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Biomedical subjects

R Kuwano

Publications and source records attributed to R Kuwano.

At least 55 records · Page 3Linked to original sources

Structure and chromosome assignment of human S100 alpha and beta subunit genes.

The human S-100 alpha and beta subunit genes were isolated from human genomic DNA library. The restriction endonuclease mapping and DNA sequencing analysis revealed that both subunit genes consisted of three exons and two introns. Two Ca2(+)-binding domains were independently encoded by exon 2 and exon 3. Spot-blot hybridization analysis with flow-sorted chromosomes showed that human alpha and beta subunit genes were assigned to chromosome 1 and chromosome 21, respectively.

Amino Acid Sequence↗

Distinct forms of the protein kinase-dependent activator of tyrosine and tryptophan hydroxylases.

Tyrosine and tryptophan hydroxylases are the key enzymes in the regulation of catecholamine and serotonin levels in neurons and other endocrine cells. Among the mechanisms proposed for the modulation of activity, phosphorylation of the enzyme is believed to be of functional significance with respect to the stimulus-response coupling, but the precise mechanism is unknown. Here, we show the existence of multiple, distinct forms of the 14-3-3 activator protein, a neuronal protein essential for activation of tyrosine and tryptophan hydroxylases by Ca2+/calmodulin-dependent protein kinase type II. Bovine brain 14-3-3 protein was resolved by reversed-phase chromatography into seven polypeptides (alpha to eta), all of which were active towards tryptophan hydroxylase when the renatured preparations were assayed in the presence of Ca2+, calmodulin and the protein kinase. Determination of the amino acid sequences of the beta and gamma chains and comparison of the sequences with the previously determined sequence of the eta chain revealed that these molecules are highly homologous, and share a common structural feature in containing an extremely acidic C-terminal region predicted as a domain for interaction with the phosphorylated hydroxylases. Northern blot analysis indicated that the beta, gamma and eta chain are expressed abundantly in the brain; however, these polypeptides appear to be expressed with different tissue specificities because gamma mRNA is found only in the brain, while lower levels of beta and eta mRNAs are detected in several other tissues. These findings suggest the involvement of a diverse family of the activator protein in the stimulus-coupled, Ca2(+)-dependent regulation of monoamine biosynthesis.

14-3-3 Proteins↗

Transient expression of a calcium-binding protein (spot 35-calbindin) and its mRNA in the immature pituicytes of embryonic rats.

Spot 35 protein is a Ca-binding protein originating from the rat cerebellum; it is now referred to spot 35-calbindin. This protein is expressed in immature pituicytes of the neurohypophyseal anlage in the E11-E18 rat embryo. The gene expression of spot 35-calbindin was detected by in-situ hybridization analysis only at stage E11-E12. Profiles of spot 35-positive nerve fibers of a neurosecretory nature were found in anlage at stage E16. At this stage, some immature pituicytes are partially immunopositive for spot 35-calbindin only in their peripheral cytoplasm; others are immunonegative. At birth and thereafter through adulthood, abundant nerve fibers are the sole structures immunoreactive for spot 35-calbindin; all the pituicytes are immunonegative, resulting in a light-microscopic appearance of numerous immunonegative round profiles, corresponding to pituicytes, and capillaries embedded in the granularly immunostained neurohypophysis. The present findings suggest that, during specific embryonic stages, immature pituicytes exert some as yet unidentified roles related to Ca-mediated functions involving the expression of spot 35-calbindin.

Animals↗

In situ hybridization histochemistry of Spot 35 protein, a calcium-binding protein, in the rat brain.

Using in situ hybridization, we analyzed the localization of mRNA for Spot 35 protein (Spot 35), a calcium-binding protein of the EF-hand type, in the rat cerebellum at various developmental stages. A cDNA fragment corresponding to part of the 3'-noncoding region was 35S-labeled and used as a hybridization probe. Autoradiographic signals for Spot 35 mRNA were detected in all the Purkinje cells, but not in any other neurons or glial cells in the adult rat cerebellum. There was no significant difference in signal intensity among individual cells. The signals were observed exclusively in Purkinje cell bodies, but not in their processes, in striking contrast to previous immunohistochemical studies in which Spot 35 protein was demonstrated in both cell bodies and processes. In the time-course study, signals for Spot 35 mRNA were detected in Purkinje cell bodies weakly at embryonic day 19, thereafter more intensely at more developed stages and most intensely at postnatal days 30 and 60 (adulthood). The signal intensities of individual cells were similar at each of these developmental stages except for the very early stages at which signals were weak and slightly variable among cells. These findings, especially that of the characteristic coordinated expression of Spot 35 mRNA at given stages, should prove useful in studies of degenerative diseases in the cerebellum in experimental animals and man. A weak expression of Spot 35 mRNA in some of non-Purkinje cells was also noted.

Animals↗

Structure and expression of rat S-100 beta subunit gene.

The gene structure for S-100 beta subunit has been elucidated. The gene spans about 8 kbp and consists of 3 exons and 2 introns. The transcription initiation site was determined by an S1 nuclease mapping. The promoter region contains TATA-box-like and CAAT-box-like sequences. To examine the activity of the promoter sequence, a transfection of pS100 beta-lacZ fused gene to the cultured cells was carried out. C6 glioma cells showed a positive expression of beta-galactosidase. Gene-deletion experiments suggested the functional importance of the DNA fragment (22 bp) containing TATA-box-like and CAAT-box-like sequences. A factor protein that binds to the 100 bp DNA fragment containing the promoter sequence was specifically detected in the rat brain nuclear extract.

Animals↗

Molecular cloning of cDNA to rat 14-3-3 eta chain polypeptide and the neuronal expression of the mRNA in the central nervous system.

Activation of tyrosine and tryptophan hydroxylases, key enzymes for the catecholamine and serotonin biosynthesis, requires Ca2+/calmodulin-dependent protein kinase II and 14-3-3 protein which comprises a family of, at least, seven polypeptides in the bovine. Here we show that the amino acid sequence of the rat 14-3-3 eta chain deduced from the nucleotide sequence is completely identical to that of bovine counterpart. Using in situ hybridization the expression of mRNA for this protein is detected not only in the monoamine-synthetic neurons but also in many other discrete nuclei which synthesize neither catecholamine nor serotonin. The highly conservative structure between mammalian species and wider expression of this protein than expected in the central nervous system suggest that the 14-3-3 protein exerts some, though yet to be defined, functions fundamental to neuronal activities other than activation of the monoamine biosynthesis.

14-3-3 Proteins↗

Widespread distribution of the 14-3-3 protein in vertebrate brains and bovine tissues: correlation with the distributions of calcium-dependent protein kinases.

A highly specific antiserum was prepared against bovine brain 14-3-3 protein, a protein kinase-dependent activator of tyrosine and tryptophan hydroxylases. The immunoassay using this antiserum proved the presence of 14-3-3 protein in various bovine tissues and in brains of various vertebrate species. The quantitative analysis indicated that the tissue distribution of 14-3-3 protein is more closely related to the known distributions of the Ca2(+)-dependent protein kinases, i.e., Ca2+/calmodulin- and Ca2+/phospholipid-dependent protein kinases, rather than those of tyrosine and tryptophan hydroxylases. This result, together with the available data on this protein, suggests potential roles of the 14-3-3 protein in more diverse kinase-mediated processes than the predicted role in monoamine synthesis.

14-3-3 Proteins↗

Induction of myelin-associated glycoprotein mRNA in experimental remyelination.

Two forms of myelin-associated glycoprotein (MAG) mRNA are produced by alternative splicing of the exon 12 portion. Expression of the two forms of MAG mRNA was studied here in experimentally introduced demyelination and remyelination by Cuprizone intoxication. During the demyelinating stage, both forms of MAG mRNA decreased markedly. When feeding with Cuprizone was stopped, MAG mRNA began to increase. One form of MAG mRNA without the exon 12 portion, which appears in normal development at the period of active myelination, was characteristically induced during the remyelinating stage. The other form containing the exon 12 portion was also induced but recovered only to the level in normal development.

Animals↗

Stability of messenger RNA in postmortem human brains and construction of human brain cDNA libraries.

We studied stabilities of poly(A)(+)-RNA in postmortem mouse and human brains for up to 12 hours. The yields of total RNA were not changed significantly during postmortem periods either in mouse brains or human brains. Cell-specific cDNA probes were used to evaluate postmortem stability of poly(A)(+)-RNA in each cell type in the central nervous system. We used neuron-specific enolase (NSE), S-100 beta (S-100), and myelin-associated glycoprotein (MAG) for molecular markers of neuron, astrocyte, and oligodendrocyte, respectively. There was no detectable degradation of mRNAs coding for NSE, S-100, and MAG during the postmortem periods on Northern blot hybridization analyses. These results indicate that intact mRNAs expressed in neuron, astrocyte, or oligodendrocyte can be isolated from postmortem brains for up to 12 hours after death. Using poly(A)(+)-RNA thus isolated from two postmortem human brains, we constructed directional cDNA libraries and demonstrated the presence of full-length cDNAs for NSE, S-100, and MAG on Southern blot hybridization analysis. The present data should encourage studies on altered gene expressions in human brain in various neurologic diseases.

Aged↗

Dopamine receptors expressed in the Xenopus oocytes injected with bovine striatal mRNA.

The response to dopamine (DA) of Xenopus oocytes injected with bovine striatal mRNA was electrophysiologically and pharmacologically investigated under a voltage-clamped condition. In oocytes injected with bovine striatal mRNA and then treated with collagenase (denuded oocytes), DA applied by superfusion dose-dependently induced oscillatory inward currents with a long latency and an ED50 value of 12.0 microM. mRNA non-injected denuded oocytes did not respond to DA up to concentrations of 1 mM. The reversal potential of DA-induced currents was about -25 mV, indicating that DA increased a Cl(-)-conductance. DA-induced currents were easily desensitized by repeated applications of DA. Haloperidol and SCH-23390 abolished DA-induced currents, while propranolol and mianserin showed no effect. Furthermore, SK&F-38393, a specific agonist of the DA D1 receptor, induced similar oscillatory currents as DA did. These results suggest the possibility that functional D1 and D2 DA receptors were co-expressed in Xenopus oocytes by injection of bovine striatal mRNA.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

cDNA cloning of mouse myelin-associated glycoprotein: a novel alternative splicing pattern.

The structures of three forms of mouse myelin-associated glycoprotein mRNAs were determined from full-length cDNA clones. Two forms of mRNAs have been reported to be different by alternate inclusion of exon 2 and 12 in rat brain. One of the three forms of clones obtained here appeared to be a novel mRNA which lacked both the exon 2 and 12 portions, although others were identical splicing patterns to those of rat. Northern blot analysis using specific probes to mRNAs with or without the exon 2 portion in normal and quaking mouse confirmed that the splicing of exon 2 and 12 occurred independently.

Amino Acid Sequence↗

cDNA cloning and amino acid sequence for human myelin-associated glycoprotein.

cDNA clones of human myelin-associated glycoprotein were isolated and analyzed. The combination of the two overlapping cDNA clones covered the full coding region and the complete amino acid sequence was deduced. In rat and mouse, expression of the two forms of mRNA is developmentally regulated; the mRNA without exon 12 portion is expressed mainly in the actively myelinating stage of development. Although the cDNA library used here was prepared from adult human brain poly(A)+ RNA, all five clones obtained corresponded to the mRNA without exon 12 portion.

Amino Acid Sequence↗

Differential expression of glial fibrillary acidic protein in human glioma cell lines.

We have obtained a cDNA fragment to human glial fibrillary acidic protein (GFAP) by immunoscreening a lambda gt11 human brain cDNA library with antibody to bovine GFAP. The highly homologous nucleotide sequence of this clone with that of the mouse GFAP enabled the identification of this cDNA as one encoding GFAP. As this cDNA hybridized with a single major RNA species in Northern blots of RNA from human and mouse brain tissues and gave one or two bands in Southern blots of human genomic DNA, it was considered to be specific for GFAP. Using this cDNA as a probe we investigated the levels of GFAP expression in ten human glioma cell lines. A 3.5-kb GFAP mRNA was detected in five of the ten glioma cell lines, one of which was U-251 MG cell line and the other four were clones derived from the same tumor (CL1, 2, 3, and 4). There was a difference in the amount of GFAP mRNA among U-251 MG and the four clonal cell lines. Quantitative evaluation of this difference by RNA dot blot analysis revealed that the amount of GFAP mRNA expressed in CL3 was about 1/5 and in CL4 about 1/10 the amount expressed in U-251 MG, CL1, and CL2. Semiquantitative Western blot analysis showed that GFAP levels corresponded to the GFAP mRNA levels in these cell lines. By Southern blot analysis of genomic DNA the GFAP gene was similarly detected in all of these cell lines regardless of the level of GFAP expression.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Expression of the cholecystokinin gene in the neuron and paraneuron.

Cholecystokinin (CCK), the long known gut hormone has recently been found in the brain and suggested to be a neurotransmitter or neuromodulator. In order to clarify the structure of the CCK precursor, we cloned the cDNA to mRNA of rat brain. We determined the nucleotide sequence of the inserted cDNA and deduced the amino acid sequence and proteolytic cleavage sites of the CCK precursor. The availability of CCK cDNA probes allowed us to examine the levels of CCK mRNA in the brain and intestine. CCK mRNA was barely detectable in the fetal brain, but started to increase postnatally and attained a plateau after 20-30 days. The level of CCK mRNA was the highest in the frontal cortex, followed by those of the hippocampus and striatum. The cerebellum contained only negligible CCK mRNA. Furthermore, we succeeded in cloning the CCK gene and revealed its structure which contained three exons interrupted by two introns. The size of this gene spanned about 7 kbp. The transcription initiation sites were determined by using S1 nuclease mapping and a primer extension procedure, showing evidence for the existence of the major and minor start sites. To analyze the mechanism for CCK gene expression in the neuron and paraneuron, we tried to examine the transcription of the DNA fragments from CCK gene by an in vitro cell free system. These experiments confirmed the existence of two transcription start sites. From experiments with the deleted mutants of DNA fragments, we could deduce the promoter sequence.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗