Childhood neuroectodermal tumours and malignant lymphoma after maternal ovulation induction.
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Biomedical subjects
Publications and source records attributed to I Matsui.
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Porcine pancreatic alpha-amylase (EC 3.2.1.1; abbreviated PPA), which hydrolyzes alpha-D-(1,4) glucosidic bonds in starch and amylose, displays an optimum at pH 6.9 for the majority of substrates. The optimum pH, however, shifted to 5.2 for the hydrolysis of some low molecular substrates (Ishikawa, K., et al., 1990, Biochemistry 29, 7119-7123). Details of the substrate-dependent shift of the optimum pH in PPA were studied by use of a series of maltooligosaccharides with 14C-labeled reducing end glucose as substrates. The optimum pH for maltotriose was 5.2, whereas that for maltopentaose and maltohexaose was unchanged at pH 6.9. The pH profile for the intermediate size substrate maltotetraose showed abnormality; the apparent optimum pH was broadened between 5.5 and 6.5 and the bond cleavage pattern depended on pH, unlike that for the other substrates examined. These results were independent of either buffer systems or substrate concentration. Analyses of the hydrolysates of the maltooligosaccharides revealed that the shift of the optimum pH to the neutral region occurred only when the fifth subsite of PPA in the productive binding modes was occupied by a glucosyl residue of a substrate. The three-catalytic residue model of PPA deduced from the analysis of the hydrolysis of some modified maltooligosaccharides (p-nitrophenyl-alpha-D-maltoside, gamma-cyclodextrin, maltopentaitol, and maltohexaitol) (Ishikawa, K., et al., 1990, Biochemistry 29, 7119-7123) was successfully adapted to the linear maltooligosaccharides used in this work. These results indicate that the different productive binding modes of the linear oligosaccharide substrates affect directly the catalytic power and the optimum pH of PPA.
The 84th tryptophan residue in Saccharomycopsis alpha-amylase molecule was replaced by a leucine residue and the resulting site-directed mutant, W84L enzyme, showed an increase in transglycosylation activity. At a 40% digestion point of maltoheptaose (G7), for example, maltooligosaccharide products larger than maltodecaose (G10) amounted to approx. 60% of the total product from the mutant enzyme reaction, whereas no such large products were observed in the native enzyme reaction. Analysis of the reaction products from p-nitrophenyl maltooligosaccharides indicated that these large products were formed by addition of the hydrolysis products on the nonreducing end side to the starting intact substrates. These results suggest that the tryptophan residue located at subsite 3 of the enzyme plays an important role not only to hold the substrate, but also to liberate the hydrolysis products from the substrate binding pocket.
The effect of methoxamine, a specific alpha 1-adrenergic agonist, on the release of T3, T4 and cAMP from perifused mouse thyroid was studied to clarify the role of the alpha 1-adrenergic receptor in the regulation of thyroid hormone secretion. TSH-stimulated T3 and T4 release was inhibited significantly by methoxamine. With regard to cAMP release, methoxamine inhibited TSH-stimulated cAMP release in the presence of 4-(3-butoxy-4-methoxybenzyl)-2-imidazolidinone but did not inhibit TSH-stimulated cAMP release in the presence of 3-isobutyl-1-methylxanthine. Methoxamine did significantly suppress TSH-stimulated release of T3 and T4 in the presence of each phosphodiesterase inhibitor. Depletion of Ca2+ in the perifusion buffer abolished completely the inhibitory effect of methoxamine on TSH-stimulated T3 and T4 release. The present study suggests that activation of the alpha 1-adrenergic receptor inhibits TSH-stimulated T3 and T4 secretion through a Ca(2+)-dependent mechanism in the mouse thyroid gland.
The kinetic parameters (kcat/Km) and the cleaved-bond distributions for the hydrolysis of linear maltooligosaccharides Gn (3 less than or equal to n less than or equal to 9) by Saccharomycopsis alpha-amylase (Sfamy) secreted from Saccharomyces cerevisiae were determined at pH 5.25 and 25 degrees C. The subsite affinities of Sfamy were also evaluated from these data. The subsite structure of Sfamy is characteristic of the active site of an endo-cleavage type enzyme, consisting of internal repulsive sites with the catalytic residues and external attractive sites. Moreover, the pKa values of the catalytic residues were calculated from the pH dependence plot of the kinetic parameter (kcat/Km). The amino acid residues which contribute to the subsite affinities and the catalytic activity of Sfamy are proposed and compared with those of Taka-amylase A.
The effect of the ionophore A23187 on a. the release of thyroid hormone from perifused mouse thyroid glands and b. the morphological changes in follicular epithelial cells was evaluated. A23187 at a concentration of 5 mumol/l significantly inhibited both the TSH- and the forskolin-stimulated release of T3 and T4. In the presence of 3-isobutyl-1-methylxanthine or (4-(3-butoxy-4-methoxybenzyl)-2-imidazolidinone) RO 20-1724, A23187 did not affect the forskolin-stimulated release of cAMP, but did inhibit the release of T3 and T4 stimulated by forskolin. Light and electron microscopic evaluation of the follicular epithelial cells of mouse thyroid tissues following 1-h stimulation with forskolin showed numerous pseudopods engulfing luminal colloid of various size and the presence of reabsorbed colloid droplets in the apical cytoplasm. Quantitative electron microscopic analysis revealed that the addition of the ionophore A23187 reduced the number of reabsorbed colloid droplets to one eighth in follicular epithelial cells. These observations suggest that the increase in intracellular Ca2+ induced by the ionophore A23187 inhibits the TSH-stimulated thyroid hormone release independently of the cAMP level, and that the suppression of thyroid hormone release may be due to an inhibition of colloid reabsorption.
A nationwide survey in Japan on child abuse and neglect revealed that 10% of the victims were products of multiple births. None of the victims who were singletons had multiple-birth siblings, and only in a few cases were both twins abused. The findings indicated that one rather than both of a pair of twins was likely to be abused in Japan. Abuse of both twins was likely when there were serious parental or family problems, whereas abuse of one twin was associated with the child's medical problems or non-home care. There was no instance of abuse of a pair of twins when both were handicapped. Comparisons of the abused twin with the non-abused co-twin and examination of the abuser's attitude to the victim suggested that the difference between twins in their development or in their response to parents increased the stress of child-rearing and encouraged favouritism, which resulted in abuse of only one twin. Comparison by parents of children with their siblings may be a common factor in general child abuse because it is a natural thing for parents to do.
Porcine pancreatic alpha-amylase (EC 3.2.1.1, abbreviated as PPA) hydrolyzes alpha-D-(1,4) glucosidic bonds in starch and amylose at random, and the optimum pH for the substrates is 6.9. The optimum pH, however, shifted to 5.2 for the hydrolytic reaction of low molecular weight oligosaccharide substrates such as p-nitrophenyl alpha-D-maltoside, gamma-cyclodextrin, maltotetaitol, and maltopentaitol. The optimum pH for the oligosaccharides consisting of more than five glucose residues, such as maltopentaose and maltohexaitol, was 6.9. From the analysis of the hydrolysates, it was clear that the shift of the optimum pH occurred only when the fifth subsite of PPA in the productive binding modes was occupied by a glucosyl residue of the substrates. The value of Km was independent of pH between 4 and 10 but that of kcat was dependent on pH. The pH profiles of kcat for the above substrates did not fit a simple bell-shaped curve predicted by a two-catalytic-group mechanism. Instead, they were well analyzed theoretically by three pK values and two intrinsic kcat values. Enthalpy changes for the three pK's (4.90, 5.35, and 8.55 at 30 degrees C) were determined from the temperature dependence of pH profiles for maltopentaitol and maltohexaitol to be 0.0, 2.87, and 7.33 kcal/mol, respectively. These results indicate that productive binding modes of the substrates directly affect the catalytic function of the enzyme. From the present thermodynamic analysis and reported three dimensional structure at the active site of PPA [Buisson, G. (1987) EMBO J. 6, 3909-3916], one can assume that a histidyl residue (101, 201, or 299) acts as a proton donor and two carboxyl groups (Asp 197, Glu 233, or Asp 300) act as proton donors or acceptors, and the productive binding mode covering the fifth subsite changes configurations between the catalytic residues and the glucosidic bond hydrolyzed and modulates kinetic parameters depending on pH.
The Saccharomycopsis fibuligera alpha-amylase (Sfamy) gene was expressed in Saccharomyces cerevisiae. The highest productivity of Sfamy was 70 mg per liter of culture broth. We purified Sfamy from the culture broth and identified the NH2 terminal primary sequence. This sequence suggests that the Sfamy gene product is synthesized as a pre-pro-precursor, and the pro-sequence is cleaved after a Lys-Arg sequence with the calpain-like endopeptidase encode by the KEX2 gene, resulting in mature Sfamy protein composed of 468 amino acids. Furthermore, the enzyme Sfamy is a glycoprotein in which one N-linked sugar chain containing mannose residues is attached to the Asn residue at the 198 position. The Km and kcat values were 1.1 x 10(-4) M and 1.4 x 10(2) sec-1, respectively, using amylose (the degree of polymerization n = 18) as a substrate. Moreover, the secondary structure, the location of the secondary elements including alpha-helix, beta-sheet, and loop, and tertiary structure were predicted theoretically on the basis of the molecular structure of Aspergillus oryzae alpha-amylase. Taka-amylase A (TAA). These results indicate that Sfamy protein is composed of main (M) and C-terminal (C) domains. The molecular structure of M domain closely resembles that of TAA, but the C domain appears to be more compact than that of TAA because of deletions at three regions forming turns and one region forming alpha-helix.
The present status of NB mass screening in Japan, which is the first national trial in the world, is presented. This program was conducted in cooperation with infants' mothers, local health centers, screening centers and hospitals. Three hundred and thirty-seven cases detected by the program, from the start in Kyoto in 1974 to the end of 1989, are analyzed. As many cases were detected at early stages, 97% of them were expected to be cured. Several clinical, technical and programmatic problems are also discussed.
In 1973, mass screening program for 6-month old infants for early detection of neuroblastoma using a VMA spot test of a urine sample was initiated in Kyoto. In 1985, nation wide mass screening was initiated throughout the entire country and the Government has given the financial support to each district. In 1988, the Government recommended the institution of mass screening by quantitative measurements of VMA, HVA and creatinine using HPLC (high performance liquid chromatography), instead of the qualitative test of VMA alone. From 1974, at the time of initiation of mass screening for neuroblastoma to the end of October, 1989, 383 cases with this tumor have been discovered throughout the screening program. Three hundreds eighty three cases (88%) of them had been registered to the Neuroblastoma Committee of the Japanese Society of Pediatric Oncology. In this paper, the mass screening program was introduced and the 337 cases with this tumor detected by 6-month old screening were analyzed their clinical symptoms, findings, urinary VMA and HVA levels, primary sites, weights of primary tumor, histology, stages at diagnosis, metastatic sites, and the results of the treatment. Three hundreds twenty eight cases (97%) of them are expected to be cured. And we discussed clinical problems related to mass screening program for neuroblastoma, such as an increase of the incidence of infantile neuroblastomas detected by this program and the spontaneous regression.
To determine risk factors in childhood malignancy, we compared parental and fetal exposure rates of some environmental factors among major children's malignancies based on 2722 cases of the Japan Children's Cancer Registry Database. The rates of parental exposure to irradiation, chemicals, and maternal dosage before and during pregnancies and of maternal smoking and drinking habit during pregnancies were slightly but statistically significantly high in some blastomas in which loss of heterozygosity of the genes has been reported. On the other hand, there were no significant correlations with these factors in leukemia and malignant lymphoma, which have been reported to be related to special chromosomal translocations. These possible risk factors should be examined by experimental and more detailed epidemiological studies.
We studied the effect of lithium on the release of T3, T4, and cAMP from perifused mouse thyroids and on cAMP content in thyroid pieces. Lithium significantly inhibited T3 and T4 release from TSH-stimulated mouse thyroids. This inhibitory effect on thyroid hormone release was dependent on the concentration of lithium. Under continuous stimulation with TSH and 3-isobutyl-1-methylxanthine, both cAMP release and cAMP content were significantly decreased by lithium. In addition, we studied the effect of lithium on (Bu)2cAMP-stimulated thyroid hormone release. T3 and T4 release was stimulated by (Bu)2cAMP in a similar way to TSH. Lithium significantly inhibited (Bu)2 cAMP-stimulated T3 and T4 release from perifused mouse thyroids. These results suggest that lithium inhibits the action of TSH in the thyroid gland by both suppression of cAMP production and inhibition at a step beyond cAMP generation.
ENO1-'lacZ fusions with various lengths of the ENO1 5'-flanking region were constructed on various types of yeast plasmid vectors. The fully expressed level of beta Gal directed by ENO1-'lacZ fusions differed depending on the type of vector, but on any type of vector, beta Gal activity was not greatly influenced by the carbon source in the medium. The 86-bp DNA region of ENO1 at position -487 to -402 upstream of the initiation codon, in which we had previously delimited the positive regulatory region of ENO1 (Uemura, H., Shiba, T., Paterson, M., Jigami, Y., & Tanaka, H. (1986) Gene 45, 67-75), exerted its function without requiring precise location with respect to the TATA box. The action of the positive regulatory region was not affected by its orientation. In addition, the substitution of the UASs of PHO5, encoding repressible acid phosphatase, with the regulatory region of ENO1 changed the expression of PHO5-'lacZ gene to constitutive, irrespective of the concentration of inorganic phosphate in the medium. Furthermore, the GCR1 gene cloned in a multicopy plasmid increased the expression of the ENO1-'lacZ fused genes.
Among 727 patients registered to the Japan Immunodeficiency Registry up to December 6, 1986 from 1975, 25 patients were reported to have developed malignant neoplasms. The incidence of malignant neoplasms in 649 childhood patients was 3.2%, which was approximately 400 times higher than general childhood populations. More than half of these patients were complicated with malignant limphomas. The patients with Chediak-Higashi syndrome and ataxia-telangiectasia showed the highest incidence of developing malignant neoplasms.
L-Fucose, D-mannose-specific lectin (SFL 100-2) particles produced by Streptomyces no. 100-2 were labeled with N-succinimidyl-[2,3-3H]propionate to investigate quantitatively their binding properties to human erythrocytes. The labeling did not influence the physical properties or the hemagglutinating activity of the lectin particles. The binding studies suggested that two kinds of receptor sites were present on the erythrocytes. Association constants (Ka's) of the lectin particles to the receptor sites and the numbers of the receptor sites (n) on human O erythrocytes were calculated to be 4.60 X 10(8) M-1 and 3.17 X 10(4)/cell for high-affinity receptor sites, and 7.5 X 10(7) M-1 and 1.33 X 10(5)/cell for low-affinity ones. The inhibition constants (Ki's) for L-fucose, p-nitrophenyl (PNP)-beta-L-fucoside, D-mannose, and PNP-alpha-D-mannoside were calculated to be 1.20 X 10(3), 1.82 X 10(3), 1.82 X 10(2), and 2.40 X 10(2) M-1, respectively. The numbers of carbohydrate-binding sites (m) on the lectin particles were estimated to be 2.82, 2.18, 2.19, and 2.21 for L-fucose, PNP-beta-L-fucoside, D-mannose, and PNP-alpha-D-mannoside, respectively, suggesting that SFL 100-2 has two carbohydrate-binding sites per particle.
Calmodulin antagonists, N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7), N-(6-aminohexyl)-1-naphthalenesulfonamide (W-5) and trifluoperazine inhibited ornithine decarboxylase induction in lymphocytes activated with phytohemagglutinin or inophore A23187. W-7, a more potent calmodulin antagonist than W-5, suppressed ornithine decarboxylase induction in a higher extent than did W-5. These results suggest that calmodulin may play an important role in ornithine decarboxylase induction in the activated lymphocytes. However, the extent of ornithine decarboxylase induction was greater in cells pretreated with Clostridium phospholipase C and then incubated with ionophore A23187 than in cells incubated with ionophore A23187 without the pretreatment. Moreover, combined treatment of cells with ionophore A23187 and tumor promotor, phorbol 12-myristate 13-acetate, caused synergistic induction of ornithine decarboxylase activity. These results, taken together, suggest that both activations of Ca2+-activated phospholipid-dependent protein kinase by diacylglycerol and of calmodulin-dependent function resulted from an elevation of cytosolic Ca2+ concentration may operate in the induction of ornithine decarboxylase in the activated lymphocytes.
The morphology of an L-fucose specific lectin, SEL 100-2, from a Streptomyces sp. was studied. Electron microscopic observation showed that purified SFL 100-2 preparation consisted of particles homogeneous in size. The diameter was 25 nm. The digitized images of these particles had 2-fold rotation symmetry. The sedimentation coefficient (s020,w) was determined to be 20.6S. The particle weight and the Stokes radius were calculated to be 8.0 X 10(5) daltons and 94 A, respectively, by three independent methods, i.e., gel filtration, sedimentation equilibrium and velocity measurements. The frictional ratio (f/fmin) was estimated to be 1.53. These values are quite similar to those of human alpha 2-macroglobulin. 125I-Labeled peptide mapping indicated that these particles were built up of about twelve identical subunits (Mr = 68,000). The size of SFL 100-2 in culture broth was found to be the same as that of the particles in the purified preparations. The shape and other properties of SFL 100-2 are discussed and compared with those of the tail of lambda phage and type 1 pili of Escherichia coli, whose amino acid compositions were quite similar to that of SFL 100-2 and also those of L-fucose specific plant lectins.