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Biomedical subjects

S Morimoto

Publications and source records attributed to S Morimoto.

At least 37 records · Page 2Linked to original sources

Molecular cloning and functional expression analysis of a cDNA for human hepassocin, a liver-specific protein with hepatocyte mitogenic activity.

By means of differential cDNA expression cloning, we earlier isolated a novel rat cDNA and its protein, named hepassocin, which is upregulated during liver regeneration. Using the rat cDNA as a probe, we have now isolated human hepassocin cDNA encoding a protein of 312 amino acids, which has 81.4% and 83.8% identity, respectively, to rat hepassocin before and after elimination of its signal peptide. Dot blot analysis revealed that hepassocin mRNA was strongly expressed in adult liver, fairly strongly in fetal liver, and weakly in pancreas, but not in other tissues. Recombinant human hepassocin produced in Chinese hamster ovary (CHO) cells by the dihydrofolate reductase-methotrexate (DHFR--MTX) gene amplification method is a homodimer (68 kDa) and has mitogenic activities in hepatocytes of various animal species including rat, mouse, rabbit and dog, and the activity was lost with 2-mercaptoethanol treatment. These results suggest that hepassocin is a potent regulator in liver cell growth not only in rats but also in humans. Computer searches revealed that human hepassocin as well as rat hepassocin has a characteristic disulfide structure close to that of fibrinogen-gamma. We assume that this newly identified growth factor exerts functions in association with an extracellular matrix such as fibrinogen.

Amino Acid Sequence↗

Insulin gene expression pattern in rat pancreas during the estrous cycle.

Sex steroid hormones influence insulin homeostasis and glucose metabolism, estradiol (E2) and progesterone (P4) induce changes in both fasting and postprandial insulinemia in rodents, however, insulin gene expression during estrous cycle is unknown. The aim of the present study was to determine an insulin gene expression pattern during the estrous cycle in the rat. Groups of 6 adult rats in each day of the estrous cycle were used. Serum P4, E2, testosterone (T) and insulin concentrations were determined by radioimmunoassay (RIA). A Northern blot analysis was performed to assess insulin gene expression in pancreatic tissue. We found a marked variation in insulin gene expression during the estrous cycle. The highest insulin expression was observed during the proestrus day. Interestingly, E2 and P4 but not T levels were correlated with changes in insulin mRNA content. The variations in serum insulin during the cycle were correlated with its mRNA content in pancreas. The overall results showed variations in serum insulin and insulin gene expression during estrous cycle of the rat that correlated with circulating E2 and P4 levels.

Animals↗

Calcitonin receptor gene polymorphism in japanese women: correlation with body mass and bone mineral density.

We have identified a polymorphism at position 1377 of the calcitonin receptor (CTR) gene which generates CC, CT, or TT genotype. In this study, the genotypes of the CTR and their relationship with the body height, the body weight, the bone mineral density (BMD), and osteocalcin levels were examined in 152 healthy Japanese women aged 16-43 years. The CTR genotypic frequencies in the Japanese population were 77.0% for CC, 20.4% for CT, and 2.6% for TT. The height, BMD, and osteocalcin levels were not significantly different among these three genotypes. The body weight adjusted for height in these three groups was significantly different in the order of TT, CT, and CC (P = 0.0454 by analysis of covariance). In combined analysis of the VDR genotype (B,b) and the CTR genotype (C,T), the body height was found to be significantly different between CCB and others (P = 0.0236). In addition, analysis of the CTR genotypic frequency using 64 blood samples from Japanese and 47 blood samples from Caucasians indicated that there was a significant difference between the two races (P < 0.0001). We found that C allele was predominant in the Japanese population, however, Caucasians have an almost equal ratio of the C and T. In conclusion, the CTR allele is one of the genetic factors regulating body weight in Japanese women.

Absorptiometry, Photon↗

A pH-sensitive interaction of troponin I with troponin C coupled with strongly binding cross-bridges in cardiac myofilament activation.

Slow skeletal muscle troponin I (ssTnI) expressed predominantly in perinatal heart confers a marked resistance to acidic pH on Ca(2+) regulation of cardiac muscle contraction. To explore the molecular mechanism underlying this phenomenon, we investigated the roles of TnI isoforms (ssTnI and cardiac TnI (cTnI)) in the thin filament activation by strongly binding cross-bridges, by exchanging troponin subunits in cardiac permeabilized muscle fibers. Fetal cardiac muscle showed a marked resistance to acidic pH in activation of the thin filament by strongly binding cross-bridges compared to adult muscle. Exchanging ssTnI into adult fibers altered the pH sensitivity from adult to fetal type, indicating that ssTnI also confers a marked resistance to acidic pH on the cross-bridge-induced thin filament activation. However, the adult fibers containing ssTnI or cTnI but lacking TnC showed no pH sensitivity. These findings provide the first evidence for the coupling between strongly binding cross-bridges and a pH-sensitive interaction of TnI with TnC in cardiac muscle contraction, as a molecular basis of the mechanism conferring the differential pH sensitivity on Ca(2+) regulation.

Actin Cytoskeleton↗

EGF family ligand-dependent phenotypic modulation of smooth muscle cells through EGF receptor.

The phenotypic modulation of smooth muscle cells (SMCs) is closely associated with the development and progression of various SMC diseases. We investigated the molecular mechanism of phenotypic modulation triggered by EGF family ligands using a primary culture system of differentiated SMCs. Among four EGF-receptor (EGFR) family members, the EGFR was solely activated by EGF, heparin-binding EGF (HB-EGF), transforming growth factor alpha (TGF alpha), epiregulin (ER), and betacellulin (BTC), resulting in induction of phenotypic modulation of SMCs. This effect was mediated through the coordinated activation of the extracellular signal-regulated kinase (ERK) and p38 mitogen-activated protein kinase (p38MAPK) pathways. These results suggest that EGF family ligand- and EGFR-triggered signaling pathways are critically involved in the phenotypic modulation of SMCs.

Animals↗

Vascular smooth muscle maintains the levels of Bcl-2 in endothelial cells.

Endothelial cells (ECs) play important roles in maintaining vascular homeostasis. Therefore, dysregulation of EC apoptosis may be involved in the mechanism of atherogenesis. Since recent evidence has shown that vascular endothelial growth factor (VEGF), an EC-specific growth factor, is released from vascular smooth muscle cells (VSMCs), we examined whether VSMCs can modulate EC apoptosis using a coculture system. Incubation of ECs with high levels of nitric oxide (NO) released by N-ethyl-2-[1-ethyl-2-hydroxy-2-nitrosohydrazino]-ethanamine, a NO releasing agent, resulted in apoptosis in association with decreased levels of Bcl-2, and increased levels of Bax, an accelerator of aoptosis. Exogenously added VEGF partially inhibited apoptosis and alterations of these bcl-2 family proteins induced by NO. On the other hand, NO-induced apoptosis and down-regulation of Bcl-2 in ECs were almost completely inhibited by coculturing with VSMCs. However, these inhibitory effects by VSMCs were suppressed by a neutralizing antibody against VEGF. In addition, overexpression of Bcl-2 prevented from NO-induced apoptosis in ECs. These findings indicate that VSMCs protect ECs from NO-induced apoptosis through inhibiting down-regulation of Bcl-2. Thus, vascular smooth muscle which releases EC survival factors including VEGF may play important roles in maintaining the levels of Bcl-2 in ECs.

Apoptosis↗

Progesterone receptor isoforms expression in the prepuberal and adult male rat brain.

Progesterone receptor (PR) isoforms expression was determined in several regions of the prepuberal and adult male rat brain by using reverse transcription coupled to polymerase chain reaction. Rats under a 14:10-h light-dark cycle, with lights on at 0600 h were used. We found that in the hypothalamus of prepuberal animals the expression of both PR isoforms was similar, whereas PR-A expression was higher than that of PR-B in adults. In the cerebellum PR-B expression was predominant in both prepuberal and adult rats. In both ages PR-A and PR-B exhibited a non-significant tendency to be predominant in the hippocampus and the preoptic area respectively. In the frontal cortex and the olfactory bulb PR isoforms were expressed at a similar level. These results indicate a differential expression pattern of PR isoforms in the male rat brain and suggest that the tissue-specific expression of PR-A and PR-B is important for the appropriate response of each cerebral region to progesterone.

Age Factors↗

Observation of untreated patients with neuroblastoma detected by mass screening: a "wait and see" pilot study.

BACKGROUND: Recent studies have indicated that mass screening for neuroblastoma detects tumors that otherwise would have regressed spontaneously without recognition. Therefore, we started an observation program for these patients to determine how frequently spontaneous regression occurs. PROCEDURE: Eighteen patients were detected by mass screening between June 1994 and December 1996. Eight of these cases matched the following criteria and entered the observation program: Stage I or II, less than 5 cm in diameter; no involvement of large vessels or organs; not difficult to resect; informed consent. If there were an increase in tumor size, an elevation of tumor markers, or evidence of metastasis, the tumor would be immediately resected. RESULTS: Five of the eight cases showed spontaneous regression. Although the remaining three tumors were resected 6-10 months after diagnosis, all patients survived without evidence of recurrence. CONCLUSIONS: At least 60% of neuroblastoma cases who entered our observation program regressed spontaneously.

Adrenal Gland Neoplasms↗

Functional consequences of the mutations in human cardiac troponin I gene found in familial hypertrophic cardiomyopathy.

Functional consequences of the six mutations (R145G, R145Q, R162W, DeltaK183, G203S, K206Q) in cardiac troponin I (cTnI) that cause familial hypertrophic cardiomyopathy (HCM) were studied using purified recombinant human cTnI. The missense mutations R145G and R145Q in the inhibitory region of cTnI reduced the intrinsic inhibitory activity of cTnI without changing the apparent affinity for actin. On the other hand, the missense mutation R162W in the second troponin C binding region and the deletion mutation DeltaK183 near the second actin-tropomyosin region reduced the apparent affinity of cTnI for actin without changing the intrinsic inhibitory activity. Ca(2+) titration of a fluorescent probe-labeled human cardiac troponin C (cTnC) showed that only R162W mutation impaired the cTnC-cTnI interaction determining the Ca(2+) affinity of the N-terminal regulatory domain of cTnC. Exchanging the human cardiac troponin into isolated cardiac myofibrils or skinned cardiac muscle fibers showed that the mutations R145G, R145Q, R162W, DeltaK183 and K206Q induced a definite increase in the Ca(2+)-sensitivity of myofibrillar ATPase activity and force generation in skinned muscle fibers. Although the mutation G203S also showed a tendency to increase the Ca(2+) sensitivity in both myofibrils and skinned muscle fibers, no statistically significant difference compared with wild-type cTnI could be detected. These results demonstrated that most of the HCM-linked cTnI mutations did affect the regulatory processes involving the cTnI molecule, and that at least five mutations (R145G, R145Q, R162W, DeltaK183, K206Q) increased the Ca(2+) sensitivity of cardiac muscle contraction.

Actins↗

Long-term results of rotational acetabular osteotomy in patients with slight narrowing of the joint space on preoperative radiographic findings.

Between 1975 and 1984, we performed rotational acetabular osteotomy in 22 female patients with painful hip dysplasia. At the time of surgery, the patients were in their twenties, and radiographs showed slight narrowing of the joint space. Of these patients, 15 were followed-up for 15 to 22 years (average, 19.8 years) after surgery. The preoperative severity of coxarthrosis in all 15 hips was graded as stage II, according to the classification of coxarthrosis advocated by the Japanese Orthopaedic Association. All 15 patients available for follow-up had had no additional operations on the operated side during the follow-up period. At the time of follow-up, the patients were aged 41 to 48 years (average, 44.3 years). Of the 15 patients, 12 had little or no pain and 14 could walk for more than 30 min without a cane; the severity of coxarthrosis was graded stage I in 3 hips, stage II in 4 hips, stage III in 5 hips, and stage IV in 3 hips. We conclude that rotational acetabular osteotomy is efficacious for patients who have preoperative radiographic findings of slight narrowing of the joint space.

Acetabulum↗

Cellular responses by exposure to heavy-ions.

To better understand cellular responses in human lymphoblastoid cell TK6 after exposure to C-ion (22 keV/micrometer) and Fe-ion (1000 keV/micrometer), both protein induction and cell-cycle progression have been extensively analyzed by the recently developed techniques. While proceeding this line of analyses, we realized the importance of studying low-dose effect, in relation to the genetic alterations. Adaptive response by 5~20 cGy of such C- or Fe-ion irradiation to both lethal and mutagenic effects of the challenging X-ray exposure (1~3 Gy) was difficult to be seen in this TK6 cells, but surprisingly, a relatively high level of p53 and its related proteins induction was observed after low-dose irradiations of heavy-ions. Here, we focus to introduce the above results of genetic and biochemical studies to elucidate the adaptive response.

Carbon↗

Reduction of white coat effect by cilnidipine in essential hypertension.

Stress elevates blood pressure (BP) by increased sympathetic nerve activity. Cilnidipine, a novel dihydropyridine calcium antagonist that has inhibitory actions on N-type as well as L-type voltage-dependent calcium channels, has been reported to attenuate the cold stress-induced increase in plasma norepinephrine and BP in rats. Because white coat effect is associated with an enhanced pressor response to mental stress, we postulated that cilnidipine would attenuate white coat effect in patients with essential hypertension. Sixty-one consecutive outpatients (50 men, 11 women) with essential hypertension were studied prospectively. Twenty-nine patients were treated with either cilnidipine (n = 15) or nifedipine, a representative L-type voltage-dependent calcium antagonist (n = 14). Gender, age, body mass index, duration of hypertension, target organ damage of hypertension, and BP and heart rate (HR) were not significantly different between cilnidipine and nifedipine groups, and both systolic (SBP) and diastolic BP (DBP) were significantly decreased after treatment in both groups. White coat effects on systolic and DBP and HR were not significantly different between groups before antihypertensive treatment. Cilnidipine, but not nifedipine, significantly reduced white coat effects on SBP and HR. Furthermore, white coat effects on systolic BP and HR were significantly lower after treatment in the cilnidipine group compared with the nifedipine group. These data suggest that cilnidipine may reduce white coat effect in hypertensive patients by N-type calcium channel antagonism.

Blood Pressure↗

Discharge properties of human motor units during sustained contraction at low level force.

The characteristic of discharge behaviors of motor units (MUs) during low level contraction was investigated. The discharge of MUs in the m. vastus medialis was observed during the sustained contraction at 4 different levels below 10% MVC (2, 4, 8 and 10% MVC) for 15 min. The spike interval of all observed MUs gradually elongated during an initial several minutes of the contraction and the characteristic discharge patterns following the elongation were observed. i.e. continuous discharge throughout the contraction (CONT), decruitment (D-N), and re-recruitment following decruitment (D-REC). The relationship between recruitment threshold force (F(th)) and discharge pattern was not significant at 2% MVC but, at 10% MVC, there were significant differences in F(th) between D-N and CONT, and between D-REC and CONT MU populations. In pooled data, the MUs with the shorter mean spike interval at the beginning of the contraction (MSI(0), below 90 ms) tend to discharge continuously, but the MUs with longer MSI(0) showed various discharge patterns. In conclusion, during low level contraction MUs discharge characteristically, and the MU with high excitation levels tend to discharge continuously, but individual MU represents an intrinsic discharge pattern at not a high excitation level.

Action Potentials↗

Late male-killing phenomenon found in a Japanese population of the oriental tea tortrix, Homona magnanima (Lepidoptera: Tortricidae).

A female-biased sex ratio was found in the oriental tea tortrix, Homona magnanima (Lepidoptera: Tortricidae), in Tsukuba, Ibaraki, Japan. There was no difference in mean egg hatch between the all-female and normal strains. Greater than 50% mortality was observed in the all-female strain larvae, suggesting that female-only broods are produced as a result of late male-killing. The female-biased sex ratio was maternally inherited and maintained, even when females were backcrossed with males of the normal strain, thus implicating cytoplasmic parasitism as its cause. The phenomenon was persistent in the presence of antibiotics, and was not due to infection by agents that cause other male-killing phenomena, such as Rickettsia, Wolbachia, Spiroplasma, or protozoan parasites. When a homogenate of dead male larvae of the all-female strain was inoculated in normal-strain larvae, this male-killing trait was transmitted to the next generation; thus, its causative agent is probably transmitted horizontally as well.

Animals↗

Effects of troponin T mutations in familial hypertrophic cardiomyopathy on regulatory functions of other troponin subunits.

We have previously shown that mutations in troponin T (TnT), which is associated with familial hypertrophic cardiomyopathy (HCM), cause an increase in the Ca(2+) sensitivity and a potentiation of cardiac muscle contraction. To gain further insight into the patho-physiological role of these mutations, four mutations (Arg92Gln, Phe110Ile, Glu244Asp, Arg278Cys) were introduced into recombinant human cardiac TnT, and the mutants were exchanged into isolated porcine cardiac myofibrils. The effects of mutations were tested on maximal ATPase activity, the inhibitory function of troponin I (TnI) in the absence of troponin C (TnC), and the neutralizing function of TnC. Arg92Gln, Phe110Ile, and Glu244Asp markedly impaired the inhibitory function of TnI. Arg278Cys also impaired the inhibitory function of TnI, but the effect was much smaller. Phe110Ile and Glu244Asp markedly enhanced the neutralizing function of TnC and potentiated the maximum ATPase activity. Arg92Gln and Arg278Cys only slightly enhanced the neutralizing function of TnC, and they conferred no potentiation on the maximum ATPase activity. These results indicate that mutations in TnT impair multiple processes of Ca(2+) regulation by troponin, and there are marked differences in the degree of impairment from mutation to mutation.

Adenosine Triphosphatases↗

Combined intertrochanteric valgus and rotational acetabular osteotomy.

Results are reported for combined intertrochanteric valgus and rotational acetabular osteotomies in 18 dysplastic hips (17 patients), involving two types of femoral head and neck deformities, after an average followup of 13 years (range, 8.9-22.6 years). The mean age of the patients at the time of surgery was 25 years (range, 11-36 years). Pain was the indication for surgery in all patients. The preoperative deformities were classified into two groups. Hips in Group I had an angular head and a normal or valgus neck. Hips in Group II had an ovoid head, a short neck in varus angulation, and relative overgrowth of the greater trochanter. There were seven hips (seven patients) in Group I, and 11 hips (10 patients) in Group II. The sum of the most recent pain score and gait score of Merle d'Aubigné (a full score of 12 points) was 11 to 12 points for seven of 11 hips of Group II, and 11 to 12 points for only one of the seven hips of Group I. For patients with hip pain in Group II, this operation fairly consistently relieves pain for at least an average of 13 years, but whether the rate of development of osteoarthrosis is retarded is not known.

Acetabulum↗

Testosterone effect on insulin content, messenger ribonucleic acid levels, promoter activity, and secretion in the rat.

Coexistence of hyperinsulinemia and hyperandrogenism in women has been frequently described. Most of the studies addressing this issue have focused on the mechanisms by which insulin produces hyperandrogenism. In the present study, we analyzed the effects of testosterone in vivo and in vitro upon insulin gene expression and release in the rat. Our studies demonstrate that testosterone increases insulin messenger RNA (mRNA) levels in vitro as well as in vivo. In both prepuberal and intact adult rats, serum testosterone concentrations were positively correlated with insulin mRNA levels and insulin concentration in serum. Testosterone deprivation after gonadectomy decreased both insulin gene expression and serum insulin concentration. Insulin mRNA levels were partially restored after 3 days of testosterone administration and serum insulin was 80% and 27% above baseline values at 5 and 7 days posttreatment. Primary cultured pancreatic islets treated with the sexual steroid increased about 80% insulin mRNA, as well as protein, and release. In transfected islets, testosterone increased the activity of the -410 bp rat insulin promoter I by 154%. These data demonstrate that testosterone has a direct effect upon pancreatic islet function by favoring insulin gene expression and release.

Adenoviridae↗