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Biomedical subjects

S C Bailey

Publications and source records attributed to S C Bailey.

13 recordsLinked to original sources

Erythropoietin induces cytosolic protein phosphorylation and dephosphorylation in erythroid cells.

Erythropoietin, the prime regulator of red blood cell growth and differentiation, causes rapid changes in the phosphorylation of several integral plasma membrane proteins (Choi, H-S., Wojchowski, D. M., and Sytkowski, A. J. (1987) J. Biol. Chem. 262, 2933-2936; Choi, H-S., Bailey, S. C., Donahue, K. A., Vanasse, G. J., and Sytkowski, A. J. (1990) J. Biol. Chem. 265, 4143-4148). In the present study we have demonstrated that erythropoietin's signal is transduced rapidly to the cytosol resulting in specific phosphorylation/dephosphorylation events. Erythropoietin treatment of Rauscher murine erythroleukemia cells previously labeled with [32P]orthophosphate results in a rapid increase in phosphorylation of two cytosolic proteins, designated pp96 and pp80, and a decrease in phosphorylation of another protein, designated pp90. The relative molecular mass and pI of pp80 are virtually identical to those reported for the protein kinase C substrate p80, or "MARCKS protein." Treatment of the cells with 12-O-tetradecanoylphorbol-13-acetate also increases pp80 but not pp96 phosphorylation, suggesting that erythropoietin triggers a protein kinase C-dependent pathway to pp80 and a protein kinase C-independent pathway to pp96. The effect of erythropoietin on pp96 phosphorylation was also shown in nontransformed erythroid cells isolated from the spleens of phenylhydrazine-treated mice. In contrast, almost no 32P labeling of pp80 or pp90 was detected, and pp80 and pp90 protein were nearly absent from these normal cells. These differences in expression and phosphorylation of erythropoietin-sensitive phosphoproteins may be related to the growth factor independence or dependence of the erythroid cells.

Animals

Erythropoietin increases c-myc mRNA by a protein kinase C-dependent pathway.

The peptide hormone erythropoietin is a major regulator of red blood cell production. While red blood cell development has been studied intensively, little is known about the intracellular signaling events that follow the binding of erythropoietin to its receptor on the target cell. We report here that erythropoietin-induced activation of the immediate early gene c-myc requires protein kinase C and that the binding of erythropoietin causes rapid phosphorylation of the major protein kinase C substrate, p80. Our results also argue for modulation of activity of a second signal transduction element in addition to protein kinase C.

Autoradiography

Atrioventricular septal defect repair in infants.

From September 1984 through August 1989, 33 consecutive infants (mean age, 9 months; 13 male) received a single-stage intracardiac repair of complete atrioventricular septal defect. Preoperative evaluation of valvar morphology and function involved echocardiograms in 21% (7/33) and echocardiograms with cineangiograms in 79% (26/33). All infants operated on were included in the analysis. Patients with other complicating abnormalities were not excluded. All operations used a two-patch technique for closure of the atrioventricular septal defect in association with mitral valve repair. The newly formed septal leaflet of the mitral valve was repaired using unpledgeted interrupted sutures. Preoperative and postoperative echocardiograms were used to evaluate mitral valve regurgitation and left ventricular dysfunction as mild, moderate, or severe. The 30-day mortality was 6% (2/33). Follow-up ranged from 1 month to 60 months. Postoperative mitral valve insufficiency was mild in 84% versus 6% preoperatively, moderate in 3% versus 52% preoperatively, and severe in 13% versus 42% preoperatively. Mitral valve dysfunction necessitating reoperation occurred in 6% (2/31). Mitral valve function postoperatively was improved compared with preoperatively (p less than 0.001). The low 30-day operative mortality and the excellent late postoperative valvar function demonstrate the value of single-stage two-patch repair of atrioventricular septal defect early in life.

Congenital Abnormalities

Purification and characterization of the erythropoietin-sensitive membrane phosphoprotein, pp43.

We have shown previously that purified human erythropoietin rapidly alters the phosphorylation of an integral erythroid membrane protein, pp43 (Choi, H.-S., Wojchowski, D. M., and Sytkowski, A. J. (1987) J. Biol. Chem. 262, 2933-2936). We have now purified pp43 to apparent homogeneity and have prepared antibodies to it. After sodium dodecyl sulfate-polyacrylamide gel electrophoresis and electrophoretic transfer of membrane proteins to nitrocellulose, the antibodies identified pp43 and a series of higher molecular weight antigenically related proteins, up to 50 kDa, in erythropoietin-responsive Rauscher murine erythroleukemia cells and in normal murine erythroid cells. Examination of purified subcellular fractions confirmed the localization of pp43 and the related proteins to the plasma membrane. Phosphorylation with [gamma-32P]ATP demonstrated that, in contrast to pp43, these higher molecular weight proteins were not phosphorylated. Marked differences in both the abundance of pp43 and related proteins and the degree of erythropoietin-sensitive pp43 phosphorylation were found between the plasma membranes of Rauscher cells and those of "non-responsive" Friend murine erythroleukemia cells. In addition only trace amounts of a 50-kDa antigenically related protein and no phosphorylated pp43 were detected in the plasma membranes of two erythropoietin-insensitive human erythroid cells lines, K562 and HEL. The results suggest that the abundance and degree of phosphorylation of pp43 and the antigenically related proteins is strongly correlated with the erythropoietin responsiveness of the particular erythroid cell types.

Animals

Pleural chondrosarcoma.

Thoracic extraskeletal chondrosarcomas are uncommon tumors. A case of primary chondrosarcoma of the pleura is presented. Complete surgical resection without adjuvant therapy, even in the presence of pleural seeding, appears to offer a favorable long-term prognosis.

Aged

Neutrophil maturation and hypersegmentation promoted in normal bone marrow by a carcinoma-elaborated protein factor.

In rats with subcutaneously transplanted mammary carcinoma 5A (MC) and 2 to 10-fold elevations in the blood content of mature neutrophils, 30-50% of the neutrophils showed pronounced hypersegmentation. This phenomenon could be reproduced in liquid culture of bone marrow cells from normal (tumor-free) animals by 48 hr incubation with the MC host's serum, or with MC-conditioned medium whose activity was attributable to an over 50,000 MW protein. The effects in vitro, occurring without change in total cell number and accompanied by increases in gamma-glutamyltranspeptidase (GGT) and alkaline phosphatase (AP) activity, included decreases in the percents of progenitors (myeloblasts, promyelocytes, myelocytes, metamyelocytes and bands) and an increase in mature neutrophils 50% of which exhibited obvious hypersegmentation. Much less if any neutrophil hypersegmentation, and no statistically significant decrease in immature cells, occurred in response to the several colony stimulating factors (CSFs) tested, although (in addition to inducing GGT and AP) some CSFs did cause an increase in mature neutrophils. These investigations demonstrate the efficacy of a MC-elaborated blood-borne protein to promote myeloid cell maturation, and describe a system for the first time in which neutrophil hypersegmentation can be studied in vitro.

Animals

Enhancement of gamma-glutamyl transpeptidase expression in bone marrow cells by colony stimulating factors.

Studies on blood serum from mammary carcinoma (MC) hosts, which promoted gamma-glutamyl transpeptidase (GGT) expression by normal rat bone marrow cells in liquid culture, were extended to various granulocyte-macrophage colony stimulating factors (CSFs). GGT concentration per cell was found to increase (without change in total cell number) by incubation for 48 h with purified CSF-2 gamma and CSF-1 (but not interleukin-3), with human giant cell elaborated GM-CSF and L-cell conditioned medium, as well as with the 3 MC preparations (host serum, MC extract and MC conditioned medium). GGT-inducing ability (per milligram protein) ranked the 7 preparations in the same order as did their proliferative effect (number of colonies per milligram protein) in the standard mouse bone marrow agar culture system. The quantitative correlation between these two kinds of activities (linear for their logarithmic values) was highly significant, r = 0.976, p less than 0.001. The alkaline phosphatase concentration of bone marrow cells in liquid culture was also increased in the presence of the same 7 preparations, and this again was proportional (r = 0.985, p less than 0.001) to their colony stimulating potential.

Animals

Characterization of a mammary carcinoma elaborated factor stimulating gamma-glutamyltranspeptidase expression in bone marrow cells.

The elevation of bone marrow gamma-glutamyltranspeptidase (GGT) and alkaline phosphatase (AP) content in rats carrying mammary carcinoma 5A (MC), reproduced in a short-term (48-h) liquid culture of normal bone marrow cells, was found to be attributable to a blood-borne protein factor with an apparent molecular weight of 60,000. Partial purification, based on the extent of stimulation of GGT expression in this culture, increased the specific activity of the host serum from 1.5 to 40 units and that of MC extracts from 6 to 560 units. Production of the factor by MC in vitro, however, resulted in specific activities of 3000 units in the conditioned medium, and a further 60-fold purification was achieved by DEAE-cellulose, Sephadex G-100, and hydroxylapatite chromatography. The chemical characteristics of the MC-elaborated protein indicate nonidentity to previously isolated colony formation stimulating factors which also induced GGT (and AP) expression by rat bone marrow cells. Most of the AP inducing ability of the MC-serum and MC-conditioned medium copurified with and was still present in preparations with the highest specific activity vis à vis GGT. In mouse (instead of rat) bone marrow cells, however, no AP response accompanied the stimulation of GGT expression by MC (or colony formation stimulating factor) preparations.

Alkaline Phosphatase

Repetitive DNA in Escherichia coli: multiple sequences complementary to small stable RNAs.

Radioactively labeled 4.5S, 6S, and 10S RNAs from Escherichia coli were hybridized to EcoRI fragments from the E. coli genome. Each of these molecules bound to more than one DNA fragment. Cot curve analysis of the kinetics of the annealing of these RNAs to denatured E. coli DNA suggests that the DNA corresponding to each of these molecules is reiterated in the genome. These experiments also suggest that these reiterated sequences are non adjacent.

DNA, Bacterial

Small stable RNAs from Escherichia coli: evidence for the existence of new molecules and for a new ribonucleoprotein particle containing 6S RNA.

Small stable RNA molecules of Escherichia coli other than 5S (rRNA) and 4S (tRNA) were studied. Two of the molecules corresponded to 4.5S and 6S RNA, which have been reported previously. The third stable RNA molecule, 10S RNA, has not been described before. RNA labeled with (32)P(i) or [(14)C]uracil for a relatively long time, when separated in 5%/12% tandem polyacrylamide gels, displayed three bands corresponding to 10S, 6S, and 4.5S RNA in addition to rRNA and tRNA bands. These RNAs were stable in pulse-chase-labeling experiments. The amount of these RNAs was small, comprising only 0.2 to 0.5% of the total (32)P incorporation. However, this amount represented a large number of molecules; for 6S and 4.5S, it was about 1,000/DNA molecule. These three RNAs were found in the postribosomal supernatant fraction. None of them was found in purified nucleoid fractions in which the tightly coiled DNA molecules were contained. Of these three RNAs, 6S RNA was unique in that it seemed to exist in a ribonucleoprotein particle. All these RNAs, as well as tRNA, were very stable in the cell under various physiological conditions. 5S RNA was less stable. On the other hand, purified 6S RNA was more susceptible than tRNA to cell nucleases when incubated with cell extracts, suggesting that, being in a particle, it is protected from cell nucleases.

Electrophoresis, Polyacrylamide Gel

Identification of lipopolysaccharides and phospholipids of Escherichia coli in polyacrylamide gels.

Polyacrylamide gel electrophoresis of unfractionated lysates of radioactively labeled cells resolves not only proteins and polynucleotides into discrete bands but also cellular lipopolysaccharides and phospholipids. This allows a determination of the intracellular amounts of all of these macromolecules. In addition, this technique is sensitive enough to detect mutational alterations in lipopolysaccharide structure. Polyacrylamide gel electrophoresis is herein shown to be a useful tool for investigations into the structure of lipopolysaccharides and the synthesis of lipopolysaccharides and phospholipids.

Electrophoresis, Polyacrylamide Gel