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T Sassa

Publications and source records attributed to T Sassa.

At least 37 records · Page 2Linked to original sources

Functional properties of the unc-64 gene encoding a Caenorhabditis elegans syntaxin.

Phenotypes of Caenorhabditis elegans unc-18 and unc-64 gene mutations are similar. While unc-18 is known to be essential for normal synaptic transmission (Hosono, R., Hekimi, S., Kamiya, Y., Sassa, T., Murakami, S., Nishiwaki, S., Miwa, J., Taketo, A., and Kodaira, K.-I. (1992) J. Neurochem. 58, 1517-1525), the function of unc-64 remains unclear. Here we describe the cloning, and the molecular and genetic characterization of the unc-64 gene, especially in relation to unc-18. unc-64 encodes a protein (C. elegans syntaxin) showing sequence and structural similarities to mammalian syntaxin 1A. From unc-64, at least three types of poly(A)+ RNA are transcribed, which encode two types of syntaxin that differ in the deduced transmembrane domain. In gene expression, unc-64 closely resembles unc-18, that is, both are expressed in neural cells, especially in motor neurons and neurons constituting head ganglions. C. elegans syntaxin binds to UNC-18 with high affinity. The unc-64 (e246) mutation producing a mild phenotype causes an Ala-->Val conversion in the conserved COOH-terminal region in mammalian syntaxin 1A or Drosophila syntaxin-1A whose site is included in three types of transcripts. The binding of the mutant C. elegans syntaxin to UNC-18 is greatly reduced, indicating the mutation site contributes to the binding.

Amino Acid Sequence↗

Cotylenin A, a plant-growth regulator, induces the differentiation in murine and human myeloid leukemia cells.

Protein factors playing a significant part in differentiation and development have been recently elucidated. However, low molecular factors which also seem to be essential remain still unknown, although only retinoic acid has become such a candidate. Cotylenins had been isolated as the plant-growth regulators, and have been found to affect a number of physiological processes of higher plants. Here we report that at the concentrations above 12.5 microg/ml (20 microM) cotylenin A induced the functional and morphological differentiation in murine (M1) and human myeloid leukemia (HL-60) cells. Although cotylenin A has some similarity to PMA both in carbotricyclic diterpene structure and in biological activity (i.e. differentiation-induction of HL-60 cells into macrophages), the activation of PKC and the elevation of Ca2+-levels by cotylenin A were not observed. Quite recently it has been reported that fusicoccin (closely related to cotylenin A)-targets are 14-3-3 proteins, which are at the crosspoint of a huge array of signalling and regulatory pathways. These results suggest that cotylenin A might become a useful tool for the elucidation of molecular mechanisms of differentiation and development.

Animals↗

Ent-kaurene synthase from the fungus Phaeosphaeria sp. L487. cDNA isolation, characterization, and bacterial expression of a bifunctional diterpene cyclase in fungal gibberellin biosynthesis.

ent-Kaurene is the first cyclic diterpene intermediate of gibberellin biosynthesis in both plants and fungi. In plants, ent-kaurene is synthesized from geranylgeranyl diphosphate via copalyl diphosphate in a two-step cyclization catalyzed by copalyl diphosphate synthase and ent-kaurene synthase. A cell-free system of the fungus Phaeosphaeria sp. L487 converted labeled geranylgeranyl diphosphate to ent-kaurene. A cDNA fragment, which possibly encodes copalyl diphosphate synthase, was isolated by reverse transcription-polymerase chain reaction using degenerate primers based on the consensus motifs of plant enzymes. Translation of a full-length cDNA sequence isolated from the fungal cDNA library revealed an open reading frame for a 106-kDa polypeptide. The deduced amino acid sequence shared 24 and 21% identity with maize copalyl diphosphate synthase and pumpkin ent-kaurene synthase, respectively. A fusion protein produced by expression of the cDNA in Escherichia coli catalyzed the two-step cyclization of geranylgeranyl diphosphate to ent-kaurene. Amo-1618 completely inhibited the copalyl diphosphate synthase activity of the enzyme at 10(-6) M, whereas it did not inhibit the ent-kaurene synthase activity even at 10(-4) M. These results indicate that the fungus has a bifunctional diterpene cyclase that can convert geranylgeranyl diphosphate into ent-kaurene. They may be separate catalytic sites for the two cyclization reactions.

Alkyl and Aryl Transferases↗

Decreased prefrontal dopamine D1 receptors in schizophrenia revealed by PET.

Schizophrenia is believed to involve altered activation of dopamine receptors, and support for this hypothesis comes from the antipsychotic effect of antagonists of the dopamine D2 receptor (D2R). D2R is expressed most highly in the striatum, but most of the recent positron emission tomography (PET) studies have failed to show any change in D2R densities in the striatum of schizophrenics, raising the possibility that other receptors may also be involved. In particular, the dopamine D1 receptor (D1R), which is highly expressed in the prefrontal cortex, has been implicated in the control of working memory, and working memory dysfunction is a prominent feature of schizophrenia. We have therefore used PET to examine the distribution of D1R and D2R in brains of drug-naive or drug-free schizophrenic patients. Although no differences were observed in the striatum relative to control subjects, binding of radioligand to D1R was reduced in the prefrontal cortex of schizophrenics. This reduction was related to the severity of the negative symptoms (for instance, emotional withdrawal) and to poor performance in the Wisconsin Card Sorting Test. We propose that dysfunction of D1R signalling in the prefrontal cortex may contribute to the negative symptoms and cognitive deficits seen in schizophrenia.

Adult↗

Patterns of recurrence after initial treatment in patients with small hepatocellular carcinoma.

To assess intrahepatic metastasis (IM) and multicentric occurrence (MO) after initial treatment of small hepatocellular carcinomas (HCC) < or = 2 cm in diameter, we performed clinical and pathological studies in 112 patients who underwent percutaneous ethanol injection therapy (PEIT) or hepatic resection for HCC from January 1985 to December 1994. Patients with intrahepatic recurrences were classified into two groups based on the type of recurrence: the IM group (n = 29, 50.9%) and the MO group (n = 28, 49.1%). Overall recurrence rates after initial treatment were 23.7% at 1 year, 64.5% at 3 years, and 76.1% at 5 years. In patients with IM, the majority of intrahepatic recurrences were observed within 3 years of initial treatment and the primary HCC lesions were closely related to the degree of tumor cell differentiation. Alternatively, intrahepatic recurrences occurred throughout the follow-up period in patients with MO, and the evidence of underlying liver disease (anti-HCV [antibody to hepatitis C virus] positive) and elevated serum alfa-fetoprotein (AFP) concentrations were closely associated with intrahepatic recurrence. Prognoses following additional treatment in MO group patients were superior to those in IM group patients. These results suggest that differentiation between IM and MO in patients with HCC is important for understanding the development and biological behavior of the tumor. That is, the early detection of intrahepatic recurrence and the institution of appropriate additional therapy (PEIT or hepatic resection) may prolong survival in patients with MO.

Adult↗

Expression of Bax and Bcl-2 protein in the gerbil hippocampus following transient forebrain ischemia and its modification by phencyclidine.

To determine the effect of phencyclidine (a noncompetitive NMDA receptor antagonist) on expression of Bax and Bcl-2 (apoptosis-regulating proteins) in gerbil hippocampus after transient forebrain ischemia, brain sections were immunohistochemically evaluated 48, 72, 96 h and 7 days following ischemia. In ischemic control animals, the expression of Bax in CA1 neurons was increased with time and peaked at 72 h, then disappeared at 96 h. In the phencyclidine (5 mg kg-1, intraperitoneally)-treated animals, the intensity of Bax expression at 72 h was weaker than that of ischemic control animals. Furthermore, at 96 h, Bax expression was still observed in CA1 neurons. No expression of Bcl-2 in the CA1 neurons was detected in either control or phencyclidine-treated animals. From these results, it is possible that NMDA receptor antagonists exert their preventive effect against delayed neuronal death through inhibition of Bax protein expression, although the precise relationship between the function of Bax protein and delayed neuronal death is still unclear.

Animals↗

Endocytosis of serum albumin in regenerating rat liver.

Lysosomes, isolated from rat liver after 70% partial hepatectomy (PHX), were found, by Western blotting, to contain a considerable amount of serum albumin. The level of intralysosomal serum albumin after PHX showed biphasic patterns: it increased immediately after PHX, peaked at 30 min, rapidly declined within a few hours, rose again with a peak at 15 hr, and gradually declined thereafter. At 15 hr after PHX, the content of lysosomal proteins in the liver increased to twice the level of unoperated control, and the electron-microscopic observation of the isolated lysosomes revealed numerous large membrane-delimited structures with ground substances of variable electron opacities. The increase in the intralysosomal serum albumin at 30 min and 15 hr was accompanied by changes in the buoyant densities of endosomes in Percoll density gradients. At both time points, the density profiles of endosomes isolated from hepatectomized rats shifted to the denser direction, suggesting that PHX activates fusion and/or maturation of endosomes. Formaldehyde-treated bovine serum albumin is known to be taken up by the liver by receptor-mediated endocytosis. The uptake of the modified heterologous albumin was shown to be activated as early as 30 min after PHX. Both the uptake of serum albumin into lysosomes and the shift of buoyant density profile of endosomes after PHX were inhibited by the administration of adrenergic receptor antagonists, particularly by the alpha r-antagonist prazosin. Further, the concentration of catecholamines in rat serum, particularly that of norepinephrine, was found to increase immediately after PHX, relative to that in serum from sham-operated rats. These results suggest that the elevation of serum norepinephrine levels after PHX activates endocytosis and facilitates delivery of endocytosed serum albumin to lysosomes, where albumin is digested to yield amino acids for possible use in protein synthesis during liver regeneration.

Adrenergic alpha-Antagonists↗

Vitamin B6 deficiency accelerates metabolic turnover of cystathionase in rat liver.

Although most of cystathionase was found to exist as an inactive apoenzyme in the liver of vitamin B6-deficient rats, the concentrations of the immunoreactive enzyme protein were virtually the same for control and vitamin B6-deficient livers. Under vitamin B6 deficiency, however, the rate of synthesis of cystathionase, measured by incorporation of labeled amino acid into the immunoprecipitated enzyme, was increased severalfold due to an increased level of cystathionase mRNA. Western blot analysis of lysosomal proteins showed that the amount of cystathionase in the lysosomes from the liver of vitamin B6-deficient rats was also increased severalfold. This observation suggests that lysosomes specifically recognize the apocystathionase for sequestration in preference to the holoenzyme. The present study provides the molecular basis for dual roles of vitamin B6 in controlling the metabolic turnover of cystathionase; it regulates synthesis of the enzyme by modulating the expression of cystathionase gene, and it regulates degradation of the enzyme by different susceptibilities of apo- and holoenzymes to lysosomal proteolysis.

Animals↗

The synaptic protein UNC-18 is phosphorylated by protein kinase C.

The C. elegans unc-18 encoded protein UNC-18 is implicated in the interactions between synaptic vesicles and presynaptic plasma membrane. To further characterize the neural protein, we investigated the phosphorylation in vitro of the protein expressed in Spodoptera frugiperda Sf21 cells. The UNC-18 protein is selectively phosphorylated by protein kinase C (PKC) but not by casein kinase II and cyclic AMP-dependent protein kinase. The presumed phosphorylation sites determined by manual Edman degradation were serine-2, serine-322, threonine-462 and serine-515, of which the last is highly conserved as a consensus phosphorylation site for PKC in Drosophila and the mammalian homologue. Phosphorylated UNC-18 extracted from C. elegans was also detected, indicating that it has a physiological role in intact nerve terminals. Therefore, the phosphorylation by PKC may play a physiological role in the regulation.

Amino Acid Sequence↗

Effect of dietary fat content on oral bioavailability of menatetrenone in humans.

The purpose of this investigation was to determine the effects of fat content and frequency of meals on the oral bioavailability of menatetrenone (2-methyl-3-all-trans-tetraprenyl-1,4-naphthoquinone), a vitamin K2 with four isoprene units. In the first series of studies, menatetrenone (15 mg) was administered at breakfast time to 18 healthy male volunteers after meals with three different fat contents (meals A, B, and C) on three occasions in a crossover design. The three types of meals had almost the same calorie content (721-746 kcal) with varied fat contents (A, 8.8 g; B, 20.0 g; C, 34.9 g). The area under the plasma menatetrenone concentration-time curve within the first 24 h (AUC0-24) increased with increase of fat content: 371 +/- 194, 485 +/- 150, and 1024 +/- 341 ng.h/mL (mean +/- SD, n = 18) after meals A, B, and C, respectively. On the fourth occasion, the same dose of menatetrenone was administered to all volunteers after taking meal B, but in this case the lunch 5 h after drug administration was omitted from the protocol. The time profile of plasma menatetrenone showed a single peak when lunch was not taken, whereas it showed two peaks with lunch. On the fifth occasion, 12 out of 18 volunteers took the same dose of menatetrenone after a meal with the highest fat content (53.8 g of fat and 789 kcal; meal D), showing that AUC0-24 was almost the same as that for meal C, 1027 +/- 389 and 991 +/- 392 ng.h/mL (n = 12) for meals C and D, respectively. The oral bioavailability of lipid-soluble vitamin K was influenced by the fat content of a meal, although the increase in bioavailability seemed to reach a peak when the lipid content of the meal was > 35 g.

Administration, Oral↗

Interaction of rat liver lysosomes with basic polypeptides.

In order to gain knowledge on the interaction of lysosomes with proteins, we have assessed the equilibrium densities of the lysosomal membrane and matrix markers after in vitro incubation of rat liver lysosomes with various polypeptides. The addition of basic polypeptides, polylysine or protamine, to the suspension of lysosomes brought about a profound alteration of lysosomal membrane, causing extensive leakage of lysosomal matrix enzymes. Electron microscopic observation revealed a remarkable aggregation of lysosomes by the basic polypeptides. Polyglutamic acid, an acidic polypeptide, did not produce such effect. ATP was found to stabilize lysosomes during incubation, particularly with basic polypeptides.

Animals↗

Production of functional chick liver HMG 2a protein in Escherichia coli.

An efficient Escherichia coli system for the production of a variant form of high-mobility group-2a protein (HMG 2a), having the additional 5 amino acid residues (Ala-Pro-Thr-Leu-Glu) at the NH2-terminal, has been constructed. cDNA encoding HMG 2a was ligated with the Omp A signal peptide sequence and was inserted into an inducible bacterial expression vector pSH-L. After the plasmid introduced into E. coli was expressed by temperature shift, the recombinant product was purified by trichloacetic acid precipitation followed by Bio-Rex 70 column chromatography. The purified product showed the expected NH2-terminal sequence and the superhelical activity of circular DNA similar to the authentic HMG 2a isolated from chick liver.

Amino Acid Sequence↗

Vitamin B6 deficiency causes activation of RNA polymerase and general enhancement of gene expression in rat liver.

The effect of vitamin B6 deficiency on the activity of RNA polymerase and expression of several mRNAs in rat liver was investigated. The activities of RNA polymerase I and II in the liver of vitamin B6-deficient rats were found to be higher than the control rats by 30%. The expression of several mRNAs, including mRNAs for beta-actin and glyceraldehyde-3-phosphate dehydrogenase, and the content of poly(A)+ RNA were also increased in vitamin deficiency. These observations suggest that vitamin B6 influences gene expression in the liver, at least in part, by modulating the activity of RNA polymerase.

Actins↗

Developmental changes in the expression of HMG 2a protein.

The levels of HMG 2a chromosomal protein and its mRNA change during the post-hatched development of chicks were investigated. The contents of both HMG 2a and 2b proteins of liver, heart, brain, muscle and gizzard were abundant in the newly hatched chicks but their contents decreased significantly in those tissues of the 70-day-old chicks. The HMG 2a mRNA levels of liver, heart and brain in 70-day-old chick decreased to about 40% of those mRNA in the newly hatched chicks while the HMG 2a mRNA levels of muscle and gizzard in the 70-day-old chicks increased 5- and 3-fold, respectively. These results suggest that the decrease in the HMG 2a protein contents of the muscle and gizzard in the 70-day-old chicks may be largely due to the stimulation of HMG 2a protein degradation or the reduction of HMG 2a mRNA translation.

Animals↗

Phenylmethylsulfonyl fluoride stimulates proteolysis of nuclear proteins from chick liver.

The degradation of H1 histone and high mobility group (HMG) nonhistone proteins was stimulated when the homogenate from chick liver was incubated in the presence of phenylmethylsulfonyl fluoride (PMSF). Two proteinase inhibitors, elastatinal and chymostatin, significantly inhibited the PMSF-stimulated degradation of H1 histone and HMG proteins. On the contrary, other proteinase inhibitors like leupeptin, pepstatin, trypsin inhibitor, antipain, o-phenanthroline and EDTA had no effect on the degradation of the nuclear proteins. These results warn the researcher to be cautious while using PMSF for preparation of nuclear proteins such as H1 histone and HMG proteins.

Animals↗

Purification and characterization of protein kinase C from the nematode Caenorhabditis elegans.

Protein kinase C (PKC) of Caenorhabditis elegans was identified by enzymatic activity and [3H]phorbol 12,13-dibutyrate binding after DEAE-Sephacel column chromatography of a crude cytosolic extract. Ca(2+)-dependent activation of nematode PKC was observed in the presence of phosphatidylserine. The enzyme was maximally activated by 1,2-dioleoylglycerol or phorbol 12-myristate 13-acetate in the presence of phosphatidylserine and Ca2+. Hydroxyapatite column chromatography showed only one peak of PKC activity with histone H1 and myelin basic protein as substrates. The enzyme was purified to near homogeneity by sequential chromatography on polylysine-agarose and phosphatidylserine affinity columns. The purified protein showed a molecular mass of 79 kDa on SDS/PAGE. The substrate specificity of the C. elegans enzyme was shown to be different from that of mammalian PKCs. Here we describe some of the properties of the nematode enzyme.

Animals↗

The unc-18 gene encodes a novel protein affecting the kinetics of acetylcholine metabolism in the nematode Caenorhabditis elegans.

Genes affecting acetylcholine (ACh) levels without influencing choline acetyltransferase activity have been identified in Caenorhabditis elegans. We have examined one such gene, unc-18. We isolated a transposon-insertion allele for unc-18 and used it to clone a genomic region containing the unc-18 locus. The unc-18 location within this region was determined by rescuing the unc-18 mutant phenotype in a germ-line transformation experiment and identifying transcripts affected by four independent unc-18 mutations. A single-sized poly(A)+ RNA was synthesized from the gene. Expression of the transcript appears to be stage specific: The transcript is found in abundance at the early larval stage but in decreased amounts at the fourth larval and the adult stages. These results show that the unc-18 gene plays a role in development as well as in the kinetics of ACh metabolism.

Acetylcholine↗