayer cultures of macro- and microvascular endothelial cells with enveloped RNA viruses known to bud selectively from either the apical or basal surface in polarized epithelial cells. We found that vesicular stomatitis (VSV) and Sendai virus emerge asymmetrically from cultured endothelial cells. This provides direct evidence for the existence of polarized plasma membrane domains in vascular endothelial cells.

Animals↗

Tumor-promoting phorbol esters induce angiogenesis in vitro.

A crucial event during angiogenesis is the invasion of the perivascular extracellular matrix by sprouting endothelial cells. To investigate the possible role of proteases in endothelial cell invasiveness in vitro, bovine microvascular endothelial cells (BMEC) grown on collagen gels were treated with phorbol myristate acetate (PMA), a tumor promoter that markedly increases their production of collagenase and plasminogen activator. Whereas control BMEC were confined to the surface of the gels, PMA-treated BMEC invaded the underlying collagen matrix, where they formed an extensive network of capillary-like tubular structures. This phenomenon, which mimics some of the events occurring during angiogenesis in vivo, required protein synthesis and intercellular contact, was accompanied by collagen degradation, and was prevented by the metalloprotease inhibitor 1,10-phenanthroline.

Animals↗

Direct identification of prohormone conversion site in insulin-secreting cells.

We have localized proinsulin in B cells of human and rat pancreatic islets, using a proinsulin-specific monoclonal antibody revealed by immunocytochemistry. Proinsulin is abundant in Golgi stacks and clathrin-coated secretory granules. It rapidly disappears from these compartments when protein synthesis is inhibited. Depletion of ATP stores prevents movement of proinsulin from the Golgi stacks to the secretory granules; under these conditions, the prohormone in preformed coated granules is converted to insulin, whereas that bound to the Golgi complex is not. Non-coated granules show a low level of proinsulin reactivity under all incubation protocols. These findings provide direct evidence that coated secretory granules are the major, if not the only, cellular site of proinsulin to insulin conversion. They also suggest that the Golgi stack is not involved in conversion, and that intercisternal transport and coated granule formation are hitherto unrecognized energy-requiring steps that precede conversion.

Animals↗