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Biomedical subjects

K Suzuki

Publications and source records attributed to K Suzuki.

At least 19 recordsLinked to original sources

Modulation of cellular signals by calpain.

Calpain, an inactive proenzyme, translocates from the cytosol to the membrane upon binding calcium, and is activated at the membrane in the presence of calcium and PIP2. Activated calpain is very unstable and presumably used only once. Thus the primary targets of calpain are considered to be membrane or membrane-associated proteins. Activation of protein kinase C (PKC) occurs concomitantly with calpain at the membrane. Calpain hydrolyzes only the active PKC species leading to downregulation. Calpain participates in the transcriptional regulation by controlling the levels of transcription factors, c-Jun and c-Fos. The calpain gene is a TPA-responsive gene and its expression is stimulated by activation of PKC. Modulation of cellular signal transduction by controlling the levels of the component proteins, such as PKC, c-Jun and c-Fos is one of the important physiological roles of calpain.

Animals

Influence of oxidative stress on induced tolerance to ischemia in gerbil hippocampal neurons.

We investigated whether reversible oxidative stress induced by the administration of the superoxide dismutase inhibitor, diethyldithiocarbamate, could induce tolerance to subsequent cerebral ischemia in gerbil hippocampal neurons. Mature male gerbils received intraperitoneal injections of diethyldithiocarbamate (1.0 g/kg), which led to reduced superoxide dismutase activity and increases in thiobarbituric acid-reactive substance in the brain. Cerebral ischemia was produced by occluding the bilateral common carotid arteries for 5 min, either 2 or 4 days after diethyldithiocarbamate injection. One week after ischemia, samples from each brain were stained with hematoxylin-eosin to evaluate ischemic neuronal damage in the hippocampal CA1 sector. Diethyldithiocarbamate treatment 4 days before ischemia had significant protective effects against cerebral ischemia, while diethyldithiocarbamate 2-day pretreatment and vehicle treatment failed to show neuroprotection. Biochemical examinations showed a clear induction of heat shock protein 72 and a significant increase in manganese-containing superoxide dismutase in the hippocampus in animals treated with diethyldithiocarbamate 4 days prior to ischemia. These results suggested that the oxidative stress caused by diethyldithiocarbamate could induced tolerance to ischemia in the gerbil brain, and that the increase in the biosynthesis of manganese-containing superoxide dismutase and heat shock protein 72 could provide a biochemical explanation of the tolerance induced under these conditions.

Animals

Localization and developmental expression of a novel protein kinase C delta gene.

The expression and localization of a novel protein kinase C delta (nPKC delta) mRNA were investigated using Northern blotting and in situ hybridization in the developmental process of mouse brain. In adult mice, nPKC delta was abundantly expressed in the thalamus, moderately in the pons and the cerebellum, but faintly in the cerebral cortex and the spinal cord. By in situ hybridization, the signals were observed specifically at the sensory and motor relay nuclei of the thalamus, the dorsal cochlear nuclei of the pons, and the molecular layer of the cerebellum. When developmental changes in the expression of nPKC delta gene were analyzed by in situ hybridization, it was not detectable in embryonic and neonatal brains, very weakly expressed in the thalamus in the first week, and highly expressed at two weeks of age. These results suggest that the gene expression of nPKC delta is strictly controlled by both the cell type and the developmental process.

Animals

Enzymatic basis for the non-linearity of hepatic elimination of propranolol in the isolated perfused rat liver.

Propranolol (PL) metabolism was studied in the isolated perfused rat liver under single-pass and steady-state conditions. An attempt was made to predict the data observed in the isolated rat liver perfusion at PL infusion rates of 89-1317 nmol/min using the microsomal kinetic parameters obtained in our previous paper (Ishida et al., Biochem Pharmacol 43: 2489-2492, 1992) and the unbound PL fractions in rat liver microsomes and the perfusion medium. The values of kinetic parameters obtained in rat liver microsomes were corrected for the whole liver. Two groups of cytochrome P450 isozymes having high (Km < 0.5 microM)- and low (Km > 20 microM)-affinities participate in the metabolism of PL and sudan III pretreatment induces the low-affinity enzymes rather than the high-affinity enzymes in control rats. Of high-affinity isozyme(s) PL 4-hydroxylase and 7-hydroxylase made a major contribution to the overall activity, while for low-affinity isozymes PL 4-hydroxylase and N-desisopropylase did. A nonlinear relationship between the PL concentrations entering and leaving the liver was predicted from these corrected kinetic parameters using the venous equilibrium model. The outflow concentrations and the metabolic rates of PL for the predicted curves were over-estimated at higher inflow PL concentrations and under-estimated at higher substrate concentrations, respectively. On the other hand, the prediction for them was successfully carried out for the livers whose intrinsic clearance was altered due to the induction of low-affinity enzymes in PL metabolism by sudan III pretreatment. The outflow rates of 4-hydroxypropranolol showed a downward curvature at lower substrate concentrations, followed a linear rise in the livers from control rats, while the outflow rates of 5- and 7-hydroxypropranolol exhibited their respective limiting values. The outflow rates of 4-hydroxypropranolol and N-desisopropylpropranolol were enhanced markedly with increasing the outflow unbound concentration of PL by sudan III pretreatment. These results indicate that non-linear PL first-pass metabolism is due to the saturation of the reactions for the high-affinity enzymes among enzymes engaging in PL ring hydroxylations.

Animals

Progressive impairment of Schwann cell proliferation in vitro in murine globoid cell leukodystrophy (twitcher).

In an attempt to elucidate possible functional derangement in Schwann cells in globoid cell leukodystrophy (GLD), we investigated the proliferative capacity in vitro of Schwann cells from the twitcher (twi/twi), a murine model of human GLD, with thymidine autoradiography and cell counts. Regardless of genotype, Schwann cell numbers increased faster and initial thymidine incorporation was higher in suckling than in adult mice. Compared with cells from heterozygous (+/twi) or normal (+/+) mice, however, proliferative capacity of Schwann cells from twi/twi was depressed in both sucklings and adults. Reflecting in vivo activation secondary to demyelination, the number of labeled Schwann cells was transiently higher during the first 24 h in adult twi/twi cultures but the rate of proliferation declined thereafter and remained low during an 8 day period in culture. Our study demonstrates that proliferative capacity of twi/twi Schwann cells was impaired in vitro, possibly as a consequence of metabolic perturbation by a deficiency of galactosylceramidase.

Aging

Positive regulation of mu-calpain action by polyphosphoinositides.

Whether calcium is the only major intracellular activator of calpain has not yet been established. Here we demonstrate that polyphosphoinositides may play critical roles in the activation process of mu-calpain. Experiments with purified enzyme, substrate (fodrin), and phospholipids show that only polyphosphoinositides but not other lipids significantly promote calpain action in the physiological intracellular calcium range of 10(-7) to 10(-6) M. The effect of polyphosphoinositide is exerted through both a reduction in the calcium concentration required for calpain autolysis and an increase in the Vmax of the proteolytic reaction. Neomycin, a polyphosphoinositide-binding antibiotic, inhibits both polyphosphoinositide-assisted proteolysis in test tubes and calcium-induced calpain activation coupled with substrate proteolysis in intact cells. This implies that the presence of polyphosphoinositides may actually be a prerequisite for calpain activation inside cells.

Amino Acid Sequence

Zinc-specific activation of a HeLa cell nuclear protein which interacts with a metal responsive element of the human metallothionein-IIA gene.

Transcription of metallothionein genes is activated by heavy metals such as zinc and cadmium, and a DNA element called metal responsive element (MRE) is essential for this process. By mobility-shift assay, we identified a HeLa-cell nuclear protein which specifically binds to MREa of human metallothionein-IIA gene. This protein, named ZRF (zinc-regulatory factor), is present in the cells untreated with heavy metals. Zinc is essential for, and increases in a dose-dependent manner, the binding of ZRF to MREa. Other heavy metals which can also induce metallothioneins, including cadmium, copper and mercury, do not activate ZRF. A MREa-containing oligonucleotide that can bind ZRF confers heavy metal-inducibility to a heterologous promoter, suggesting that ZRF is a zinc-dependent transcriptional activator. In addition to the MRE core sequence, the surrounding sequences are also important for both ZRF binding in vitro, and zinc-dependent transcriptional activation in vivo. MREa by itself responds not only to zinc but also to other metallothionein-inducing heavy metals, indicating that the ZRF protein, not the MREa sequence, is responsible for the zinc specificity.

Base Sequence

Developmental change in subcellular location of Bp-1 protein with an ability to interact with both identifier sequence and its brain-specific transcript, BC-1 RNA.

Identifier sequences are transcribed to generate a brain-specific BC-1 RNA present as a ribonucleoprotein particle in the dendrites and somata of neurons. This ribonucleoprotein particle contains an identifier sequence-binding protein (Bp-1 protein). We report here the purification of BC-1 RNA and demonstrate that Bp-1 protein interacts directly with the RNA. We also demonstrate an accumulation of Bp-1 protein in the nucleus of brain cells from mouse fetus and newborns that precedes the postnatal increase in BC-1 RNA. Cytoplasmic Bp-1 protein present in a complex with BC-1 RNA increases postnatally with a concomitant decrease in nuclear Bp-1 protein. These observations suggest that Bp-1 protein may play a role(s) in the synthesis and nuclear export of BC-1 RNA.

Aging

Secretion of cell-adhesion-promoting factors, fibronectin, fibronectin fragments and a 53-kDa protein, by human rectal adenocarcinoma cells.

Production of cell-adhesion proteins was examined in 10 cell lines and 5 cultured human cancer cells at an early passage. Two-thirds of the tested cells produced and secreted into their culture medium variable amounts of material active in promoting cell attachment. One of the rectal carcinoma cell lines, CaR-I, grew well in serum-free medium and secreted a large amount of the active principle. The active principles produced by CaR-I cells were characterized after partial purification, and were found to be fibronectin and its fragments. The presence of fibronectin and its fragments was proved by the following facts: (1) reactivity to the monoclonal antibodies which recognize different epitopes of fibronectin, and (2) reactivity to RGD peptide which is the attachment sequence of fibronectin. In addition to fibronectin and its fragments, CaR-I cells were also shown to produce a 53-kDa attachment factor. Unexpectedly, the protein was proved to be most probably the p53 suppressor gene product.

Adenocarcinoma

Sequence comparison among muscle-specific calpain, p94, and calpain subunits.

While conventional calpains, m- and mu-calpains named according to their calcium-dependence, are expressed in almost every tissues, mRNA of newly identified p94, which has a significant sequence similarity to the conventional calpain large subunits, is abundantly expressed only in skeletal muscle. In addition to this specific expression, p94 is distinct from conventional calpains in that it contains three unique regions showing no similarity to conventional calpain subunits. When rat and human p94 are compared, overall sequence similarity is 94.0%, which is close to those for m- and mu-calpain large subunits; 93.1% and 95.4% between human and rabbit, respectively, suggesting the evolutionary importance of p94. These calpain large subunit proteins, p94, m- and mu-types, can be considered to constitute a super family, whose p94, m- and mu-types represent the three major types. Sequences of the calpain large-subunit family members, including the recently reported Schistosoma calpain, are compared. Their evolutionary correlation and function are discussed on the basis of the results thus far obtained.

Amino Acid Sequence

The role of the COOH-terminal region of antithrombin III. Evidence that the COOH-terminal region of the inhibitor enhances the reactivity of thrombin and factor Xa with the inhibitor.

To elucidate the role of the COOH-terminal region of antithrombin III, we studied the effects of synthetic peptides corresponding to its sequence on the amidolytic and proteolytic activities of thrombin and Factor Xa in the presence or absence of the inhibitor, antithrombin III. The peptides ANRPFLVFI and IIFMGRVANP corresponding to residues Ala404 to Ile412 and Ile420 to Pro429, respectively, blocked the inhibition by antithrombin III. The effect of IIFMGRVANP was reduced in the presence of heparin. Both peptides at a concentration of 1 mM blocked complex formation between antithrombin III and thrombin or Factor Xa. The two peptides, particularly IIFMGRVANP, directly enhanced the amidolytic activity of thrombin and Factor Xa on the synthetic substrate Boc-Ala-Gly-Arg-MCA (where Boc is t-butoxycarbonyl and MCA is 4-methylcoumarin), which corresponds to residues P3-P1 of the reactive site of antithrombin III, and also on other substrates due to increased Vmax. IIFMGRVANP also shortened the thrombin-induced fibrinogen clotting time, whereas ANRPFLVFI inhibited the thrombin-catalyzed activation of protein C both in the presence and absence of thrombomodulin. The direct effect of ANRPFLVFI and IIFMGRVANP on thrombin was confirmed by enhancement of the incorporation of dansylarginine-N-(3-ethyl-1,5-pentanediyl)amide into thrombin. These findings suggest that the COOH-terminal region of antithrombin III interacts with thrombin and Factor Xa to increase the reactivity of the enzyme, which may enhance acyl-bond formation between the inhibitor and the enzyme.

Amino Acid Sequence

In vivo binding of [11C]Ro15-4513 in human brain measured with PET.

Ro15-4513, an azide derivative of benzodiazepine antagonist flumazenil (Ro15-1788), and Ro15-1788 were labelled with carbon 11. Sequential PET scans following injection of [11C]Ro15-4513 or [11C]Ro15-1788 into normal male healthy volunteers were measured, and kinetic analysis using pons as a reference region was performed. [11C]Ro15-4513 was highly accumulated in frontal cortex, temporal cortex, hippocampus and relatively lower accumulation in occipital cortex, whereas almost homogeneous distribution of Ro15-1788 throughout cortex area was seen. The kinetic analysis revealed that such differences of regional distribution in brain between two labelled ligands were mainly due to the regional difference of the dissociation rate constants in vivo (k4). [11C]Ro15-4513 may be a useful tool for the in vivo study of benzodiazepine receptors in human brain.

Adult

Characterization of a Xenopus laevis skin peptidylglycine alpha-hydroxylating monooxygenase expressed in insect-cell culture.

The C-terminal amide structure of peptide hormones and neurotransmitters is synthesized via a two-step reaction catalyzed by peptidylglycine alpha-hydroxylating monooxygenase (PHM) and peptidylhydroxyglycine N-C lyase. A Xenopus laevis PHM expressed in insect-cell culture by the baculovirus-expression-vector system was purified to homogeneity and characterized. Using a newly established assay system for PHM, the kinetic features of this enzyme were investigated. As expected, the enzyme required copper ions, L-ascorbate and molecular oxygen for turnover. Salts like KI and KCl, and catalase stabilized the enzyme in the presence of L-ascorbate. The optimum pH value for the enzyme reaction was around six when Mes buffer was used and around seven when phosphate buffer was used under the same assay condition. Below pH 6, acetate, iodide and chloride ions activated the reaction. The kinetic analysis is consistent with a ping-pong mechanism with respect to peptide and L-ascorbate, and the peptide showed substrate inhibition. The substrate specificity of the enzyme at the penultimate position was examined by competitive assay using tripeptides with glycine at the C-termini and the inhibitory potency of these peptides in descending order was methionine > aromatic > non-polar amino acids.

Acetates

Influence of the estrous cycle at gamma-ray exposure on radiation-induced mammary tumorigenesis in virgin rats.

Wistar rats received whole body irradiation with 260 cGy gamma-rays at 10 a.m. of individual phases of their estrous cycle and then had diethylstilbestrol pellets implanted for 1 year. When the radiation was given during di-estrus II, the highest incidence (73.3%) of mammary tumorigenesis was observed, and mean latency until the first tumor appearance was 8.5 +/- 0.7 months. Also, rats irradiated on estrus had significantly lower incidence (35.3%) of mammary tumors than those irradiated on pro-estrus and di-estrus II, but there was no significant difference in latency period. Iball's indices of total mammary tumors, fibroadenoma plus adenocarcinoma, were 14.3 +/- 0.9, 28.8 +/- 2.1, 23.3 +/- 0.8 and 12.2 +/- 0.2 in rats irradiated during di-estrus I, di-estrus II, pro-estrus and estrus respectively. The percentage of adenocarcinomas was comparatively uniform (25.0 to 34.8%) throughout the various phases of the estrous cycles. Also, Iball's indices calculated from adenocarcinoma indicated no significant differences between all groups. From our results, the highest incidence of mammary tumors arose in rats after irradiation at di-estrus II with minimum level of prolactin in serum. We discuss different mechanisms of radiation-induced and chemical-carcinogen-induced tumorigenesis of mammary glands.

Adenocarcinoma

Yeast ribosomal proteins: XIV. Complete nucleotide sequences of the two genes encoding Saccharomyces cerevisiae YL16.

We isolated and sequenced YL16A and YL16B encoding ribosomal protein YL16 of Saccharomyces cerevisiae. The two nucleotide sequences within coding regions retain 91.1% identity, and their predicted sequences of 176 amino acids show 93.8% identity. Out of the ribosomal protein sequences from various organisms currently available, no counterpart to YL16 could be found.

Amino Acid Sequence

Multiple thyroid involvement (intraglandular metastasis) in papillary thyroid carcinoma. A clinicopathologic study of 105 consecutive patients.

Multiple thyroid involvement (MTI) in papillary thyroid carcinoma was clinicopathologically studied in 105 non-selected, consecutive patients. Whole thyroids resected by total thyroidectomy were sectioned at intervals of 2-3 mm (mean number of slices per gland, 19.2) and histologically reviewed. The intraglandular cancer foci, other than the tumor regarded as the primary focus, were demonstrated in 82 (78.1%) of 105 patients. The foci were usually small (less than 4 mm) and were not accompanied by sclerotic fibrous stroma or by a fibrous capsule. These small foci were distributed around the primary lesion and also were found frequently (61.0%) in the opposite lobe as bilateral disease. In the opposite lobe, a similar incidence (approximately 30%) of disease was obtained in each of the three parts (upper, middle, and lower). The mean number of foci in patients with MTI was statistically correlated to age, the presence of lymph node metastases, and the presence of solid areas or psammoma bodies in the primary tumor. It was concluded that MTI could be regarded as one of the most striking and important biologic characteristics of papillary thyroid carcinoma.

Adolescent

Inhibitory effect of activated protein C on platelet aggregation induced by the prothrombin-converting reaction.

The present study was undertaken to elucidate the effect on platelet aggregation of the prothrombin-converting reaction on platelets with or without activated protein C (APC). A reaction mixture of washed platelets from human individuals, Factor Xa and prothrombin markedly induced platelet aggregation; maximum aggregation rates, 31.3-92.5%, and times to reach to maximum aggregation, 11.6 to 20.1 min. This aggregation was inhibited by the addition of APC with 50% inhibition concentration (IC50) value of 14.4 U/ml. APC also inhibited thrombin generation in the reaction mixture in a dose-dependent manner with IC50 value of 0.96 U/ml. However, APC did not inhibit the thrombin (0.1 CU/ml)-induced platelet aggregation at concentrations of up to 30 U/ml. These findings suggest that APC has no direct inhibitory effect on platelet aggregation and that APC inhibits platelet aggregation through inhibition of thrombin generation.

Blood Platelets