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Biomedical subjects

S Kudoh

Publications and source records attributed to S Kudoh.

At least 91 records · Page 5Linked to original sources

Phase I and pharmacologic study of docetaxel and irinotecan in advanced non-small-cell lung cancer.

PURPOSE: We conducted a phase I trial of docetaxel, a new antimicrotubule agent, combined with irinotecan (CPT-11), a topoisomerase I inhibitor. The aim was to determine the maximum-tolerated dose (MTD) of docetaxel combined with CPT-11, as well as the dose-limiting toxicities (DLTs) of this combination in advanced non-small-cell lung cancer (NSCLC) patients. PATIENTS AND METHODS: Thirty-two patients with stage IIIB or IV NSCLC were treated at 4-week intervals with docetaxel (60 minutes, day 2) plus CPT-11 (90 minutes, days 1, 8, and 15). The starting doses of docetaxel/CPT-11 were 30/40 mg/m(2), and doses were escalated in 10-mg/m(2) increments until the MTD was reached. RESULTS: The MTD of docetaxel/CPT-11 was 50/60 mg/m(2) (level 5A), or 60/50 mg/m(2) (level 5B). Neutropenia and diarrhea were the DLTs. CPT-11 did not affect the pharmacokinetics of docetaxel. There were 11 (37%) partial responses among 30 patients. The median survival time was 48 weeks, and the 1-year survival rate was 44.9%. CONCLUSION: The combination of docetaxel and CPT-11 seems to be active against NSCLC, with acceptable toxicity. The recommended dose for phase II studies is 50 mg/m(2) of CPT-11 (days 1, 8, and 15) and 50 mg/m(2) of docetaxel (day 2) administered every 28 days.

Adult↗

Interstitial pneumonia complicated by Sjögren's syndrome, Hashimoto's disease, rheumatoid arthritis and primary biliary cirrhosis.

A 66-year-old woman diagnosed as having Hashimoto's disease and rheumatoid arthritis manifested interstitial pneumonia. We diagnosed Sjögren's syndrome and primary biliary cirrhosis as complications in this case. Steroid therapy was relatively effective for the interstitial pneumonia which was in an active state; however, during tapering of the steroid, there was a relapse and also severe dry throat. Cyclophosphamide was added and was effective in the prevention of recurrence. Even after discontinuation of steroid therapy, her general condition is stabilized. It is very important to carefully investigate other organ involvement as a prognostic factor in cases in which there are multiple autoimmune diseases.

Aged↗

Altered expression and function of beta1 integrins in a highly metastatic human lung adenocarcinoma cell line.

In order to investigate the relationship between beta1 integrins and the metastatic ability of cancer cells, we established a novel and highly metastatic cell line designated PC9-f9 from a poorly metastatic human lung adenocarcinoma cell line (PC9) in nude mice. PC9-f9 cells showed higher invasive activity in the Matrigel invasion assay than PC9 cells. Additionally, in cell adhesion assays, PC9-f9 cells adhered to laminin more strongly than PC9 cells and, unlike PC9 cells, adhered to collagen type IV and fibronectin. FACS analysis showed expression of the integrins alpha2beta1, alpha3beta1 and alpha6beta1 on both of the cell lines but alpha4beta1 and alpha5beta1 were neo-expressed on PC9-f9 cells. In cell adhesion inhibition assays, alpha3beta1 was the major laminin receptor for PC9 cells but not for PC9-f9 cells. Alternatively, PC9-f9 cells adhered to collagen type IV via alpha2beta1 and adhered to fibronectin mainly via alpha5beta1 but also moderately via alpha4beta1. The pretreatment of PC9-f9 cells with anti-beta1 monoclonal antibodies suppressed lung metastases by more than 50%. These data suggest that the altered expression and function of beta1 integrins allow PC9-f9 cells to become more adhesive and invasive, and lead to increased metastatic potential.

Adenocarcinoma↗

[Two case reports of unilateral adrenal hyperplasia with contralateral renal cell carcinoma].

We report two cases of unilateral adrenal hyperplasia with contralateral renal cell carcinoma. First case was a 66-year-old man with right renal mass who came to our hospital for study. Although no major symptoms were complained, blood pressure was consistently above normal. Hypokalemia, low plasma renin activity and high plasma aldosterone level were detected. CT revealed that he had a right renal mass and a left adrenal tumor. Preoperative diagnosis was right renal tumor and primary aldosteronism due to left adrenal adenoma. Second case was a 59-year-old man with right renal mass who also came to our hospital for study. He also had a left adrenal tumor, however his blood pressure was normal and serum hormonal analysis showed normal adrenal cortical function. Preoperative diagnosis was right renal tumor and non-functional left adrenal adenoma. Two patients were performed right radical nephrectomy with contralateral adrenarectomy. Pathological diagnosis were right renal cell carcinoma and left adrenocortical hyperplasia. One Patient clinically showed primary aldosteronism and the other had no clinical symptoms. These patients were rare cases with unilateral adrenal hyperplasia.

Adrenal Hyperplasia, Congenital↗

Phase I trial of oral 2'-deoxy-2'-methylidenecytidine: on a daily x 14-day schedule.

2'-deoxy-2'-methylidenecytidine (DMDC) is a potent deoxycytidine analogue. Preclinical studies of DMDC demonstrated activity against a variety of murine and human tumors in cell cultures and murine models and indicate enhanced antitumor activity of DMDC when it was administered in a manner that provided prolonged systemic exposure. In view of this observation, this study was designed to determine the toxicities, maximum-tolerated dose, and pharmacokinetic profile of DMDC. DMDC was given p.o. under fasting conditions for 14 consecutive days every 4 weeks in patients with advanced solid tumors. The starting dose was 12 mg/m2/day. Pharmacokinetic studies were carried out on days 1 and 14 of the first cycle. Fourteen patients received 22 courses of DMDC. The dose-limiting toxicities were anorexia, leukopenia, thrombocytopenia, and anemia. General fatigue was the common nonhematological toxicity. The maximum-tolerated dose was 18 mg/m2/day, at which two of six patients developed grade 3 toxicities. This dose level could also be considered for Phase II testing with this schedule. At the 18-mg/m2/day dose level, the mean terminal half-life, maximum plasma concentration (Cmax), the area under the plasma drug concentration-time curve (AUC(0-infinity)) on day 1 were 1.7496 h, 112.9 ng/ml, and 399.8 ng x h/ml, respectively. Forty to 50% of the administered dose was recovered in the urine, indicating a good bioavailability and resulting significant systemic exposure to the drug, which may enable chronic oral treatment.

Adenocarcinoma↗

[Microscopic polyangiitis accompanying interstitial pneumonia with aluminum lung].

A 67-year-old man who had worked as an aluminum grinder had been given a diagnosis of pneumoconiosis. Ten years later, he was admitted with fever, dyspnea on exertion, and numbness. Chest roentgenograms showed linear-reticular shadows in both lower lung fields. ELISA-based tests were positive for perinuclear anti-neutrophil cytoplasmic antibody (P-ANCA). Renal biopsy specimens disclosed crescentic glomerulonephritis and angiitis of small arteries. Our diagnosis was microscopic polyangiitis accompanying interstitial pneumonia with aluminum lung. The results of high-energy dispersion X-ray microanalysis indicated that the patient's lungs contained aluminum. His general condition improved with the administration of corticosteroid and immunosuppressive agents, and his chief symptoms disappeared.

Aged↗

[Pilot study of dose intensive weekly chemotherapy followed by cisplatin plus etoposide with concurrent thoracic irradiation for limited-disease small-cell lung cancer. West Japan Thoracic Oncology Group].

It was reported from a previous randomized trial (NEJM 329: 1848, 1993) that a moderate increase in the initial dose of cyclophosphamide and cisplatin improves the survival of patients with LDSCLC. Rapid administration of several active agents over a short treatment period, such as the CODE regimen, is a potentially usefully strategy for increasing the initial dose intensity. Based on these findings, we conducted a pilot study of CODE (C: 25 mg/m2, day 1, weeks 1-4, O: 1 mg/m2, day 1, weeks 2, 4, D: 40 mg/m2, day 1, weeks 1, 3, E: 80 mg/m2, days 1-3, weeks 1, 3) chemotherapy for the first 4 weeks followed by PE therapy (P: 80 mg/m2, day 1, E: 100 mg/m2, days 1-3, for 3 cycles) with concurrent TRT (1.5 Gy bid x 30 fr., total 45 Gy) to treat LDSCLC. From June 1996 through September 1996, 23 patients (pts) were enrolled, among whom 22 were eligible. The patients' characteristics were as follows: median age 65; M/F, 15/7; PS, 0/1/2,9/9/4; Stage II/IIIA/IIIB, 3/8/11. The relative dose intensities in the CODE phase for patients who received this treatment were 107% for P and 156% for E, compared with standard PE therapy. No treatment related death occurred in this series. Myelosuppression was the most frequent toxicity in both treatments. Grade 3 and 4 leukopenia and neutropenia occurred in 73% and 86% of patients in the CODE phase, and in 83% and 91% in the PE phase, respectively. Thrombocytopenia occurred in 14% of the patients in the CODE phase and in 37% in the cisplatin-etoposide phase. Other non-hematological toxicities were mild. There was no severe esophagitis or pneumonitis following radiation therapy. CR was observed in 13 (59%) of the 22 patients, and 9 (41%) patients showed PR, giving an overall response rate of 100%. A median survival time has not yet been ascertained. Our preliminary results indicate that CODE therapy followed by PE therapy with concurrent TRT has very high activity with acceptable toxicities. This treatment regimen should be compared with PE therapy and concurrent TRT in a randomized trial.

Adult↗

[Mechanism of resistance to growth inhibition by transforming growth factor-beta 1 (TGF-beta 1) in primary lung cancer and new molecular targets in therapy].

Transforming Growth Factor-beta 1 (TGF-beta 1) regulates the proliferation of normal epithelial cells, and resistance to TGF-beta 1 growth inhibition is a common feature of human cancers including lung cancer. In order to understand the mechanism of resistance to growth inhibition by TGF-beta 1 and to reverse the regulation of proliferation in lung cancer, we determined the genomic structure of the genes involved in the signal transduction pathway of TGF-beta 1 and performed an initial mutation survey of the complete coding region of the genes in lung cancer and cell lines with the resistance to growth inhibition by TGF-beta 1. First, a mutation analysis of the TGF-beta type II receptor (TGF-beta RII) was performed. Point mutations of the gene were detected in several colon cancers and an adenocarcinoma of the lung in the poly-A sequence. No mutations of Smad 2, 3, 4, 5 and TGF-beta type I receptor (TGF-beta IR) genes were detected in a series of the tumors we tested, although several mutations of Smad 2 and 4 were previously reported. Frequent alterations of the p15 gene and reduced expression of p21 we already reported from our previous studies. We also determined the genomic structure of the mannose 6-phosphate/insulin-like growth factor 2 receptor (M6P/IGF2R), which is involved in activating TGF-beta 1, and performed an initial mutation survey of the complete coding sequences of the gene. A point mutation at exon 40 was found in one lung adenocarcinoma cell line. In summary, alterations in the many genes involved in the signal transduction of TGF-beta 1 were found and may mediate the loss of TGF-beta 1 responsiveness in lung cancer. The molecular targets for the regulation of the proliferation of lung cancer are thought to be p15, p21 and the transcriptional regulators.

Cell Division↗

Irinotecan in small-cell lung cancer--Japanese trials.

Irinotecan has appeared to have significant activity against previously treated and untreated small-cell lung cancer (SCLC). The major toxicities of irinotecan are neutropenia and diarrhea, although there is interpatient variability in the severity of symptoms. The combination of irinotecan and cisplatin is likewise significantly active against SCLC, with an acceptable toxicity profile. A phase III study comparing irinotecan and cisplatin with etoposide and cisplatin has been conducted in the treatment of previously untreated patients with extensive disease SCLC. The results of this study may define a new standard care for SCLC. Irinotecan and etoposide is also an active new combination in the treatment of both previously treated or untreated SCLC. Neutropenia was the most commonly observed toxicity in this combination; there were no severe gastrointestinal toxicities, including diarrhea.

Antineoplastic Agents, Phytogenic↗

Increase in the frequency of p16INK4 gene inactivation by hypermethylation in lung cancer during the process of metastasis and its relation to the status of p53.

The p16INK4 gene, which is a tumor suppressor gene, is frequently altered in lung cancers. Hypermethylation of the promoter region of the p16INK4 gene seems to be the major mechanism through which p16INK4 become inactivated. Hypermethylation of the p16INK4 gene was reported to occur at an early stage in lung cancer. To determine whether the change in p16INK4 methylation status occurs at the late stage in the progression of primary lung cancers, we analyzed the primary and metastatic tumor tissues and normal lung samples from 29 cases of advanced lung cancer with distant metastasis. In each tissue sample, we analyzed the p16INK4 and p15INK4b genes for mutations and the methylation status of both genes using PCR-single strand conformation polymorphism, direct sequencing, and methylation-specific PCR analysis. We also analyzed a subset of the samples for p16INK4 protein expression. Genetic mutations in the coding region of the p16INK4 and p15INK4b genes were not found in any of the examined specimens. The promoter region of the p16INK4 gene was hypermethylated in the tumor samples of the primary or metastatic site of 37.0% (10 of 27) of the subjects. The promoter region of the p16INK4 gene was hypermethylated at both the primary and metastatic sites in two of the 10 cases and at only the metastatic site in 8 cases. By immunohistochemical analysis, we confirmed the presence of p16INK4 protein at the primary site of all cases in which the promoter region of the p16INK4 gene was hypermethylated at only the metastatic site. Interestingly, all 8 cases with a hypermethylated p16INK4 promoter region, at only the metastatic site, did not have p53 mutation. The results of this study indicate that tumor cells in which the p16INK4 gene has been inactivated by hypermethylation of the promoter region could have an advantage in progression and metastasis in non-small cell lung cancers, especially in the tumors with normal p53, and that the frequency of p16INK4 gene inactivation by hypermethylation could vary in clinical course.

Adenocarcinoma↗

Calcineurin plays a critical role in pressure overload-induced cardiac hypertrophy.

BACKGROUND: Cardiac hypertrophy is a fundamental adaptive response to hemodynamic overload; how mechanical load induces cardiac hypertrophy, however, remains elusive. It was recently reported that activation of a calcium-dependent phosphatase, calcineurin, induces cardiac hypertrophy. In the present study, we examined whether calcineurin plays a critical role in pressure overload-induced cardiac hypertrophy. METHODS AND RESULTS: Pressure overload produced by constriction of the abdominal aorta increased the activity of calcineurin in the rat heart and induced cardiac hypertrophy, including reprogramming of gene expression. Treatment of rats with a calcineurin inhibitor, FK506, inhibited the activation of calcineurin and prevented the pressure overload-induced cardiac hypertrophy and fibrosis without change of hemodynamic parameters. Load-induced expression of immediate-early-response genes and fetal genes was also suppressed by the FK506 treatment. CONCLUSIONS: The present results suggest that the calcineurin signaling pathway plays a pivotal role in load-induced cardiac hypertrophy and may pave the way for a novel pharmacological approach to prevent cardiac hypertrophy.

Animals↗

MAPK superfamily plays an important role in daunomycin-induced apoptosis of cardiac myocytes.

BACKGROUND: Although anthracyclines, such as daunomycin (DM) and adriamycin, are potent chemotherapeutic agents, they have serious adverse effects, including cardiac toxicity. In the present study, we investigated the molecular mechanisms of DM-induced cardiomyocyte impairment. METHODS AND RESULTS: When cultured cardiac myocytes of neonatal rats were exposed to 1 micromol/L DM for 24 hours, many cells became positive for TUNEL staining, with morphological changes characteristic of apoptosis. Fragmentation of DNA into oligonucleosome-size fragments was recognized by agarose gel electrophoresis in DM-treated myocytes. DM activated 3 members of the mitogen-activated protein kinase (MAPK) family dose-dependently, such as extracellular signal-regulated protein kinases (ERKs), c-Jun NH(2)-terminal kinases, and p38 MAPK in cardiac myocytes. Oxyradical scavengers or Ca(2+) chelators inhibited DM-induced activation of ERKs and p38 MAPK. DM-induced activation of ERKs was also inhibited by overexpression of dominant negative mutants of Ras (D.N.Ras), and the p38 MAPK activation was attenuated by D.N.Rho. The number of DM-induced apoptotic cells was markedly increased when the ERK signaling pathway was selectively blocked by a specific MAPK/ERK kinase inhibitor, PD98059, whereas pretreatment with a specific inhibitor of p38 MAPK, SB203580, significantly reduced the amount of apoptosis. CONCLUSIONS: These results suggest that DM activates MAPKs through reactive oxygen species and Ca(2+) and that the MAPK family plays important roles in DM-induced apoptosis in cardiac myocytes. ERKs protect cardiomyocytes from apoptosis, whereas p38 MAPK is involved in the induction of cardiomyocyte apoptosis.

Animals↗

pH-dependent uptake of irinotecan and its active metabolite, SN-38, by intestinal cells.

Irinotecan (CPT-11) and its active metabolite, 7-ethyl-10-hydroxycamptothecin (SN-38), are believed to be reabsorbed by intestinal cells and to enter the entero-hepatic circulation, but there is little information to date. Our objective was to investigate the intestinal transport of CPT-11 and SN-38 in correlation with their associated cytotoxicity. Using either isolated hamster intestinal epithelial cells or/and human colon carcinoma HT29 cells, the uptake rates of [(14)C]CPT-11 and [(14)C]SN-38, both as respective non-ionic lactone form at acidic pH and anionic carboxylate form at basic pH, were investigated by the rapid vacuum filtration technique. The effect of physiologic intestinal luminal pH (6.2-8.0) on the uptake rate and cytotoxicity of SN-38 were estimated by the above method and the 3-(4, 5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazolium bromide (MTT) assay, respectively. The lactone forms of CPT-11 and SN-38 were transported passively, while the respective carboxylate form was absorbed actively. Uptake rates of both lactones were significantly higher than those of their carboxylates. Under physiologic pH, the respective uptake rates of CPT-11 and SN-38 were pH sensitive and decreased significantly by around 65%, at pH greater than 6.8. Furthermore, with decreasing pH, a higher uptake rate of SN-38 into HT29 cells correlates with a greater cytotoxic effect (r = 0.987). CPT-11 and SN-38 have absorption characteristics of weakly basic drugs such as short-chain fatty acids, suggesting that alkalization of the intestinal lumen may be critical to reduce their reabsorption and associated side effects.

2,4-Dinitrophenol↗

Diesel exhaust particles induce NF-kappa B activation in human bronchial epithelial cells in vitro: importance in cytokine transcription.

Fine particles derived from diesel engines (diesel exhaust particles, DEP) have attracted attention, since their density in industrial countries seems related to the increased prevalence of pulmonary diseases. Previous studies have suggested that DEP have a potential to directly activate airway epithelial cells to produce and release inflammatory cytokines and mediators, and thus facilitate inflammatory responses in the lung. To elucidate the molecular mechanisms of their action, we studied here IL-8 gene expression, one of the important cytokines in inflammatory responses, by Northern blot analysis and run-on transcription assay. Suspended DEP (1-50 microgram/ml) increased the steady state levels of IL-8 mRNA, which was suggested to be largely due to increased transcriptional rates. Electrophoretic mobility shift assay demonstrated that DEP induced increased binding to the specific motif of NF-kappa B, but not of transcription factor AP-1. The luciferase reporter gene assay using wild-type and mutated NF-kappa B-binding sequences showed that DEP-induced NF-kappa B activation was involved in IL-8 transcription. Finally, both N-acetylcysteine and pyrrolidine dithiocarbamate attenuated the action of DEP on IL-8 mRNA expression, suggesting that oxidant-mediated pathway might be involved in its processes. These results suggested that DEP activate NF-kappa B, which might be an important mechanism of its potential to increase the expression of inflammatory cytokines in vitro.

Acetylcysteine↗

Both Gs and Gi proteins are critically involved in isoproterenol-induced cardiomyocyte hypertrophy.

Activation of beta-adrenoreceptors induces cardiomyocyte hypertrophy. In the present study, we examined isoproterenol-evoked intracellular signal transduction pathways leading to activation of extracellular signal-regulated kinases (ERKs) and cardiomyocyte hypertrophy. Inhibitors for cAMP and protein kinase A (PKA) abolished isoproterenol-evoked ERK activation, suggesting that Gs protein is involved in the activation. Inhibition of Gi protein by pertussis toxin, however, also suppressed isoproterenol-induced ERK activation. Overexpression of the Gbetagamma subunit binding domain of the beta-adrenoreceptor kinase 1 and of COOH-terminal Src kinase, which inhibit functions of Gbetagamma and the Src family tyrosine kinases, respectively, also inhibited isoproterenol-induced ERK activation. Overexpression of dominant-negative mutants of Ras and Raf-1 kinase and of the beta-adrenoreceptor mutant that lacks phosphorylation sites by PKA abolished isoproterenol-stimulated ERK activation. The isoproterenol-induced increase in protein synthesis was also suppressed by inhibitors for PKA, Gi, tyrosine kinases, or Ras. These results suggest that isoproterenol induces ERK activation and cardiomyocyte hypertrophy through two different G proteins, Gs and Gi. cAMP-dependent PKA activation through Gs may phosphorylate the beta-adrenoreceptor, leading to coupling of the receptor from Gs to Gi. Activation of Gi activates ERKs through Gbetagamma, Src family tyrosine kinases, Ras, and Raf-1 kinase.

Animals↗

Context-dependent transcriptional cooperation mediated by cardiac transcription factors Csx/Nkx-2.5 and GATA-4.

Although the cardiac homeobox gene Csx/Nkx-2.5 is essential for normal heart development, little is known about its regulatory mechanisms. In a search for the downstream target genes of Csx/Nkx-2. 5, we found that the atrial natriuretic peptide (ANP) gene promoter was strongly transactivated by Csx/Nkx-2.5. Deletion and mutational analyses of the ANP promoter revealed that the Csx/Nkx-2.5-binding element (NKE2) located at -240 was required for high level transactivation by Csx/Nkx-2.5. We also found that Csx/Nkx-2.5 and GATA-4 displayed synergistic transcriptional activation of the ANP promoter, and in contrast to previous reports (Durocher, D., Charron, F., Warren, R., Schwartz, R. J., and Nemer, M. (1997) EMBO J. 16, 5687-5696; Lee, Y., Shioi, T., Kasahara, H., Jobe, S. M., Wiese, R. J., Markham, B., and Izumo, S (1998) Mol. Cell. Biol. 18, 3120-3129), this synergism was dependent on binding of Csx/Nkx-2.5 to NKE2, but not on GATA-4-DNA interactions. Although GATA-4 also potentiated the Csx/Nkx-2.5-induced transactivation of the artificial promoter that contains multimerized Csx/Nkx-2.5-binding sites, Csx/Nkx-2.5 reduced the GATA-4-induced transactivation of the GATA-4-dependent promoters. These findings indicate that the cooperative transcriptional regulation mediated by Csx/Nkx-2.5 and GATA-4 is promoter context-dependent and suggest that the complex cis-trans interactions may fine-tune gene expression in cardiac myocytes.

Animals↗

Rho family small G proteins play critical roles in mechanical stress-induced hypertrophic responses in cardiac myocytes.

-Mechanical stress induces a variety of hypertrophic responses, such as activation of protein kinases, reprogramming of gene expression, and an increase in protein synthesis. In the present study, to elucidate how mechanical stress induces such events, we examined the role of Rho family small GTP-binding proteins (G proteins) in mechanical stress-induced cardiac hypertrophy. Treatment of neonatal rat cardiomyocytes with the C3 exoenzyme, which abrogates Rho functions, suppressed stretch-induced activation of extracellular signal-regulated protein kinases (ERKs). Overexpression of the Rho GDP dissociation inhibitor (Rho-GDI), dominant-negative mutants of RhoA (DNRhoA), or DNRac1 significantly inhibited stretch-induced activation of transfected ERK2. Overexpression of constitutively active mutants of RhoA slightly activated ERK2 in cardiac myocytes. Overexpression of C-terminal Src kinase, which inhibits functions of the Src family of tyrosine kinases, or overexpression of DNRas had no effect on stretch-induced activation of transfected ERK2. The promoter activity of skeletal alpha-actin and c-fos genes was increased by stretch, and these increases were completely inhibited by either cotransfection of Rho-GDI or pretreatment with C3 exoenzyme. Mechanical stretch increased phenylalanine incorporation into cardiac myocytes by approximately 1.5-fold compared with control, and this increase was also significantly suppressed by pretreatment with C3 exoenzyme. Overexpression of Rho-GDI or DNRhoA did not affect angiotensin II-induced activation of ERK. ERKs were activated by culture media conditioned by stretch of cardiomyocytes without any treatment, but not of cardiomyocytes with pretreatment by C3 exoenzyme. These results suggest that the Rho family of small G proteins plays critical roles in mechanical stress-induced hypertrophic responses.

Angiotensin II↗

Fusion of ETV6 to neurotrophin-3 receptor TRKC in acute myeloid leukemia with t(12;15)(p13;q25).

Chromosome translocations involving band 12p13 are known to be involved in a variety of hematologic malignancies, some of them resulting in rearrangement of the ETV6/TEL gene. Applying the fluorescence in situ hybridization (FISH) method, we found a cryptic translocation t(12;15)(p13;q25) in an adult acute myeloid leukemia (AML) patient. Hybridization with cosmid probes showed that the ETV6 gene was rearranged in this translocation. A patient-specific cDNA library was screened with ETV6 cDNA, and a novel fusion transcript was identified between the ETV6 and TRKC/NTRK3 gene located on 15q25. TRKC is a receptor tyrosine kinase that is activated by neurotrophin-3 (NT-3). It is known to be expressed broadly in neural tissues but not in hematologic cells, so far. ETV6-TRKC chimeric transcript encoded the pointed (PNT) domain of the ETV6 gene that fused to the protein-tyrosine kinase (PTK) domain of the TRKC gene. Two types of fusion transcript were determined, one that included the entire PTK domain of TRKC and the other in which the 3'-terminal 462 bp of TRKC was truncated within the PTK domain. Western blot analysis showed the expression of both chimeric proteins of 52 and 38 kD in size. Our results suggest that chimeric PTK expressed in the leukemic cells may contribute to cellular transformation by abnormally activating TRK signaling pathways. Moreover, this is the first report on truncated neurotrophin receptors associated in leukemia.

Acute Disease↗