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S I Feinstein

Publications and source records attributed to S I Feinstein.

32 records · Page 2Linked to original sources

cAMP increases synthesis of surfactant-associated protein A by perfused rat lung.

Synthesis and secretion of surfactant-associated protein were studied in isolated rat lungs perfused with [3H]phenylalanine or [35S]methionine in synthetic medium. Surfactant was isolated by lung lavage and density-gradient centrifugation followed by dialysis to remove unincorporated amino acid and extraction with ethanol-ether to yield a delipidated protein fraction. Incorporation of [3H]phenylalanine into the delipidated surfactant protein fraction showed a lag phase of approximately 3 h followed by progressive increase over the next 3 h at a rate of 1.6 nmol.mg protein-1.h-1. With 8-bromoadenosine 3',5'-cyclic monophosphate (8-BrcAMP, 0.1 mM) added to the perfusate, the incorporation rate between 3 and 6 h was increased by 75%. 3H specific activity in a delipidated lamellar body-rich fraction isolated from lung homogenates was unchanged by 8-BrcAMP at 3 h but was increased by 45% at 6 h. The major peak of radioactivity on sodium dodecyl sulfate-polyacrylamide gel electrophoresis of surfactant and lamellar bodies corresponded to proteins of 27-36 kDa that were identified as surfactant protein A (SP-A) by immunoblot. In the presence of 8-BrcAMP during 6 h of perfusion, specific activity of 35S-labeled SP-A in immunoprecipitated protein was increased by 93% and the SP-A mRNA content of lung was increased 145%. These results show that isolated perfused lungs synthesize and secrete surfactant-associated proteins and that the presence of a permeable cAMP analogue in the lung perfusate leads to increased secretion followed by induction of synthesis for SP-A.

8-Bromo Cyclic Adenosine Monophosphate↗

Hyper-recombining recipient strains in bacterial conjugation.

Using a direct enrichment and screening procedure, mutants of Escherichia coli have been isolated in which recombination frequencies for several intragenic Hfr X F- crosses are significantly higher (twofold to sixfold) than in the parental strains. These hyper-recombination mutations comprised five new mutS- and one new mutL- allele. Together with other known mut- alleles, they were analyzed for effects on intragenic recombination using several types of crosses. Hyper-recombination was found for mutS-, mutL-, mutH (= mutR)- and mutU (= uvrD)-, with the largest effects seen for certain alleles of uvrD; these resulted in over 20-fold excesses in recombinant production for Hfr X F- crosses and F'-chromosome homogenotization. Spontaneous mutator ability was not always correlated with degree of hyper-recombination.

Alleles↗

Pattern of undermethylation of the major satellite DNA of mouse sperm.

Enzymatic hydrolysis and base analysis by high performance liquid chromatography showed that mouse satellite DNA had 30-50% less 5-methylcytosine in sperm than in somatic tissue (1.59 mols % vs 2.40-3.11 mols %). Maxam-Gilbert sequencing and analysis of the intensity of the cytosine bands indicated that the level of methylation of the eight CpGs of the consensus sequence in sperm satellite DNA ranged from 0 to about 50%, considerably lower than the levels reported in somatic tissues. The Mn1I site containing one of these CpGs was cut much more extensively in satellite DNA from sperm than from liver, confirming the undermethylation of this site in sperm DNA.

5-Methylcytosine↗

DNA methylation is not increased in mouse-human somatic cell hybrids.

The level of DNA methylation in three mouse-human cell lines that retained different human chromosomes and in the parental mouse and human lines has been determined by high-pressure liquid chromatography (HPLC). The level of methylation is similar in the hybrid and parental cells, indicating that interspecific somatic cell hybridization followed by preferential chromosome segregation can occur without an increase in overall DNA methylation.

Animals↗

Human apolipoprotein B cDNA clone isolation and demonstration that liver apolipoprotein B mRNA is 22 kilobases in length.

An expression library made in plasmids pUC8 and pUC9 with mRNA derived from the human hepatoma cell line HepG2 was screened with a rabbit antiserum to human low density lipoprotein (LDL). Approximately 12,000 clones were screened and five positives were identified. The cDNA inserts were all 1500-1600 base pairs in length. The insert from one clone, pB8, was isolated, labeled by nicktranslation, and found to cross-hybridize strongly with the other four cDNA clones. The pB8 clone produces a fusion protein of approximately equal to 37.5 kDa that reacts in electrophoretic transfer blot analysis with rabbit anti-human LDL. This reactivity can be abolished by pretreatment of the antiserum with purified human LDL, p = 1.025 - 1.050 g/ml. A pB8-derived probe was used to demonstrate that apolipoprotein B (apo B) mRNA is present in HepG2 cells and liver extracts but not in HeLa cells or extracts from small intestine, heart, aorta, spleen, brain, skeletal muscle, lung, kidney, or ovary. RNA transfer blot analysis revealed that HepG2 cell apo B mRNA was approximately equal to 22 kilobases in length. These cDNA clones should allow the isolation of the apo B gene and ultimately the elucidation of the primary structure of this protein.

Apolipoproteins B↗

Family of human alpha-interferon-like sequences.

An interferon-alpha-like sequence was isolated from a human genomic library by hybridization with a 15-base oligonucleotide. The sequence also showed homology to alpha-interferon and was most closely related to the leukocyte interferon-M gene fragment. The original isolate cross-hybridized to a family of sequences, 10 of which were isolated as clones. Some of these sequences were located within a few kilobases of alpha-interferon genes, consistent with our assignment of several members of the family to human chromosome 9 which also has the beta 1- and alpha-interferon genes.

Amino Acid Sequence↗

Expression of human interferon genes using the recA promoter of Escherichia coli.

Interferon beta 1 and three alpha-interferon genes were cloned on Eco RI fragments isolated from a human genomic library into the Eco RI site of a plasmid containing the recA promoter of E. coli. Expression of interferon activity from cells carrying these plasmids was nalidixic acid inducible. The alpha-interferon genes were expressed only when in the same transcriptional orientation as the recA promoter while the beta 1 interferon gene was expressed in either orientation. Interferon activity was also inducibly expressed from the recA promoter in cells containing a plasmid carrying a fusion of the recA gene with the beta 1 interferon gene. This interferon activity was thirty-fold less sensitive to neutralization by polyclonal antibodies than authentic interferon, implying that the change near the amino terminus affects either antibody recognition or specific activity or both.

Bacterial Proteins↗

Zygotic induction of the rac locus can cause cell death in E. coli.

Conjugational transfer of the rac locus of E. coli K-12 into a Rac- recipient strain (i.e. rac+ X rac-) results in the killing of a majority of the recipient cells. The efficiency of killing depends somewhat on the plating medium, and can be as high as 98%. The killing is not observed in the rac+ X rac+, rac- X rac- or rac- X rac+ configurations. The rac locus, which has the properties of a cryptic prophage, may carry a function analogous to the kil function of bacteriophage lambda, or may instead cause killing by some replication related process.

Bacteriophage lambda↗

Unusual suppression properties of lysogens containing derivatives of phi 80 psu3+.

Nonsense codon suppressing lysogens of E. coli have been made using phi 80 psu3+-A2 and phi 80 psuoc+-A2, heat-sensitive amber and ochre suppressing derivatives, respectively, of bacteriophage phi 80. The various lysogens selected differ in strength of suppression as well as in heat sensitivity of suppressor function. Heat-resistant derivatives, some still carrying the A2 mutation, can be selected from the heat sensitive parents. Mapping experiments indicate that the phi 80 derivatives integrate at the tyrTV locus, which contains two copies of tRNA1Tyr. The origin of the various suppressor phenotypes appears to be related to the great variety of distinctive recombination events possible either between the incoming tRNA1Tyr gene and the host copies, or among the three copies of this gene in the lysogens.

Bacteriophages↗

Synthesis of human interferon beta 1 in Escherichia coli infected by a lambda phage recombinant containing a human genomic fragment.

DNA from a human adult was fragmented by partial digestion with restriction endonuclease EcoRI and cloned in lambda Charon 4A. Clone C15, with a human DNA insert of 17 X 10(3) bases, was identified as containing a gene for the fibroblast interferon, interferon beta 1. Restriction mapping shows that this gene, located on a 1840-base EcoRI fragment, is not interrupted by introns. Moreover, we show that this human genomic DNA fragment is able to direct the synthesis of active human interferon beta 1 in Escherichia coli. Interferon activity of up to 7 X 10(6) U/l was recovered from phage lysates by chromatography on Cibacron blue--Sepharose, and had the same immunological properties and species specificity as interferon produced by human fibroblasts.

Adult↗

Context effects on nonsense codon suppression in Escherichia coli.

The influence of mRNA context on nonsense codon suppression has been studied by suppression measurements at one site in the Escherichia coli trpE gene and at two sites in the trpA gene. The ratio of suppression efficiencies of amber and ochre codons at each site (homotopic pairs) has been compared using ochre suppressing derivatives of tRNATyr. This ratio is independent of differential effects of the inserted amino acid on enzyme function. We have found that mRNA context can change the ratio of suppression efficiencies of homotopic nonsense codons at the three sites in the trp gene system over a ten-fold range. The causes of such variation, and, in particular the effect of certain adjacent nucleotides on nonsense codon suppression are considered.

Anthranilate Synthase↗

Maintenance of differentiated function of the surfactant system in human fetal lung type II epithelial cells cultured on plastic.

We report a simplified culture system for human fetal lung type II cells that maintains surfactant expression. Type II cells isolated from explant cultures of hormone-treated lungs (18-22 wk gestation) by collagenase + trypsin digestion were cultured on plastic for 4 days in serum-free medium containing dexamethasone (Dex, 10 nM) + 8-bromo-cAMP (0.1 mM + isobutylmethylxanthine (0.1 mM) or were untreated (control). Surfactant protein (SP) mRNAs decreased markedly in control cells between days 1 and 4 of culture, but mRNA levels were high in treated cells on day) 4 (SP-A, SP-B, SP-C, SP-D; 600%, 100%, 85%, 130% of day 0 content, respectively). Dex or cAMP alone increased SP-B, SP-C, and SP-D mRNAs and together had additive effects. The greatest increase in SP-A mRNA occurred with cAMP alone. Treated cells processed pro-SP-B and pro-SP-C proteins to mature forms and had a higher rate of phosphatidylcholine (PC) synthesis (2-fold) and higher saturation of PC (approximately 34% versus 27%) than controls. Only treated cells maintained secretagogue-responsive phospholipid synthesis. By electron microscopy, the treated cells retained lamellar bodies and extensive microvilli. We conclude that Dex and cAMP additively stimulate expression of surfactant components in isolated fetal type II cells, providing a simplified culture system for investigation of surfactant-related, and perhaps other, type II cell functions.

1-Methyl-3-isobutylxanthine↗