Polymerase chain reaction cloning with degenerate primers: homology-based identification of adhesion molecules.
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Biomedical subjects
Publications and source records attributed to D Sheppard.
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Cell-matrix interactions are assumed to be important in regulating differentiation and tumor cell growth; however, the precise roles of individual matrix receptors in producing cellular responses are still unclear. We have previously described the alpha v beta 6 integrin, an epithelial cell fibronectin receptor expressed in many carcinoma cell lines. Here we show that heterologous expression of alpha v beta 6 in a human colon carcinoma cell line (SW480) enhances the proliferative capacity of these cells, both in vitro and in vivo in nude mice. This property of alpha v beta 6 correlates with the presence of an 11-amino acid region at the COOH terminus of the beta 6 cytoplasmic domain. This 11-amino acid sequence is required for the growth stimulatory effect, but not for other functions of the beta 6 cytoplasmic domain, such as promoting cell adhesion and focal contact localization.
Powerful new approaches for the identification and sequencing of novel cDNAs have produced a backlog of proteins seeking functions. Traditional approaches for characterizing protein function (e.g., blocking monoclonal antibodies and heterologous expression) have significant limitations, especially in identifying the roles specific proteins play in vivo. An alternative approach is to engineer mutations in the protein of interest that abolish its function and that also inhibit the function of simultaneously expressed wild-type protein (dominant negative mutations). This approach has wide application to the study of a number of different kinds of proteins but tends to be most effective for proteins that need to assemble into multimers to be functional. Dominant negative mutants have already provided insights into the molecular mechanisms of action of a number of protein families, including hormone receptors, oncogenes, and growth factor receptors, and have been identified as the cause of at least a few autosomal dominant diseases. Expression of dominant negative mutants under the control of highly active lung cell-specific promoters holds great promise for the study of the roles specific proteins and protein families play in lung development, health, and disease.
The integrin alpha v beta 6 is expressed primarily in epithelial cells and mediates attachment to the extracellular matrix protein fibronectin. We recently observed that alpha v beta 6 localizes to focal contacts when cells that express the receptor are plated on fibronectin. To determine which regions of the beta 6 cytoplasmic domain are required for recruitment to focal contacts, the wild type human beta 6 cytoplasmic domain are required for recruitment to focal contacts, the wild type human beta 6 subunit and mutants containing selective deletions within the beta 6 cytoplasmic domain were stably expressed in Chinese Hamster Ovary cells. The beta 6 cytoplasmic domain is composed of a 41 amino acid region that is highly conserved among integrin beta subunits, and a unique 11 amino acid carboxy terminal extension. The 11 amino acid extension was not required for localization to focal contacts; in fact, its removal appeared to increase receptor localization. However, removal of any of the 3 conserved regions previously identified as important for the localization of beta 1 integrins to focal contacts (Reszka, et al., 1992, J. Cell Biol. 117:1321-30) eliminated recruitment of beta 6 to focal contacts. These data suggest that, as with the integrin beta 1 subunit, multiple regions within the first 41 amino acids of the beta 6 cytoplasmic domain are necessary for recruitment of alpha v beta 6 to focal contacts. However, the unique 11 amino acid carboxy terminus of beta 6 is not required for this recruitment, and may actually play a negative regulatory role.
The integrin family of adhesion receptors consists of several heterodimeric glycoproteins, each composed of one alpha and one beta subunit. A novel integrin alpha subunit partial cDNA isolated from TGF-beta stimulated guinea pig airway epithelial cells has previously been reported (Erle, D.J., D. Sheppard, J. Bruess, C. Rüegg, and R. Pytela. 1991. Am. J. Respir. Cell Mol. Biol. 5:170-177). We have now determined cDNA and amino acid sequence for the human homolog of this subunit, named alpha 9, from a human lung cDNA library, a human small intestine cDNA library, and cDNA from the cell lines U937, HL-60 and Tera-2. This sequence is predicted to encode a 1006-amino acid mature protein that shares 39% identity with the previously identified integrin subunit alpha 4. By Northern blot analysis, alpha 9 mRNA was detected in the human carcinoma cell lines Tera-2 and Caco-2. Anti-peptide antibodies against the predicted COOH-terminal sequence of alpha 9 immunoprecipitated a heterodimer (140 kD/115 kD nonreduced; 150 kD/130 kD reduced) from Tera-2 lysates. Immunodepletion of beta 1-containing integrins with Tera-2 lysates removed alpha 9 immunoreactivity, suggesting that beta 1 is the principal beta subunit partner for alpha 9 in these cells. alpha 9 was detected by immunohistochemistry in airway epithelium, in the basal layer of squamous epithelium, and in smooth muscle, skeletal muscle, and hepatocytes.
Integrins are heterodimeric glycoproteins that mediate cell-to-matrix and some cell-to-cell interactions. Recent evidence underscores the important roles of these receptors in signaling machines that transduce positional information into complex changes in cell behavior. As such, integrins have been shown to play critical roles in cell growth, differentiation, and migration. Most cells express multiple members of this family, but the integrin repertoire of any given cell appears to be highly tissue- and cell-type-specific. We have used the homology-based polymerase chain reaction to identify known and novel integrin subunits in airway epithelial cells. With this technique we have identified three novel integrin subunits that participate in the formation of at least four novel integrin heterodimers. The best characterized of these, alpha v beta 6, is a receptor for the extracellular matrix protein fibronectin, and appears to be expressed only in terminally differentiated mucosal epithelial cells. The novel alpha subunit, alpha 9, forms a heterodimer with the known beta subunit, beta 1, in some epithelial cell lines. Elucidatation of the specific roles these receptors play in airway health and disease will likely provide unique insights into both the biology of integrins and the biology of the airway epithelium.
Integrins are cell adhesion receptors that mediate cell-extracellular matrix and cell-cell interactions. Each integrin consists of two glycoprotein subunits (alpha and beta). We have previously described a novel integrin beta-subunit, beta 6, which is expressed in cultured epithelial cells. beta 6 can associate with alpha v to form the fibronectin-binding heterodimer alpha v beta 6. Here we report the tissue distribution of beta 6 integrin mRNA determined by in situ hybridization of a beta 6 cRNA probe with representative frozen tissue sections from a rhesus monkey tissue bank. We detected beta 6 mRNA exclusively in epithelial cells. However, beta 6 mRNA expression varied greatly among different epithelia. High levels of beta 6 mRNA were found only in two very specialized epithelial cell types: a portion of the kidney tubule epithelium, termed macula densa, and the endometrial epithelium of secretory phase uterus. In the endometrium, beta 6 expression was highest in the differentiated epithelium of functional layer glands, suggesting that beta 6 expression can be regulated in a differentiation-dependent manner. beta 6 expression may also depend on the stage in the estrous cycle, since we found much lower beta 6 mRNA levels in a specimen of proliferative phase endometrium. Epithelium in several other tissues, including salivary gland ducts, gall bladder, and epididymis, contained detectable levels of beta 6 mRNA, albeit much lower than in macula densa and endometrium. In other epithelia, including skin and lung, beta 6 mRNA was undetectable. Taken together, these results suggest that in normal adult primates beta 6 expression is regulated in a cell type-specific manner, restricted to a few epithelial tissues.
A 34-year-old chemical manufacturing worker had new onset of work-related asthma after several years of exposure to the fungicide, captafol. On specific bronchial challenge testing, he demonstrated a marked and persistent fall in FEV1. Cessation of exposure resulted in improved symptoms and pulmonary function. The delay in symptoms after several years of workplace exposure and the dual reaction demonstrated on specific bronchial challenge testing suggest sensitization to some component of technical-grade captafol, but an IgE response was not detected.
The integrin family is composed of a large number of heterodimers, each one mediating distinct interactions with extracellular matrix and/or cell surface ligands. The expression of integrins appears to be tightly regulated in vivo, but the mechanisms by which cells control the formation and surface expression of specific pairs of subunits have not been well characterized. Two integrin subunits, the alpha subunit alpha v, and the beta subunit beta 1, could pose special problems in regulation because of their capacity to associate with multiple partners. In the present study, we have examined the effects of the cytokine transforming growth factor beta 1 (TGF-beta 1) on the expression of alpha v- and beta 1-containing integrins in primary cultures of guinea pig airway epithelial cells, e.g. cells that we have previously found to express multiple potential partners for both alpha v and beta 1. TGF-beta 1 increased the surface expression of both alpha v- and beta 1-containing heterodimers after periods of stimulation from 24 to 72 h. These increases in surface expression were associated with significant increases in the concentrations of mRNA encoding each of the partners of alpha v and beta 1, but with only minimal increases in mRNA encoding alpha v and beta 1 themselves. Airway epithelial cells metabolically labeled with [35S]methionine during stimulation with TGF-beta 1 demonstrated only a minimal increase in the synthesis of new alpha v protein at a time when synthesis of alpha v's beta subunit partners and surface expression of alpha v-containing heterodimers were dramatically increased. These data suggest that, at least in some cells, promiscuous integrin subunits (both alpha and beta) may normally be synthesized in excess. Thus, the surface expression of specific integrin heterodimers can be regulated primarily through regulation of the synthesis of the specific partners of these subunits.
Integrins are a complex family of divalent cation-dependent cell adhesion receptors composed of one alpha and one beta subunit noncovalently bound to one another. A subset of integrins contains the alpha v subunit in association with one of several beta subunits (e.g. beta 3, beta 5, beta 1). We have recently identified a novel integrin beta subunit, beta 6, that is present in a number of epithelial cell lines. Using a polyclonal antibody raised against the carboxyl-terminal peptide of beta 6, we have now identified the integrin heterodimer, alpha v beta 6, on the surface of two human carcinoma cell lines. Using affinity chromatography of lysates from the pancreatic carcinoma cell line, FG-2, we demonstrate that alpha v beta 6 binds to fibronectin, but not to vitronectin or collagen I. In contrast, the alpha v beta 5 integrin, which is also expressed on FG-2 cells, binds exclusively to vitronectin. Immobilized collagen I does not interact with alpha v integrins, but binds beta 1-containing integrins. Both alpha v beta 6 and alpha v beta 5 are eluted from their respective immobilized ligands by a hexa-peptide containing the sequence Arg-Gly-Asp (RGD). RGD is highly effective in the presence of Ca2+, somewhat less effective in Mg2+, and virtually inactive in Mn2+. These results suggest that alpha v beta 6 functions as an RGD-dependent fibronectin receptor in FG-2 carcinoma cells. In agreement with this notion, cell adhesion assays show that FG-2 cell attachment to fibronectin is only partially inhibited by anti-beta 1 integrin antibodies, implying that other fibronectin receptors may be involved. Taken together with recent reports on the vitronectin receptor function of alpha v beta 5, our results suggest that the previously described carcinoma cell integrin, alpha v beta x (Cheresh, D. A., Smith, J. W., Cooper, H. M., and Quaranta, V. (1989) Cell 57, 59-69), is a mixture of at least two different receptors: alpha v beta 5, mediating adhesion to vitronectin, and alpha v beta 6, mediating adhesion to fibronectin.
Although acute asbestos-induced pleurisy is characterized by an influx of neutrophils, the identity of the factors that attract these cells to the pleural space and the source of the factors are unknown. We found that instillation of crocidolite asbestos into the pleural space of rabbits led to the appearance in pleural liquid of chemotactic activity for neutrophils, and that this chemotactic activity was inhibited significantly by a neutralizing antibody to human interleukin 8 (IL-8). Cultured rabbit pleural mesothelial cells incubated with crocidolite asbestos also released chemotactic activity for neutrophils, which was inhibited significantly by the anti-IL-8 antibody. To determine whether rabbit pleural mesothelial cells synthesize IL-8, we generated a probe for rabbit IL-8 mRNA by amplifying cDNA prepared from stimulated pleural mesothelial cells using the polymerase chain reaction (PCR) and primers based on homologous sequences in human and sheep IL-8 cDNAs. Homology-based PCR yielded a single cDNA fragment with a nucleotide sequence 88% identical to that of a corresponding region of human IL-8 cDNA. With the radiolabeled PCR product as a probe, we demonstrated rapid induction of IL-8 mRNA expression in pleural mesothelial cells exposed to asbestos. As expected, tumor necrosis factor-alpha also led to the appearance of IL-8 in the rabbit pleural space and stimulated cultured pleural mesothelial cells to synthesize and release IL-8. We conclude that asbestos directly stimulates pleural mesothelial cells to synthesize IL-8 and that mesothelial cell-derived IL-8 may play an important role in mediating asbestos-induced pleural inflammation.
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Fibronectin is a multifunctional protein that is synthesized in several different forms that result from alternative splicing of mRNA. Although expression of splicing variants appears to be both developmentally regulated and tissue-specific, the functional significance of these isoforms is largely unknown. We found that cultured airway epithelial cells vectorially secrete two distinct species of fibronectin, one which contains the alternatively spliced EIIIA region (EIIIA+) and one in which the EIIIA segment is spliced out (EIIIA-). Fibronectin containing the EIIIA region is preferentially secreted apically. Although both apical and basal stimulation with transforming growth factor beta 1 increased fibronectin synthesis, the secretory response differed depending on which surface was being stimulated. Apical secretion of fibronectin and expression of EIIIA+ fibronectin mRNA increased only after apical stimulation. These data demonstrate a novel mechanism for the polarized regulation of targeted secretion and alternative splicing of fibronectin and suggest that the EIIIA segment may act as a targeting signal for the vectorial secretion of fibronectin.
The integrins are a large family of heterodimeric cell-surface glycoproteins that play key roles in the adherence of cells to other cells and to extracellular matrix proteins. We have previously reported the identification of a novel integrin beta subunit partial cDNA from leukocytes. We have now determined the complete sequence of this subunit, designated as beta 7, from overlapping clones obtained from a PEER T leukemia cell library and a peripheral T cell library. The beta 7 cDNA contains a single large open reading frame predicted to encode a 798-amino acid protein precursor (signal peptide plus mature protein). The beta 7 protein, like the other beta subunit proteins, is predicted to contain a large extracellular portion, a transmembrane domain, and a cytoplasmic tail. The deduced beta 7 amino acid sequence is 32-46% identical to the six previously sequenced human integrin beta subunits. beta 7 is most similar to the leukocyte integrin common beta subunit (beta 2, CD18). Analysis of variant beta 7 cDNA clones and reverse transcription-polymerase chain reaction products suggest that alternatively spliced beta 7 mRNAs can be generated by the removal of exons that encode most of the cysteine-rich region of the extracellular portion of beta 7. By Northern blot analysis, beta 7 mRNA was detected in T and B cell lines and in macrophage-like cell lines, but not in any of the nonleukocyte cell lines tested. Peripheral T cells and some lymphoma lines express little beta 7 mRNA before stimulation; but after stimulation with phorbol ester, beta 7 mRNA levels increased markedly. Integrin beta 7 is expected to play a role in adhesive interactions of leukocytes.
Protein extravasation and airway conductance (SGaw) were examined in awake guinea pigs exposed to inhaled endotoxin or saline for three hours. A significant increase in protein extravasation (as estimated by the leakage of protein bound Evans blue dye) was seen in the conducting airways of endotoxin exposed animals compared with saline exposed animals. Mean dye extravasation was significantly increased by one to threefold in the mainstem and hilar bronchi of endotoxin exposed animals. These changes in extravasation were accompanied by decrements in pulmonary function and by an influx of polymorphonuclear leucocytes into the airway wall. The SGaw decreased significantly by 60-90 minutes into exposure to endotoxin and had decreased by 22% and 34% at the end of exposure in the low and high dose endotoxin groups, respectively. Similar findings were obtained in animals exposed to cotton dust. Contrary to studies suggesting that platelet activating factor (PAF) is involved in the systemic and peripheral lung effects of endotoxin, pretreatment with the PAF antagonist WEB2086 did not prevent the conducting airway injury produced by inhaled endotoxin.
In Southern California coastal regions, morning fog is often acidified by the presence of nitric acid (HNO3). Peak exposure to ozone (O3) usually occurs in the afternoon and evening, after the fog has dissipated. To determine whether fog containing HNO3 might enhance pulmonary responses to O3, we studied a group of healthy, athletic subjects selected for lung function sensitivity to O3. On 3 separate days, the subjects exercised for 2 h in atmospheres containing HNO3 fog (0.5 mg/ml), H2O fog, or clean, filtered air. After a 1-h break, they exercised for an additional 3 h in an atmosphere containing 0.20 ppm O3. Surprisingly, the mean O3-induced decrements in FEV1 and FVC were smaller after exercise in each fog-containing atmosphere than they were after exercise in clean, filtered air. The mean (+/- SEM) O3-induced decrements in FEV1 were 26.4 +/- 5.3% after air, 17.1 +/- 3.7% after H2O fog, and 18.0 +/- 4.3% after HNO3 fog, and in FVC they were 19.9 +/- 4.7% after air, 13.6 +/- 2.8% after H2O fog, and 13.6 +/- 4.2% after HNO3 fog.(ABSTRACT TRUNCATED AT 250 WORDS)
Sulfuric acid (H2SO4) is the most common acid air pollutant in the United States and is thought to have adverse respiratory effects. Sulfuric acid exists in polluted air as a dissolved solute in both small (haze) and large (fog) particles. Previous work in our laboratory has failed to demonstrate bronchoconstriction after near ambient, large-particle H2SO4 exposure in subjects with asthma. However, other investigators have found slight but significant changes in lung function following inhalation of small-particle or small-particle, low-relative-humidity (RH) H2SO4 aerosols, leading us to hypothesize that particle size and/or RH may be important variables in acid aerosol exposure. We initially studied the effects of resting inhalation of large-particle (volume median diameter, VMD, approximately equal to 6 microns) and small-particle (VMD approximately equal to 0.4 microns) aerosols with an H2SO4 concentration of 3 mg/m3 through a mouthpiece and found no effect on specific airway resistance (SRaw) or symptom scores. In a second mouthpiece study designed to compare high-RH (100%), large-particle (VMD approximately equal to 6 microns) and low-RH (less than 10%), small-particle (VMD approximately equal to 0.3 microns) aerosols with an H2SO4 concentration of 3 mg/m3, we again found no effect of either aerosol. We then examined the effects of small-particle aerosols inhaled in dry air during moderate exercise. Although breathing low-RH air during exercise provoked increases in SRaw in almost all subjects, this could not be attributed to H2SO4 since low-RH saline aerosol produced a similar result.(ABSTRACT TRUNCATED AT 250 WORDS)
Cells lining the respiratory tract form an interface between the organism and the external environment and are repeatedly exposed to physical, chemical, and metabolic stresses. We examined the response of cultured guinea pig tracheal epithelial cells and alveolar macrophages to various forms of stress, including clinically and environmentally relevant metabolic stresses such as ozone and acid exposure. Classic stress treatments such as heat shock and sodium arsenite treatment induced the synthesis of 28, 32, 72, 73, 90, and 110 kD stress proteins similar to those observed in other cell types. In contrast, no significant changes in the pattern of protein synthesis were detected after exposure to ambient concentrations of ozone, although ozone exposure caused significant cytotoxicity to both cell types. Another potent oxidant, hydrogen peroxide, similarly did not induce appreciable stress protein synthesis. However, surface acidification of tracheal epithelial cells and alveolar macrophages caused the induction of 72 and 78 kD stress proteins. While stress proteins may play a role in the response of respiratory cells to certain injuries such as hyperthermia and surface acidification, they may not be important in the defense against ozone or other forms of oxidative injury.