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Biomedical subjects

S Hoshina

Publications and source records attributed to S Hoshina.

14 recordsLinked to original sources

Effects of a fecapentaene on protein kinase C.

Protein kinase C (PKC) is a Ca2(+)- and phospholipid-dependent serine and threonine protein kinase which binds and is activated by tumor promoters such as the phorbol ester 12-0-tetradecanoylphorbol-13-acetate (TPA). PKC can be activated in vitro by phosphatidylserine (PS) plus Ca2+. We report here that the compound fecapentaene-12 can replace the requirement for PS in the activation of PKC by Ca2+. In addition, at low concentrations fecapentaene-12 can enhance the activation of PKC by Ca2+ and PS. It can also either enhance or inhibit activation of PKC by the tumor promoter teleocidin, depending on the assay conditions. These results are of interest since fecapentaene is known to be a potent mutagen that is produced by Bacteroides species present in the lumen of the human colon. The present studies raise the possibility that this compound might also play a role in colon cancer by altering the activity of PKC.

Animals

Growth factor-induced DNA synthesis in cells that overproduce protein kinase C.

In previous studies (Housey et al.: Cell 52:343-354, 1988), our laboratory demonstrated that a cell line R6-PKC3 that stably overproduces high levels of the beta 1 isoform of PKC displayed several abnormalities in growth control, and these phenotypic changes were also markedly enhanced when the cells were exposed to TPA. The present studies indicate that these cells also display marked changes in their response to certain growth factors. A striking finding was that several agents when tested alone in serum-free medium, including EGF, PDGF, TPA, teleocidin, and OAG, stimulated DNA synthesis in quiescent R6-PKC3 cells but had a negligible effect in quiescent R6-C1 cells, a vector control cell line with normal levels of PKC. R6-PKC3 cells also show an exaggerated response to very low concentrations of serum, when compared to R6-C1 control cells. These studies provide direct genetic evidence that alterations in cellular levels of PKC can markedly influence the responses of cells to specific growth factors.

Animals

Characterization and N-terminal sequence of a 5 kDa polypeptide in the photosystem I core complex from spinach.

Photosystem I core complexes were isolated from spinach photosystem I particles after heat treatment in the presence of 50% (v/v) ethylene glycol (heat/EG treatment). The core complex from 58 degrees C/EG-treated particles was composed of polypeptides with apparent molecular masses of 63, 60 and 5 kDA; this complex contained the iron sulfur center Fx but lacked center FA and FB. The core complex obtained from the 70 degrees C/EG-treated preparation lacked FX and contained a lesser amount of the 5 kDa polypeptide. The N-terminal amino acid sequence of the 5 kDa polypeptide did not correspond to the sequence derived from any possible reading frame in the chloroplast DNA of liverwort or tobacco. Twelve of the first 29 N-terminal amino acids were hydrophobic, suggesting that this protein is intrinsic to the photosystem I reaction center.

Amino Acid Sequence

Altered expression of retrovirus-like sequences and cellular oncogenes in mice fed methyl-deficient diets.

Methyl-deficient (lipotrope-deficient) diets enhance liver carcinogenesis in rodents. Although the mechanisms responsible for the cancer-promoting activity of such diets have not been identified, they have been observed to cause impaired immune response, alterations in methylation of liver RNA and DNA, and enhanced susceptibility to oxidative damage. Since alterations in gene expression may also play a critical role, the present studies examined the expression of the c-myc, c-H-ras, epidermal growth factor receptor, and ornithine decarboxylase genes, as well as endogenous retrovirus-like sequences, in C57BL/6J x C3H/HeJ F1 mouse liver during the first 2 weeks of feeding of a methyl-deficient diet. The kinetics of liver cell proliferation was investigated in parallel. Increased [3H]thymidine incorporation into liver DNA was found at day 4 and reached a maximum at days 7-11 after commencement of the methyl-deficient diet, when compared to age-matched mice fed a complete diet. Northern blot analysis of polyadenylated liver RNA samples indicated an increase in the levels of RNA homologous to Moloney murine leukemia virus and intracisternal A particle sequences but no significant change in the level of VL30 retrovirus-related RNA in the samples from mice fed methyl-deficient diets. A marked increase in the levels of c-myc and a slight increase in the levels of ornithine decarboxylase and c-H-ras transcripts were seen in the liver RNA samples from the treated mice. Of particular interest was a decrease in the abundance of epidermal growth factor receptor transcripts in the liver RNA samples from the treated mice. These changes in cellular levels of specific RNA resemble, in several respects, those we have previously described in rodent liver during regeneration and tumor promotion and also those seen in rodent hepatomas. They may reflect, therefore, a common profile of gene expression relevant to cell proliferation.

Animals

Phenotypic effects of overexpression of PKC beta 1 in rat liver epithelial cells.

We have used a previously described retroviral expression vector pMV7-PKC beta 1 to develop derivatives of two rat liver epithelial cell lines, K16 and K22, that stably express about tenfold-higher PKC activity than control cells. Despite these high levels of PKC, these cells did not exhibit gross morphologic changes, anchorage-independent growth, or tumorigenicity. K16PKC-4 and K22PKC-2, two lines with the highest PKC enzyme activity, were studied further in terms of several responses to the phorbol ester tumor promoter TPA. When treated with 100 ng/ml of TPA, the control K16MV7 and K22MV7 cells displayed a slight change in morphology, whereas the K16PKC-4 and K22PKC-2 cells displayed a marked change in morphology. Northern blot analyses demonstrated that TPA induced increased levels of fos, myc, phorbin, and ODC RNAs in control K16MV7 and K22MV7 cells, with maximum induction occurring at about 0.5, 1, 8, and 8 h, respectively. In K16PKC-4 and K22PKC-2 cells, TPA induction of phorbin and ODC RNAs was markedly enhanced, but this was not the case for myc and fos RNAs. In addition, the levels of myc RNA were constitutively higher in both K16PKC-4 and K22PKC-2 cells than in the control cells. Taken together, these results provide direct evidence that PKC plays a critical role in modulating the expression of myc, phorbin, and ODC RNAs. On the other hand, overexpression of PKC beta 1 is not itself sufficient to cause cell transformation.

Animals

Codon 61 mutations in the c-Harvey-ras gene in mouse skin tumors induced by 7,12-dimethylbenz[a]anthracene plus okadaic acid class tumor promoters.

Three okadaic acid class tumor promoters, okadaic acid, dinophysistoxin-1, and calyculin A, have potent tumor-promoting activity in two-stage carcinogenesis experiments on mouse skin. DNA isolated from tumors induced by 7,12-dimethylbenz[a]anthracene (DMBA) and each of these tumor promoters revealed the same mutation at the second nucleotide of codon 61 (CAA----CTA) in the c-Ha-ras gene, determined by the polymerase chain reaction procedure and DNA sequencing. Three potent 12-O-tetradecanoylphorbol-13-acetate (TPA)-type tumor promoters, TPA, teleocidin, and aplysiatoxin, showed the same effects. These results provide strong evidence that this mutation in the c-Ha-ras gene is due to a direct effect of DMBA rather than a selective effect of specific tumor promoters.

9,10-Dimethyl-1,2-benzanthracene

Oligonucleotide probe for detection and identification of Campylobacter pylori.

We have developed a novel and practical DNA-RNA hybridization assay for the detection and identification of Campylobacter pylori in the gastric mucosa. This technique utilizes a [32P]ddATP-labeled synthetic oligonucleotide probe complementary to a nucleotide sequence present in C. pylori 16S rRNA. This probe is very sensitive and reacted with all 23 strains of C. pylori tested. It is also highly specific, since there was no cross-reactivity with the heterologous organisms Campylobacter coli, C. fetus subsp. fetus, C. jejuni, and C. laridis or with Escherichia coli. Hybridization of the oligonucleotide probe with C. pylori RNA was completely inhibited by treatment of the membrane filters with RNase but not DNase. Although a gastric mucosa tissue homogenate slightly inhibited the hybridization, as few as 10(4) C. pylori cells could be detected even in the presence of 5 mg of gastric mucosa. Gastric biopsy specimens obtained from patients referred for upper gastrointestinal tract endoscopy were tested for C. pylori infection by direct oligonucleotide hybridization, and the results were compared with those of bacteriological cultures, the urease test, and histological observations. A comparison of the urease test and the oligonucleotide hybridization results showed an excellent correlation between the two methods. The clinical usefulness of this oligonucleotide-RNA hybridization method is discussed.

Campylobacter

Direct detection and amplification of Helicobacter pylori ribosomal 16S gene segments from gastric endoscopic biopsies.

Helicobacter pylori is an organism thought to play an important causative role in gastritis and peptic ulcer diseases. We have designed an RNA dot blot assay for the detection of H. pylori, using as probe a synthetic oligonucleotide complementary to its 16S rRNA. We have also used oligonucleotide primers, complementary to conserved sequences within bacterial ribosomal 16S genes, to amplify a H. pylori ribosomal 16S DNA fragment via the polymerase chain reaction (PCR). After determining the DNA sequence of this amplified H. pylori fragment, primers were designed for specific PCR amplification of H. pylori ribosomal 16S DNA sequences. Samples from clinical endoscopic biopsies were PCR amplified with universal 16S ribosomal primers to detect the presence of bacteria and with H. pylori-specific primers to uniquely detect H. pylori. Finally, by comparing the H. pylori-specific PCR assay to commonly used diagnostic tests, we demonstrate that the molecular technique of PCR amplification shows promising applications for the clinical detection of H. pylori.

Base Sequence