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Biomedical subjects

T Inada

Publications and source records attributed to T Inada.

At least 19 recordsLinked to original sources

cAMP receptor protein-cAMP plays a crucial role in glucose-lactose diauxie by activating the major glucose transporter gene in Escherichia coli.

The inhibition of beta-galactosidase expression in a medium containing both glucose and lactose is a typical example of the glucose effect in Escherichia coli. We studied the glucose effect in the lacL8UV5 promoter mutant, which is independent of cAMP and cAMP receptor protein (CRP). A strong inhibition of beta-galactosidase expression by glucose and a diauxic growth were observed when the lacL8UV5 cells were grown on a glucose-lactose medium. The addition of isopropyl beta-D-thiogalactoside to the culture medium eliminated the glucose effect. Disruption of the crr gene or overproduction of LacY also eliminated the glucose effect. These results are fully consistent with our previous finding that the glucose effect in wild-type cells growing in a glucose-lactose medium is not due to the reduction of CRP-cAMP levels but is due to the inducer exclusion. We found that the glucose effect in the lacL8UV5 cells was no longer observed when either the crp or the cya gene was disrupted. Evidence suggested that CRP-cAMP may not enhance directly the lac repressor action in vivo. Northern blot analysis revealed that the mRNA for ptsG, a major glucose transporter gene, was markedly reduced in a delta crp or delta cya background. The constitutive expression of the ptsG gene by the introduction of a multicopy plasmid restored the glucose effect in delta cya or delta crp cells. We conclude that CRP-cAMP plays a crucial role in inducer exclusion, which is responsible for the glucose-lactose diauxie, by activating the expression of the ptsG gene.

Culture Media

Construction of a contiguous 874-kb sequence of the Escherichia coli -K12 genome corresponding to 50.0-68.8 min on the linkage map and analysis of its sequence features.

The contiguous 874.423 base pair sequence corresponding to the 50.0-68.8 min region on the genetic map of the Escherichia coli K-12 (W3110) was constructed by the determination of DNA sequences in the 50.0-57.9 min region (360 kb) and two large (100 kb in all) and five short gaps in the 57.9-68.8 min region whose sequences had been registered in the DNA databases. We analyzed its sequence features and found that this region contained at least 894 potential open reading frames (ORFs), of which 346 (38.7%) were previously reported, 158 (17.7%) were homologous to other known genes, 232 (26.0%) were identical or similar to hypothetical genes registered in databases, and the remaining 158 (17.7%) showed no significant similarity to any other genes. A homology search of the ORFs also identified several new gene clusters. Those include two clusters of fimbrial genes, a gene cluster of three genes encoding homologues of the human long chain fatty acid degradation enzyme complex in the mitochondrial membrane, a cluster of at least nine genes involved in the utilization of ethanolamine, a cluster of the secondary set of 11 hyc genes participating in the formate hydrogenlyase reaction and a cluster of five genes coding for the homologues of degradation enzymes for aromatic hydrocarbons in Pseudomonas putida. We also noted a variety of novel genes, including two ORFs, which were homologous to the putative genes encoding xanthine dehydrogenase in the fly and a protein responsible for axonal guidance and outgrowth of the rat, mouse and nematode. An isoleucine tRNA gene, designated ileY, was also newly identified at 60.0 min.

Base Sequence

Selective expression of the receptor tyrosine kinase, HTK, on human erythroid progenitor cells.

HTK is a receptor tyrosine kinase of the Eph family. To characterize the involvement of HTK in hematopoiesis, we generated monoclonal antibodies against HTK and investigated its expression on human bone marrow cells. About 5% of the bone marrow cells were HTK+, which were also c-Kit+, CD34(low), and glycophorin A(-/low). Assays of progenitors showed that HTK+ c-Kit+ cells consisted exclusively of erythroid progenitors, whereas HTK- c-Kit+ cells contained progenitors of granulocytes and macrophages as well as those of erythroid cells. Most of the HTK+ erythroid progenitors were stem cell factor-dependent for proliferation, indicating that they represent mainly erythroid burst-forming units (BFU-E). During the erythroid differentiation of cultured peripheral CD34+ cells, HTK expression was upregulated on immature erythroid cells that corresponded to BFU-E and erythroid colony-forming units and downregulated on erythroblasts with high levels of glycophorin expression. These findings suggest that HTK is selectively expressed on the restricted stage of erythroid progenitors, particularly BFU-E, and that HTK is the first marker antigen that allows the purification of erythroid progenitors. Furthermore, HTKL, the ligand for HTK, was expressed in the bone marrow stromal cells. Our findings provide a novel regulatory system of erythropoiesis mediated by the HTKL-HTK signaling pathway.

Antibodies, Monoclonal

Effect of preoperative 5-fluorouracil on apoptosis of advanced gastric cancer.

BACKGROUND: Several studies have reported on apoptosis and the effect of anticancer chemotherapy. METHODS: We studied apoptosis induced by 5-fluorouracil (5-FU) given preoperatively to 28 patients with advanced gastric cancer and compared the findings with 101 untreated patients. The expression of bcl-2 oncoprotein, cell phase fractions, and histological chemotherapeutic effects were also compared with the apoptotic changes. RESULTS: The apoptotic and S-phase fractions in 5-FU-treated patients (apoptotic fraction: 10.46 +/- 6.93%, S-phase fraction: 17.49 +/- 11.65%) were significantly greater than those in untreated controls (apoptotic fraction: 6.56 +/- 5.06%, S-phase fraction: 12.17 +/- 6.78%). A positive correlation was observed between 5-FU-induced apoptosis and accumulation of tumor cells in the S-phase fraction. There was an inverse relationship between bcl-2 oncoprotein expression and apoptosis in 5-FU-treated patients, but no significant correlation between histological effect and apoptosis. However, two patients with significant histological effects showed no bcl-2 oncoprotein expression, whereas the histological effects were mild in all the bcl-2-positive patients. CONCLUSIONS: Apoptosis may be induced by 5-FU administered preoperatively and bcl-2 oncogene expression may suppress 5-FU-induced apoptosis.

Adenocarcinoma

Haemodynamic comparison of sevoflurane and isoflurane anaesthesia in surgical patients.

PURPOSE: To compare the haemodynamic responses to surgical incision during sevoflurane and isoflurane anaesthesia and to compare the haemodynamic effects of each anaesthetic alone with those obtained using an equipotent mixture of each anaesthetic plus N2O during steady-state surgical stimulation. METHODS: Twenty-four patients undergoing gastrectomy were randomized to receive sevoflurane (n = 12) or isoflurane (n = 12). At 1.5 MAC, haemodynamic measurements were performed before and after surgical incision. During intestinal anastomosis, patients in each group were given (in random order) either 1.5 MAC of the designated anaesthetic or 0.85 MAC of the volatile plus 0.65 MAC N2O. Haemodynamic measurements were repeated under each condition. RESULTS: One patient in the sevoflurane group and two in the isoflurane group were excluded from the incision study because of hypotension. In both groups, incision increased the heart rate (HR), mean arterial pressure, mean pulmonary arterial pressure (MPAP), pulmonary capillary wedge pressure (PCWP), cardiac index, and systemic vascular resistance index (SVRI). There were no intergroup differences in the effects of incision. Inclusion of N2O resulted in an increase of MPAP (P < 0.05) in both groups, an increase of central venous pressure and PCWP in the sevoflurane group (P < 0.005), and a decrease of HR (P < 0.005) and an increase of SVRI (P < 0.05) in the isoflurane group. There were no intergroup differences in the effects of N2O. CONCLUSIONS: At 1.5 MAC, sevoflurane and isoflurane do not prevent the haemodynamic response to incision. The haemodynamic effects of each volatile anaesthetic with N2O are minimal compared with those of equi-MAC volatile alone.

Adult

Lidocaine tape relieves pain due to needle insertion during stellate ganglion block.

PURPOSE: To investigate the efficacy of lidocaine tape, a new preparation of lidocaine for cutaneous topical anaesthesia in the form of a self-adhesive tape, in alleviating the pain of needle insertion during stellate ganglion block. METHODS: In a double-blind, placebo controlled study, 30 adult outpatients undergoing stellate ganglion block were allocated to receive all of the following five treatments in random order: placebo tape applied to the intended site of the block (control), or lidocaine tape applied for 7, 15, 30, and 60 min. After the block was performed using a 24-gauge needle, the pain associated with needle insertion was assessed using a visual analogue scale (10 cm VAS) and the four-point verbal rating score (VRS 0-3). RESULTS: With placebo tape, the VAS and VRS scores were 2.4 +/- 1.27 (0.5-4.8) (mean +/- SD (range)) and 1.5 (1-2) (mean (range)), respectively. The pain scores were reduced (P < 0.01) by lidocaine tape after application for 7 min (1.6 +/- 1.06 and 1.0 (0-2) for VAS (mean +/- SD) and VRS (mean (range)), respectively), 15 min (1.5 +/- 1.00 and 1.0 (1-2)), 30 min (1.5 +/- 1.08 and 1.0 (1)), and 60 min (0.6 +/- 0.70 and 0.6 (0-1)). Skin erythema was more frequent with lidocaine tape than with placebo tape (seven minutes of lidocaine tape vs placebo tape, P < 0.05; 15, 30, and 60 min of lidocaine tape vs placebo, P < 0.0005). CONCLUSION: Stellate ganglion block without analgesia is fairly painful in some patients, even when using a 24-gauge needle, and needle pain is reduced by lidocaine tape after an application time of seven minutes or more.

Adult

Catabolite repression by glucose 6-phosphate, gluconate and lactose in Escherichia coli.

While catabolite repression by glucose has been studied extensively and is understood in large detail in Enterobacteriaceae, catabolite repression by carbohydrates that are not transported by the phosphotransferase system (PTS) has always remained an enigma. Examples of non-PTS carbohydrates that cause catabolite repression in Escherichia coli are gluconate, lactose and glucose 6-phosphate. In this article it is shown that enzyme IIA(Glc) of the PTS is not involved in catabolite repression by these carbon sources. Carbon sources that caused strong catabolite repression of beta-galactosidase lowered the concentration of both cAMP and the cAMP receptor protein (CRP). A strong correlation was found between the amounts of cAMP and CRP and the strength of the repression. The levels of cAMP and CRP were modulated in various ways. Neither overproduction of CRP nor an increased cAMP concentration could completely relieve the repression by glucose 6-phosphate, lactose and gluconate. Simultaneously increasing the cAMP and the CRP levels was lethal for the cells. In a mutant expressing a constant amount of cAMP-independent CRP* protein, catabolite repression was absent. The same was found in a mutant in which lac transcription is independent of cAMP/CRP. These results, combined with the fact that both the cAMP and the CRP levels are lowered by glucose 6-phosphate, lactose and gluconate, lead to the conclusion that the decreased cAMP and CRP levels are the cause of catabolite repression by these non-PTS carbon sources.

Adenylyl Cyclases

Microtubule dynamics regulates the level of endothelin-B receptor in rat cultured astrocytes.

We investigated the effect of cytoskeleton modulators on endothelin-B (ET(B)) receptor expression in rat primary cultured astrocytes. Northern blot analysis and a binding study revealed that colchicine and nocodazole, microtubule-disrupting agents, decreased the levels of both ET(B) receptor mRNA and the number of ET-1 binding sites in quiescent astrocytes. Down-regulation of both ET(B) receptor mRNA and the number of binding sites for ET-1 was also observed in quiescent astrocytes treated with taxol, a microtubule-stabilizing agent. In contrast, neither beta-lumicolchicine, an inactive isomer of colchicine, nor cytochalasin D, a microfilament-disrupting agent, influenced ET(B) receptor expression. The level of ET(B) receptors in astrocytes was affected by the cell state, namely, proliferative, quiescent, or differentiated state. The order of ET(B) receptor expression according to the cell state was proliferative state < quiescent state << differentiated state induced by dibutyryl cyclic AMP. Also, in proliferative astrocytes and differentiated astrocytes, colchicine significantly down-regulated both ET(B) receptor mRNA and the number of binding sites for ET-1. However, thymidine assay revealed that colchicine did not change quiescent astrocytes and differentiated astrocytes to a proliferative state. Furthermore, the increase in glutamine synthetase activity in differentiated astrocytes was not affected by colchicine. These results suggest that microtubule dynamics possibly regulates ET(B) receptor expression in astrocytes without affecting the cell state.

Animals

Alcoholism and gene polymorphisms related to central dopaminergic transmission in the Japanese population.

We examined the association between gene polymorphisms related to central dopaminergic transmission and alcoholism in the Japanese population. Polymorphic gene loci examined included those encoding the dopamine D2 receptor (NcoI site and Ser-Cys site), the dopamine D3 receptor (BalI site), the dopamine D4 receptor (48 bp tandem repeat) and the dopamine transporter (40 bp tandem repeat). The genotype distribution at the NcoI site in the dopamine D2 receptor gene differed significantly (p < 0.5) between alcoholic patients and control subjects. The frequency of 7 repeats at the 40 bp/DAT tended to be higher (p < 0.1), and that of 9 repeats tended to be lower (p < 0.1) in alcoholic patients than in control subjects. The possible effects of dopamine-related gene polymorphisms, which might predispose individuals to alcoholism, are discussed.

Alcoholism

Induction of a particular deletion in mitochondrial DNA by X rays depends on the inherent radiosensitivity of the cells.

We examined whether X radiation induces a particular deletion in the mitochondrial DNA (mtDNA) of the cells of two human squamous cell carcinoma lines with different sensitivity to radiation and in a radiosensitive ataxia telangiectasia (AT) cell line. We used polymerase chain reaction (PCR) to quantify the accumulation of a particular 4977-bp deletion (delta mtDNA4977). PCR products of delta mtDNA4977 were detectable after exposure to 10 Gy in the radioresistant squamous cell carcinoma cells, 2 Gy in the radiosensitive squamous cell carcinoma cells and 1 Gy in the radiosensitive AT cells. These observations suggest that ionizing radiation induces the delta mtDNA4977 in human cells and that the radiation doses required to induce this deletion reflect the sensitivity of cells to radiation.

Carcinoma, Squamous Cell

A 570-kb DNA sequence of the Escherichia coli K-12 genome corresponding to the 28.0-40.1 min region on the linkage map.

The 569,750 base pair sequence corresponding to the 28.0-40.1 min region on the genetic map of Escherichia coli K-12 (W3110) was determined. This region includes the replication terminus region and contained at least 549 potential open reading frames. Among them, 160 (29%) were previously reported, 174 (32%) were homologous to other known genes, 102 (18%) were identical or similar to hypothetical genes registered in databases, and the remaining 113 (21%) did not show a significant similarity to any other gene. Of interest was the finding of a large number of genes and gene clusters in and near the replication termination region which had been thought to be genetically silent. Those included a cluster of genes for fatty acid beta-oxidation, the third copy of the pot (spermidine/putrescine transport system) gene cluster, the second dpp (dipeptide transport system) operon, the second dsm (anaerobic dimethyl sulfoxide reductase) operon, a cluster of fim (fimbrial) genes and a DNA helicase-like gene with a high molecular weight. In addition, we found the dnaC- and dnaT-like genes in the cryptic prophage, Rac, and a number of genes originated probably from plasmids.

Chromosome Mapping

A 460-kb DNA sequence of the Escherichia coli K-12 genome corresponding to the 40.1-50.0 min region on the linkage map.

The 465,813 base pair sequence corresponding to the 40.1-50.0 min region on the genetic map of Escherichia coli K-12 (W3110) was determined. Analysis of the sequence revealed that this region contained at least 466 potential open reading frames, of which 187 (40%) were previously reported, 105 (23%) were homologous to other known genes, 103 (22%) were identical or similar to hypothetical genes registered in databases, and the remaining 71 (15%) did not show a significant similarity to any other gene. At the 45.2-46.0 min region, we found a very large cluster of about 30 genes, whose functions are involved in the biosynthesis of polysaccharides as the components of outer membranes. In addition, we identified a new asn-tRNA gene, designated asnW, between the asnT and asnU genes and a new lysogenic phage attachment site as the cis-element.

Attachment Sites, Microbiological

Down regulation of cAMP production by cAMP receptor protein in Escherichia coli: an assessment of the contributions of transcriptional and posttranscriptional control of adenylate cyclase.

Escherichia coli cells that are deficient in the cAMP receptor protein (CRP) overproduce cAMP. We and others have previously found that transcription of the adenylate cyclase gene (cya) is negatively regulated by the CRP-cAMP complex. Here, we have investigated the contribution of this transcriptional regulation to the control of cAMP levels. Several variants of the cya gene have been constructed and characterized with respect to their expression and their ability to produce cAMP. Overproduction of cAMP in a crp- background was reduced from 200-fold to 50-fold when transcriptional regulation by CRP-cAMP was eliminated by replacing the cya promoter with the constitutive bla promoter. When the C-terminal 48 amino acids of adenylate cyclase were deleted without changing the promoter, the degree of overproduction of cAMP was reduced to 4-fold. Finally, the increase in cAMP level observed in crp- cells was almost completely abolished when the truncated cyclase was expressed from the bla promoter. We conclude that transcriptional regulation of cya does indeed play a role in the down-regulation of cAMP production by CRP, although the major regulation is exerted at the posttranscriptional level. The C-terminal region comprising the last 48 amino acids of cyclase is responsible for the posttranscriptional regulation. A simple new method for the determination of cAMP is also described.

Adenylyl Cyclases