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Biomedical subjects

K Sekiguchi

Publications and source records attributed to K Sekiguchi.

At least 145 records · Page 8Linked to original sources

Recombinant carboxyl-terminal fibrin-binding domain of human fibronectin expressed in mouse L cells.

The carboxyl-terminal fibrin-binding domain, Fib2, of human fibronectin was expressed in mouse L cells as a fusion protein with the signal sequence of human protein C inhibitor. The recombinant Fib2 (rFib2) protein synthesized by transfected cells retained the ability to form dimers with each other or with mouse fibronectin subunits and was secreted to the medium after extensive glycosylation. Only a small fraction of the secreted protein was incorporated into the pericellular matrix. Interestingly, the secreted rFib2 protein displayed a remarkable heterogeneity upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis, giving rise to a broad band corresponding to Mr of 60,000-90,000. The heterogeneity was eliminated mostly by treatment with neuraminidase and further by treatment with endo-alpha-N-acetylgalactosaminidase. Treatment with peptide:N-glycosidase F did not alter the heterogeneity of the protein, indicating that differential sialylation of O-linked, but not N-linked, glycans is largely responsible for the apparent heterogeneity. The presence of O-linked but absence of N-linked glycans was further supported by the observations that peanut agglutinin specifically bound to the desialylated rFib2 protein, whereas neither concanavalin A nor lentil lectin bound to the protein irrespective of prior neuraminidase treatment. Since the apparent heterogeneity of the rFib2 protein was only observable with the secreted, but not the cytoplasmic form, sialylation of O-linked glycans may be essential for, or regulate as a rate-limiting step, the transit of the recombinant protein to the extracellular space.

Animals↗

Protein kinase C activation enhances the delayed rectifier potassium current in guinea-pig heart cells.

The possible involvement of protein kinase C in modulating membrane currents was investigated in isolated guinea-pig ventricular cells. In a Na(+)-and K(+)-free external solution, the delayed rectifier K+ current (IK) was increased by the activator of protein kinase C (PKC), 12-O-tetradecanoylphorbol-13-acetate (TPA). The amplitude of the IK tail elicited by a return from a depolarizing pulse for 3 s at + 50 mV to a holding potential of -30 mV was increased by 32 +/- 4% (mean +/- S.E., (n = 6) after the external application of 1 nM TPA, and by 60 +/- 17% (n = 5) after 10 nM. The increase in IK produced by 1 nM TPA was abolished by the inhibitor of PKC, 1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H-7, 10 microM). In addition, the synthetic diacylglycerol 1-oleoyl-2-acetylglycerol (OAG, 125 microM) also increased IK (58 +/- 9%, n = 3). PKC purified from bovine brain remarkably increased IK (151 +/- 101%, n = 5) in the presence of 1 nM TPA when it was internally applied using the cell dialysis method. The concentration-response curve of IK for the intracellular concentration of Ca2+ was shifted to the left by 1 nM TPA, suggesting a Ca2(+)-dependent action of PKC and/or altered Ca2(+)-sensitivity of IK channels by phosphorylation. On the other hand, 1 nM TPA had no substantial influence on the Ca2+ current (decreased by 7 +/- 4%, n = 5) or the inward-rectifier K+ current (decreased by 5 +/- 5% in outward component, and 3 +/- 8% in inward component, n = 6). Therefore, the action of PKC was to specifically increase IK without affecting the other two currents.

Animals↗

Production of infectious swine vesicular disease virus from cloned cDNA in mammalian cells.

Full-length cDNA clones of the swine vesicular disease virus (SVDV) were constructed from subgenomic cDNA clones in the expression vector pSVL (pSVLS00). The direct transfection of mammalian cells with plasmid pSVLS00 results in the production of infectious virus. The recovered virus was neutralized completely by anti-SVDV guinea-pig serum, but did show a difference in plaque morphology from the parental virus.

Animals↗

Specific induction of fibronectin gene in rat liver by thyroid hormone.

The regulation of fibronectin (FN) gene expression by thyroid hormone was studied. Rats were rendered hypothyroid by thyroidectomy, and the administration of T4 or T3 was used to produce rats in various thyroid states. RNA was extracted from fresh liver, kidney, and heart, and FN mRNA was determined by dot blot hybridization with a 32P-labeled rat FN cDNA probe. The specificity of the hybridization was assessed by Northern blot analysis. In liver, thyroidectomy decreased the abundance of FN mRNA by half, and daily administration of physiological doses of T4 or T3 for 5-6 days restored FN mRNA to the control level. The administration of pharmacological doses of thyroid hormones induced a further increase in the abundance of FN mRNA. A significant dose-dependent correlation between serum levels of T4 and the abundance of FN mRNA was observed in liver. A receptor-saturating dose of T3 (200 micrograms) given to thyroidectomized rats produced a significant increase in FN mRNA within 6 h after injection, indicating that expression of the FN gene was induced relatively rapidly. Moreover, a nuclear run-off assay revealed that thyroid hormone induces expression of the FN gene at least in part at a transcriptional level. The amount of FN mRNA was also determined in kidney and heart of the same rats. Although the abundance of FN mRNA changed by thyroidectomy or the administration of thyroid hormone in those organs, the magnitude of changes were slight compared with those observed in liver. These results suggested that a marked and dose-dependent induction of the FN gene by thyroid hormone occurs specifically in liver.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Relation between movement of acid or alkaline proteinase from Trichophyton rubrum and the growth of fungus, pH in medium].

We have previously reported that T. rubrum produced a new type of extracellular proteinase in liquid medium containing bovine serum albumin. This enzyme had an optimal pH 4.5 for azocoll. In this paper, we studied about the relation between movement of acid or alkaline proteinase and environmental pH. In the beginning of cultivation, acid proteolytic activity increased radically, and 3 or 4 weeks later, it was decreased. In place of acid proteinase, alkaline proteinase which had an optimal pH 8.0 was increased gradually. During incubation of T. rubrum in bovine serum albumin medium which was adjusted to pH 6.0, the pH of medium was gradually increased to about pH 7.0 toward 4 weeks. The growth of T. rubrum increased until pH in medium was fixed to pH 7.0.

Aspartic Acid Endopeptidases↗

A novel cell adhesive protein engineered by insertion of the Arg-Gly-Asp-Ser tetrapeptide.

A tetrapeptide Arg-Gly-Asp-Ser (RGDS) has been shown to be a versatile cell recognition signal of extracellular matrix components for the interaction with cells. We introduced the RGDS tetrapeptide into a truncated form of protein A, a staphylococcal immunoglobulin-binding protein, by inserting an oligonucleotide cassette encoding the tetrapeptide into the coding region of the protein A expression vector pRIT2T. The mutagenized protein was capable of not only binding to immunoglobulin G but also mediating cell attachment and spreading onto an inert substrate. Cell adhesion mediated by the mutagenized protein was inhibitable by a synthetic peptide Gly-Arg-Gly-Asp-Ser but not by a related peptide Gly-Arg-Gly-Glu-Ser, confirming that the inserted RGDS tetrapeptide served as a recognition signal for cell adhesion. Furthermore, the RGDS-containing protein was capable of adhering cells onto an immunoglobulin-coated surface which could not by itself support cell adhesion. Thus, the cell adhesive and immunoglobulin binding activities of the mutagenized protein appear to function coordinately. The protocol described here is essentially applicable to any protein and, therefore, provides a general principle in tailoring novel multifunctional proteins having cell adhesive activity.

Amino Acid Sequence↗

[Results of radiotherapy of esophageal cancer].

From 1972 to 1987, sixty-seven patients with esophageal cancer were treated with radiotherapy over 50 Gy. The actuarial survival at 5 years and the median survival in all patients were 5.3% and 7 months, respectively. Survival was analyzed according to the intent of radiotherapy and the tumor response. The 5 year survival and the median survival were 5.6% and 8 months for the group of radiotherapy with curative intent, whereas they were 0% and 7 months for the group of non-curative radiotherapy (p less than 0.02). The median survivals of absolutely curable, relatively curable, relatively non-curable and absolutely non-curable group were 13, 9, 5 and 3 months, respectively. And survivals of the first two groups were significantly longer than those of the last two groups. The survival in patients with distant metastasis was worse than in those who had no distant metastasis (p less than 0.05). In the fifty-five patients with no distant metastasis, the significant prognostic factors were performance status and radiation dose (TDF).

Adult↗

Deregulation of alternative splicing of fibronectin pre-mRNA in malignant human liver tumors.

Alternative splicing of fibronectin pre-mRNA at the ED-A region has been shown to be regulated in a tissue- and developmental stage-specific manner. We investigated the splicing pattern at this region in malignant and nonmalignant human liver tissues and found that the relative population of the fibronectin mRNA containing the ED-A sequence is markedly increased in malignant liver tumors. Nontumorous liver tissues including those with chronic hepatitis and cirrhosis did not show any significant change in the alternative splicing at the ED-A region. It was also found that the increased expression of the ED-A-containing fibronectin mRNA closely correlates with the occurrence of portal vein tumor thrombus and intrahepatic metastasis, which are two characteristic features of invasive liver tumors. These results indicate that tissue-specific alternative splicing of fibronectin mRNA is modified in human liver cancer and raise a possibility that the putative molecular machinery governing alternative RNA splicing of not only fibronectin but also other cellular proteins is deregulated in malignant human tumors.

Carcinoma, Hepatocellular↗

Probing molecular polymorphism of fibronectins with antibodies directed to the alternatively spliced peptide segments.

Molecular heterogeneity of fibronectins (FNs) isolated from plasma, cultured fibroblasts, and placenta was studied with site-specific antibodies recognizing alternatively spliced peptide segments, termed ED-A and IIICS/delta 2. The antibodies were raised in rabbits by immunization with synthetic peptides. Neither the ED-A nor the IIICS/delta 2 extra peptide segment was present in the major subunits of plasma FN, although a minor subunit contained the latter extra segment. Cellular FN consisted of at least four subunits differing in size of the fragments generated by cleavage of the C-terminal region with cathepsin D. These fragments were distinct from each other in the reactivity with anti-ED-A and anti-IIICS/delta 2 antibodies, suggesting that all combinations of the presence or absence of the extra segments were produced by cultured fibroblasts. Placental FN was more heterogeneous than plasma and cellular FNs, consisting of five, or probably more, subunits. Among these, the two smaller subunits appeared to be closely similar to the major subunits of plasma FN, whereas the other subunits were more related to those of cellular FN in the size of cathepsin D cleaved C-terminal fragments and in the reactivity with anti-peptide antibodies. These results, taken together, indicate that the FNs produced by different tissues or cell types are distinct from each other in the number and types of subunits, which are partly, if not all, defined by alternative splicing at the ED-A and IIICS regions.

Antibodies↗

Patterns of alternative splicing of fibronectin pre-mRNA in human adult and fetal tissues.

Alternative splicing of fibronectin pre-mRNA at two distinct regions, termed ED-A and IIICS, was investigated with human adult and fetal tissues by the nuclease S1 protection assay. A clear tissue specificity was observed in the splicing pattern at the ED-A region. More ED-A+ than ED-A- mRNAs were identified in lung, whereas ED-A- mRNAs were predominantly expressed in liver. Endometrium contained nearly equal amounts of ED-A+ and ED-A- mRNAs. The splicing pattern at the ED-A region was also different between adult and fetal liver but not between adult and fetal lung. Tissue type specific splicing was also observed at the IIICS region. Although the mRNA species containing the complete IIICS sequence comprised 40-65% of the total fibronectin mRNAs irrespective of tissue types, expression of the mRNA species lacking a part or all of the IIICS sequence was more pronounced in adult liver than in other tissues including fetal liver. These results strongly suggest that the alternative splicing of fibronectin pre-mRNA in vivo is regulated in a tissue type specific manner at both the ED-A and IIICS regions and that it is developmentally regulated in liver but not in lung. On the basis of these and other observations reported previously, a possibility that a part of the fibronectins synthesized and secreted by hepatocytes is deposited in the tissue matrix is discussed.

Adult↗

Selective activation of the gamma-subspecies of protein kinase C from bovine cerebellum by arachidonic acid and its lipoxygenase metabolites.

The gamma-subspecies of protein kinase C (PKC) apparently is expressed only in central nervous tissues, and at a high level in the cerebellum and hippocampus. gamma-PKC from bovine cerebellum, but not the alpha- or beta I/beta II-subspecies, is activated by micromolar concentrations of arachidonic acid (AA), in the absence of both phospholipid and diacylglycerol. A significant component of this activation is also calcium independent. Other unsaturated fatty acids are much less active in this respect. Among the AA metabolites tested, lipoxin A (5(S),6(R),15(S)-11-cis-isomer) was a potent, selective activator of the gamma-subspecies, and also, to a lesser extent, 12(S)-hydroxy-5,8,10,14-eicosatetraenoic acid could support activation. These results raise the possibility that AA and some of its lipoxygenase metabolites may function as messenger molecules in neurones to activate the gamma-subspecies of PKC.

Animals↗

Isolation and characterization of two monoclonal antibodies that recognize remote epitopes on the cell-binding domain of human fibronectin.

Two monoclonal anti-fibronectin antibodies that inhibit fibronectin-mediated cell adhesion have been established and characterized. One antibody, FN12-8, inhibited attachment of rat kidney fibroblasts on the fibronectin-coated substrate in a concentration-dependent manner, attaining a maximal inhibition of greater than 85% at 850 micrograms/ml. Another antibody, FN30-8, caused about 70% inhibition at a concentration as low as 0.85 microgram/ml, although further increase of the antibody concentration did not significantly augment the inhibitory effect. Immunoblot analysis with defined proteolytic fragments revealed that both antibodies are directed to the cell-binding domain of fibronectin. The epitopes for these antibodies were further narrowed down using recombinant cell-binding fragments expressed in Escherichia coli. FN12-8 recognized the 11.5-kDa cell-binding fragment previously characterized by Pierschbacher et al. (1981, Cell 26, 259-267), suggesting that FN12-8 blocks the Arg-Gly-Asp (RGD) cell adhesion signal. FN30-8 could not bind this fragment but did recognize a longer cell-binding fragment containing additional greater than 111 amino acid residues upstream of the 11.5-kDa fragment. Since the RGD-dependent cell adhesion seems to require another signal located at a region 50-160 residues upstream of the 11.5-kDa fragment for full activity, FN30-8 may exert its inhibitory effect by blocking the latter signal.

Amino Acids↗

The complete nucleotide sequence of swine vesicular disease virus.

The complete nucleotide sequence of the genome of the enterovirus swine vesicular disease virus (SVDV; H/3 '76) isolated from a healthy pig has been determined using molecular cloning and DNA sequencing techniques. The RNA genome was 7400 nucleotides long, excluding the poly(A) tract, and appeared to encode a single polyprotein of 2185 amino acids. The predicted amino acid sequence of the polyprotein showed close homology (around 90%) to that of the previously sequenced coxsackieviruses B1, B3 and B4, and also showed homology (around 60%) to that of poliovirus. This homology allows us to predict the possible cleavage sites of the polyprotein and to identify other features of structural and functional significance, which seem to be important to the biological integrity of the virus. A detailed analysis of homology between SVDV and coxsackieviruses shows that non-structural proteins are highly conserved whereas the structural proteins are less well conserved. The 5' and 3' non-coding regions are also conserved, although there are several divergent nucleotide stretches. These stretches may differentiate SVDV from coxsackieviruses.

Amino Acid Sequence↗

Modulation of ion channel activity: a key function of the protein kinase C enzyme family.

The considerable volume of data now available strongly implicates the modulation of ion channel activity as a key function of the PKC enzyme family. In some systems, such as the PC 12, RINm5F, and NG108-15 clonal cell lines, the action of the enzyme is becoming clear, whereas in others, such as cardiac and smooth muscle cells, contradictory evidence exists, and clarification of the role of PKC in these tissues must await further analysis. Few general statements can be made concerning the regulation of ion conductance through the various classes of channel, or through one particular species of channel that is expressed in and subject to regulation in different cell types. Rather, it seems that many different patterns of modulation can occur in different cells, and so, elucidation of the molecular mechanisms that determine these diverse patterns represents a major challenge. To summarize, we will focus on three aspects of the modulatory action of PKC.

Animals↗

Three distinct types of rat brain protein kinase C: their molecular heterogeneity and individual enzymological properties.

Protein kinase C exists as a large family of multiple subspecies with subtle individual characteristics. Three types of protein kinase C designated type I, II, and III were purified from rat brain cytosol, which have been shown to correspond to the cDNA clones, gamma, beta, and alpha, respectively. Their relative activities in the whole brain tissue were found to be roughly 26%, 49%, and 25% with H1 histone as a substrate. Type II enzyme was an unequal mixture of two subspecies (roughly 1 : 7) encoded by beta I and beta II-sequences which differ from each other only in a short range of their carboxyl-terminal end regions. Although the three types have closely similar structures, they show a slightly different mode of activation and kinetic properties. Type I enzyme was sensitive to synthetic permeable diacylglycerol and significantly activated by low concentrations of free arachidonic acid. Type II enzyme exhibited substantial activity without elevated Ca2+ levels, and responded well to diacylglycerol and, to some extent, arachidonic acid. Type III enzyme shows nearly full activity in the presence of higher concentrations of arachidonic acid but is less sensitive to synthetic permeable diacylglycerol. The amino acid sequences predicted by cDNA analysis have indicated that the three types of protein kinase C have a tandem repeat of amino acid residues, that resemble the characteristic in "cysteine-zinc DNA-binding finger motif." Type I, but not type II or III enzyme could be activated by Zn2+ and showed some affinity for DNA-agarose, although its significance remains unclear. It is concluded that the three types of protein kinase C show subtle individual characteristics, and possibly play distinctly different physiological roles in signal transduction.

Amino Acid Sequence↗