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Biomedical subjects

Kohji Miyazaki

Publications and source records attributed to Kohji Miyazaki.

At least 55 records · Page 3Linked to original sources

Silencing effect of CpG island hypermethylation and histone modifications on O6-methylguanine-DNA methyltransferase (MGMT) gene expression in human cancer.

O6-methylguanine-DNA methyltransferase (MGMT) repairs the cytotoxic and mutagenic O6-alkylguanine produced by alkylating agents such as chemotherapeutic agents and mutagens. Recent studies have shown that in a subset of tumors, MGMT expression is inversely linked to hypermethylation of the CpG island in the promoter region; however, how the epigenetic silencing mechanism works, as it relates to hypermethylation, was still unclear. To understand the mechanism, we examined the detailed methylation status of the whole island with bisulfite-sequencing in 19 MGMT non-expressed cancer cell lines. We found two highly methylated regions in the island. One was upstream of exon 1, including minimal promoter, and the other was downstream, including enhancer. Reporter gene assay showed that methylation of both the upstream and downstream regions suppressed luciferase activity drastically. Chromatin immunoprecipitation assay revealed that histone H3 lysine 9 was hypermethylated throughout the island in the MGMT negative line, whereas acetylation on H3 and H4 and methylation on H3 lysine 4 were at significantly high levels outside the minimal promoter in the MGMT-expressed line. Furthermore, MeCP2 preferentially bound to the CpG-methylated island in the MGMT negative line. Given these results, we propose a model for gene silencing of MGMT that is dependent on the epigenetic state in cancer.

CpG Islands↗

Altered kinetics of pituitary response to gonadotropin-releasing hormone in women with variant luteinizing hormone: correlation with ovulatory disorders.

OBJECTIVE: The LH response of pituitary gland to gonadotropin-releasing hormone (GnRH) stimulation is not well defined in patients with mutant beta-subunit (Trp(8) to Arg(8) and Ile(15) to Thr(15)). Here we compared the relative activities and dynamics of LH secretion in patients with wild-type and variant LH following injection of GnRH. METHODS: A GnRH stimulation test was performed in 33 patients with ovulatory disorders (patient group) and 29 women with normal ovulatory cycles (control group) heterozygous for the variant LHbeta allele. Blood samples were obtained up to 120 min after GnRH injection. Serum LH response was determined by comparing the results of LH immunoassays using a monoclonal antibody that recognizes wild-type LH only with those of another assay using a polyclonal antibody that recognizes equally both variant and wild-type LH (total LH). The ratio of variant LH to total LH (LH ratio) was used to determine the serum LH status. RESULTS: The LH ratio in the control group showed the peak 15 min after GnRH injection, while that in the patient group showed the peaks 30-60 min after injection. The LH ratio in the patient group at 120 min after injection was significantly lower than that in the control group. The percent increases in LH ratio in both groups showed the peak 15 min after injection. The patient group had significantly lower changes of LH ratio at 15, 60, 90 and 120 min after GnRH injection compared with that in the control group. CONCLUSION: Differences in circulatory kinetics of the two types of LH may explain the differences in LH function between patients with ovulatory disorders and women with normal ovulatory cycles.

Adult↗

Evaluation of the antiangiogenic effect of Taxol in a human epithelial ovarian carcinoma cell line.

PURPOSE: Angiopoietin-1 (Ang-1) and angiopoietin-2 (Ang-2) are major ligands for the endothelium-specific tyrosine kinase receptor Tie-2 and are important regulators of endothelial cell survival. In the presence of vascular endothelial growth factor (VEGF), vessel destabilization by Ang-2 has been hypothesized to induce an angiogenic response, but in the absence of VEGF, Ang-2 leads to vessel regression. In the present study, a human ovarian cancer cell line was used to investigate the possibility that Taxol might affect the expression of Ang-1, Ang-2, and VEGF. MATERIALS AND METHODS: KF 28, a single-cell clone of a human ovarian epithelial carcinoma cell line, was used. The expression of Ang-1, Ang-2, and VEGF was assessed by quantitative real-time RT-PCR and Western blot analysis or enzyme-linked immunosorbent assay. Conditioned medium was used in the in vitro angiogenesis assay. RESULTS: The concentration of Taxol that inhibited the growth of cells to the level of 50% of control cell growth was 4.65+/-0.35 nM. Quantitative real-time RT-PCR indicated that Ang-1 gene expression was significantly decreased by exposure to 2 nM Taxol for 168 h ( P<0.05 vs control cells). Western blot analysis confirmed that the Ang-1 protein level was decreased by exposure to 2 nM Taxol for 168 h. Ang-2 gene expression did not significantly differ between control cells and those exposed to Taxol for any of the indicated times. The Ang-1/ Ang-2 gene expression ratio was significantly decreased by exposure to Taxol for 168 h ( P<0.05 vs control cells). VEGF gene expression was significantly decreased by exposure to Taxol for 168 h ( P<0.05). The VEGF concentration in the conditioned medium was also significantly reduced by exposure to Taxol for 168 h ( P<0.05). Conditioned medium collected following Taxol treatment for 168 h significantly inhibited endothelial tubule formation ( P<0.05). Cell growth did not significantly differ between control cells and those exposed to Taxol for any of the indicated times. CONCLUSIONS: Our results show that exposure of ovarian cancer cells to a low concentration of Taxol may inhibit the initiating event in angiogenesis, namely, vascular regression. This information might be valuable in the development of new therapeutic interventions for epithelial ovarian cancer.

Angiopoietin-1↗

Differential activation of the luteinizing hormone beta-subunit promoter by activin and gonadotropin-releasing hormone: a role for the mitogen-activated protein kinase signaling pathway in LbetaT2 gonadotrophs.

LH consists of alpha- and beta-subunits, and synthesis of the beta-subunit has been reported to be the rate-limiting step in LH production. In this study, we found that activin A increased both the LHbeta mRNA level and LH content in cells of the gonadotroph cell line, LbetaT2. We next examined the effects of activin A and GnRH on LHbeta promoter activity by reporter gene assay and compared the signal transduction pathways. Activin A and GnRH activated the LHbeta promoter, and the response to a combination of activin A and GnRH was higher than that to activin A or GnRH alone. The effects of activin A and GnRH were specifically inhibited by inhibin-like peptide and antide, a GnRH antagonist, respectively. The activation of the LHbeta promoter by GnRH was inhibited by PD098059 and U0126, MAP kinase kinase (MEK) inhibitors. In contrast, these protein kinase inhibitors did not inhibit the activin A-induced activation. GnRH, but not activin A, activated MAP kinase in LbetaT2 cells. Overexpression of constitutively active MEK1 or MEK kinase activated both MAP kinase and the LHbeta promoter. Furthermore, GnRH, but not activin A, strongly induced SRE-mediated transcription, a known target of the MAP kinase pathway. These results suggest that GnRH activates the LHbeta promoter via the MAP kinase pathway and that activin A-induced activation of the LHbeta promoter is independent of the MAP kinase pathway.

Activins↗

Dihydropyrimidine dehydrogenase in normal and malignant endometrium: relationship with cell proliferation and thymidine phosphorylase.

Dihydropyrimidine dehydrogenase (DPD) is a pyrimidine salvage enzyme responsible for degradation of thymine, which is produced from thymidine by thymidine phosphorylase (TP). Our purpose was to determine the relationship between DPD, cell proliferation and TP expression in human endometrium. We examined DPD gene expression using reverse transcription-polymerase chain reaction, DPD protein levels using enzyme-linked immunosorbent assay, and DPD protein localization using immunohistochemistry in 58 normal endometria and 28 endometrial cancers. DPD gene expression was then related to the proliferating cell nuclear antigen index and to TP gene expression. DPD gene expression, which was correlated with DPD protein level, was relatively stable throughout various menstrual phases but was significantly elevated in postmenopausal status. It was significantly lower in endometrial cancer than in normal endometrium. Localization analysis revealed that DPD protein was located primarily in epithelial cells, but was also present in stromal cells. DPD gene expression correlated inversely with the PCNA index. TP gene expression pattern contrasted with that of DPD in postmenopausal and malignant endometrium. A high ratio of TP to DPD gene expression was significantly more frequent in endometrial cancer than in normal endometrium in any menstrual phase. DPD may act cooperatively with TP to affect cell function by maintaining the pyrimidine nucleotide pool balance in normal and malignant endometrium.

Cell Division↗

Prognostic value of overexpression of p53 in human ovarian carcinoma patients receiving cisplatin.

A major obstacle to the treatment of ovarian carcinoma is intrinsic/acquired resistance to cisplatin-based chemotherapy. The clinical significance of p53 overexpression in patients with ovarian carcinoma is still controversial. The aim of this study was to investigate the independent prognostic significance of p53 overexpression in patients with ovarian carcinoma who are treated with cisplatin. We retrospectively examined the overexpression of p53 in primary ovarian carcinoma, and its association with chemotherapeutic efficacy. One hundred and thirty four ovarian carcinomas were surgically removed from patients who received adjuvant cisplatin-based chemotherapy. Immunohistochemical analysis of p53 was performed using a DO7 antibody against the p53 protein in 134 ovarian carcinomas. The significance of p53 in the prognosis of patients with ovarian carcinomas was also examined by a survival analysis of mortality follow-up data covering the period from 1988 to 2001. Thirty-three tumors (25%) exhibited p53 overexpression. Overexpression of p53 in grade 2/grade 3 tumors was significantly higher than that seen in grade 1 tumors (P=0.0088, 0.0229). Patients with tumors who also showed overexpression of p53 had a significantly inferior response to chemotherapy compared with the patients with p53-negative tumors (P=0.04). Cox regression analysis revealed that p53 overexpression was prognostic for poor disease outcome after adjustment for FIGO stage, grade and residual tumor. These findings suggest that overexpression of p53 in ovarian carcinoma is associated with unfavorable clinical outcome in patients treated with cisplatin-based chemotherapy. Therefore, detection of p53 overexpression using the DO7 antibody may be considered as a predictive marker of chemoresistance for cisplatin in patients with ovarian carcinoma.

Adult↗

Effects of E-cadherin transfection on gene expression of a gallbladder carcinoma cell line: repression of MTS1/S100A4 gene expression.

E-cadherin is important in cell-to-cell adhesion and controls cell polarity and tissue morphology. Loss of E-cadherin expression occurs in various human tumors and is the first step in cancer invasion and metastasis. We demonstrate that the exogenous expression of E-cadherin transfected into G-415 GB cells not only increases cell-to-cell adhesion but also reduces in vitro cell proliferation, motility and invasion. Our aim was to determine what genes are most affected by the exogenous expression of E-cadherin in GB cancer cells. We analyzed gene expression pertaining to cell proliferation, motility and invasion. Conventional RT-PCR was performed for these genes; quantitative RT-PCR was carried out on genes exhibiting altered expression. Conventional RT-PCR revealed that E-cadherin transfection suppressed expression of mts1 mRNA and increased that of c-myc and MT1-MMP. In quantitative RT-PCR analysis, levels of c-myc and MT1-MMP mRNA were elevated by to 2.56- and 2.22-fold, respectively, in the E-cadherin transfectant, whereas mts-1 was 7.14-fold suppressed compared to parental cells. These results indicated that expression of mts1 mRNA was most affected by E-cadherin transfection. Immunocytochemical analysis of transfectant and parental cells demonstrated an inverse correlation in E-cadherin and mts1 expression. Immunohistochemical analysis of 37 GB cancer specimens confirmed this observation in vivo. Loss of E-cadherin expression followed by expression of the mts1 gene may be an important event for increasing cell proliferation, motility and invasion activity in the progression of GB cancer.

Aged↗

Adenocarcinoma in situ coexisting with carcinoma in situ of the cervix during pregnancy.

CASE REPORT: We report a pregnant patient with adenocarcinoma in situ (AIS) coexisting with carcinoma in situ (CIS) of the cervix diagnosed by conization at 16 weeks' gestation. Apoptotic activity was higher in the CIS lesion than in the AIS lesion in the cone biopsy specimen. Postpartum evaluation confirmed the disappearance of CIS lesion with positive cone margins, however, multifocal AIS with negative cone margins was found. CONCLUSION: Clinical course and biological features of AIS associated with pregnancy may be different from those of CIS.

Adenocarcinoma↗

Combined loss of expression of O6-methylguanine-DNA methyltransferase and hMLH1 accelerates progression of hepatocellular carcinoma.

BACKGROUND AND OBJECTIVES: O(6)-methylguanine-DNA methyltransferase (MGMT) and human Mut L homologue 1 (hMLH1) are proteins that play an important role in DNA repair. No reports have yet described whether deficient MGMT and hMLH1 expression correlates with tumor progression and the prognosis of patients with hepatocellular carcinoma (HCC). METHODS: Using immunohistochemical analysis, we evaluated the expression status of MGMT and hMLH1 protein in 60 paraffin-embedded samples from consecutive patients with curatively resected HCC. RESULTS: The lack of expression of both MGMT and hMLH1 in HCCs (n = 7) correlated with advanced pTNM stage (P = 0.039), as compared with HCCs expressing both proteins (n = 25). The absence of both MGMT and hMLH1 was a significant indicator of malignant potential. The expression status of both MGMT and hMLH1 was a predictive factor for overall survival in patients with HCC (P < 0.001). CONCLUSIONS: HCC lacking both MGMT and hMLH1 is correlated with an advanced stage and a poor prognosis. The expression status of both repair proteins is a predictive prognostic marker in patients with HCC after surgical resection.

Adaptor Proteins, Signal Transducing↗

Mature adipocytes, but not preadipocytes, promote the growth of breast carcinoma cells in collagen gel matrix culture through cancer-stromal cell interactions.

Interaction between cancer and stromal cells is critical for tumour cell growth and invasion. It has recently been suggested that mature adipocytes, a specific type of stromal cell that is abundant in the breast, affect the biological behaviour of some epithelial cell types. However, the nature of the interaction between mature adipocytes and breast cancer cells remains unclear. The present study has examined the effects of mature rat adipocytes, as the main cell type in adipose tissue, on the growth, apoptosis, and cell adhesion of breast carcinoma cell lines [human oestrogen receptor (ER)-positive cell lines MCF-7, ZR75-1, and T47-D; and the ER-negative mouse cell line MMT 060562] by analysing bromodeoxyuridine (BrdU) uptake, apoptotic indices, and immunohistochemical expression of E-cadherin. As a reference, the effects of rat preadipocytes (immature adipocytes) on the behaviour of the cell lines were examined. The cell lines were cultured in a three-dimensional collagen gel matrix with mature adipocytes or preadipocytes. Mature adipocytes significantly promoted BrdU uptake by all cell lines other than MMT 060562 cells. Preadipocytes decreased the uptake of T47-D cells and had no effect on that of MCF-7, ZR75-1 or MMT 060562 cells. Mature adipocytes or preadipocytes did not affect the apoptotic indices of any of the cell lines. Mature adipocytes did not influence E-cadherin expression in any of the cell lines, but preadipocytes clearly promoted E-cadherin expression by MCF-7 and T47-D cells, but not by R75-1 and MMT 060562 cells. These data suggest that mature adipocytes may be involved in the mechanisms regulating the growth of breast cancer mass through their growth-promoting effect on ER-positive tumour cells.

Adipocytes↗

Color Doppler imaging and angiogenesis in ovarian tumors.

The detection and assessment of ovarian lesions are an important part of gynecological practice. Advance knowledge of whether an overt ovarian mass is malignant may be useful for improving the effectiveness of surgical treatment. Pelvic ultrasonography has been developed continuously, and (in conjunction with biochemical and genetic markers) is being used to achieve these objectives with increasing accuracy. At the same time, knowledge is being accrued about the relationship between ultrasound-derived indices of ovarian tumor vascularity and the molecular aspects of angiogenesis. There is now the exciting prospect that color Doppler imaging with pulsed Doppler spectral analysis could also be used to monitor the development and intermediate effectiveness of novel anticancer treatment.

Female↗

Loss of expression of DNA repair enzymes MGMT, hMLH1, and hMSH2 during tumor progression in gastric cancer.

BACKGROUND: Disorders of the DNA repair system that protects against alkylating mutagens are known to play an important role in carcinogenesis. METHODS: We investigated the expression of the DNA repair enzyme that protects against alkylating mutagens, O(6)-methylguanine DNA methyltransferase (MGMT), and the mismatch repair (MMR) enzymes, hMLH1 and hMSH2, in 135 gastric cancer specimens by immunohistochemical means. RESULTS: The immunoreactivity of MGMT and MMR proteins correlated significantly with several clinicopathologic factors. The survival curve in 116 patients showed that a loss of MGMT or hMLH1, but not of hMSH2, correlated with a poor prognosis. Combined evaluation of MGMT and hMLH1 revealed that the survival of patients with negative status for both MGMT and hMLH1 was shortest. However, this significant association between patient survival and MGMT or hMLH1 expression disappeared when early and advanced cancers were separately analyzed, indicating that synchronous losses of MGMT and hMLH1 increase during tumor progression and stage. Further evaluation according to histologic type revealed that loss of MGMT, hMLH1, and hMSH2 expression significantly differed between early and advanced cancer in differentiated-type cancers. In contrast, in undifferentiated-type cancer, loss of MGMT and MMR expression was frequently found even in intramucosal (m) cancer, and no significant difference was found in loss of hMLH1 and hMSH2 between early and advanced cancer. CONCLUSION: These findings demonstrate that the reduced expression of MGMT, hMLH1, and hMSH2 in differentiated-type cancer may play an important role during tumor progression between the early and advanced stage. On the other hand, in undifferentiated-type cancer, loss of MGMT and the MMR proteins appears to be an important event at carcinogenesis or at an earlier step of tumor progression.

Adaptor Proteins, Signal Transducing↗

Clinical significance of interleukin-1 receptor antagonist in patients with cervical carcinoma.

OBJECTIVE: Our purpose was to determine the clinical significance of interleukin-1 receptor antagonist (IL-1ra), which is an endogenous inhibitor cytokine of IL-1, in patients with cervical carcinoma. METHODS: Tissue IL-1ra expression and serum IL-1ra level were examined by enzyme-linked immunosorbent assay (ELISA), Western blotting, and immunohistochemistry in normal controls and patients with cervical carcinoma. RESULTS: Tissue IL-1ra protein level by ELISA was significantly higher in squamous cell carcinoma (n = 9) than in the normal cervix (n = 7) and adenocarcinoma (n = 3). Western blotting confirmed the main presence of intracellular IL-1ra type 1 in squamous cell carcinoma. Immunohistochemistry demonstrated significant IL-1ra expression only in tumor cells of squamous cell carcinoma. Elevation of serum IL-1ra level was found in patients with squamous cell carcinoma (n = 38) compared to normal women (n = 13), but not in patients with adenocarcinoma (n = 9). Although serum IL-1ra level did not correlate with clinical stage or any other tumor marker, high serum IL-1ra level was associated with pelvic lymph node metastasis and poor prognosis in patients with squamous cell carcinoma. On the other hand, these results were not obtained in patients with cervical adenocarcinoma. CONCLUSION: IL-1ra may play important roles in local and general malignant behaviors in patients with cervical squamous cell carcinoma, and measurement of serum IL-1ra level may be useful in predicting patient survival.

Adenocarcinoma↗

Influence of missense mutation and silent mutation of LHbeta-subunit gene in Japanese patients with ovulatory disorders.

The frequency of variant LHbeta containing two point mutations (T(986)-C and T(1008)-C) and its relationship to reproductive disorders differ widely between ethnic groups. In a Japanese population, variant luteinizing hormone (LH) correlates with ovulatory disorders. Here we examined the relationship between two missense mutations and five silent mutations (C(894)-T, G(1018)-C, C(1036)-A, C(1098)-T and C(1423)-T) in the LHbeta gene, and ovulatory disorders. We studied 43 patients with ovulatory disorders, 79 patients with normal ovulatory cycles, and 23 healthy men who agreed to join our DNA analysis. PCR-amplified LHbeta-subunit gene sequences were compared with a base sequence of wild-type LH reported after direct sequencing. The highest frequency (0.945) of novel allele was observed at the position of the C(1036)-A transition. No homozygotes for wild-type LHbeta (C(1036)) were identified. The frequency of novel allele in patients with polycystic ovary syndrome, endometriosis, premature ovarian failure and luteal insufficiency was significantly different from that of healthy women. The frequencies of novel alleles (C(894)-T, C(1098)-T and C(1423)-T) in patients with ovulatory disorders were significantly higher than those with normal ovulatory cycles. The mean incidence of point mutation in patients with ovulatory disorders was higher than in those with normal ovulatory cycles. Among patients with variant LH, five silent mutations were identified in 87.5% of patients with ovulatory disorders, whereas only a few silent mutations were identified in patients with normal ovulatory cycles. In a Japanese population, five silent mutations of variant LH could have influenced two missense mutations and/or other unknown missense mutations, causing ovulatory disorders.

Endometriosis↗

The relationship between primary gastric B-cell lymphoma and immunoglobulin heavy chain (IgH) gene rearrangement--a histopathological study of primary gastric lymphomas.

The aim of this study was to review our primary gastric lymphoma cases according to the new WHO classifications and to investigate the histopathological features of B-cell lymphomas. In addition, B-cell monoclonality was analyzed for immunoglobulin heavy chain (IgH) gene rearrangement using the polymerase chain reaction at the site of the lymphoma lesion, transitional lesion, and the non-lymphoma lesion. Specimens resected from 31 primary gastric lymphomas were examined. There were 28 cases (90.3%) of B-cell lymphoma and three cases (9.7%) of T-cell lymphoma. The B-cell lymphomas were classified as low-grade mucosa-associated lymphoid tissue (MALT) lymphoma (LGML) (9%), high-grade MALT lymphoma (HGML) (42%), and diffuse large B-cell lymphoma (DLBCL) (29%). Histopathologically, lymphoepithelial lesions (LEL) were higher in LGML (100%) than in DLBCL (22%), with statistical significance (p < 0.05). A monoclonal pattern of IgH rearrangement was detected in LGML (50.0%), HGML (60.0%), and DLBCL (80.6%), with a statistically significant difference between LGML and DLBCL (p < 0.01). The IgH monoclonal pattern may reflect the gross appearance of lymphoma or the lymphoma infiltration depth. Superficial spreading and shallow growth in LGML may correspond to an oligoclonal pattern, and mass-forming and deep invasive growth in DLBCL may correspond to a more monoclonal pattern.

Adult↗

Involvement of the multidomain regulatory protein XynR in positive control of xylanase gene expression in the ruminal anaerobe Prevotella bryantii B(1)4.

The xylanase gene cluster from the rumen anaerobe Prevotella bryantii B(1)4 was found to include a gene (xynR) that encodes a multidomain regulatory protein and is downstream from the xylanase and beta-xylosidase genes xynA and xynB. Additional genes identified upstream of xynA and xynB include xynD, which encodes an integral membrane protein that has homology with Na:solute symporters; xynE, which is related to the genes encoding acylhydrolases and arylesterases; and xynF, which has homology with the genes encoding alpha-glucuronidases. XynR includes, in a single 833-amino-acid polypeptide, a putative input domain unrelated to other database sequences, a likely transmembrane domain, histidine kinase motifs, response regulator sequences, and a C-terminal AraC-type helix-turn-helix DNA binding domain. Two transcripts (3.7 and 5.8 kb) were detected with a xynA probe, and the start site of the 3.7-kb transcript encoding xynABD was mapped to a position upstream of xynD. The DNA binding domain of XynR was purified after amplification and overexpression in Escherichia coli and was found to bind to a 141-bp DNA fragment from the region immediately upstream of xynD. In vitro transcription assays demonstrated that XynR stimulates transcription of the 3.7-kb transcript. We concluded that XynR acts as a positive regulator that activates expression of xynABD in P. bryantii B(1)4. This is the first regulatory protein that demonstrates significant homology with the two-component regulatory protein superfamily and has been shown to be involved in the regulation of polysaccharidase gene expression.

Animals↗

Characterization of alphaT3-1 cells stably transfected with luteininzing hormone beta-subunit complementary deoxyribonucleic acid.

Luteinizing hormone (LH) consists of alpha- and beta-subunits, and synthesis and secretion of LH are regulated by gonadotropin-releasing hormone (GnRH). In order to examine the molecular mechanisms by which GnRH regulates LH secretion, we transfected alphaT3-1 cells with rat LHbeta-subunit cDNA under the control of a constitutive promoter and established a stable cell line of LH2 cells which secreted LH in response to GnRH. Pulsatile and continuous GnRH pretreatments increased gene expression of the alpha-subunit and synthesis of LH, and enhanced the LH secretion by brief treatments with GnRH and 56 mM KCl. The LH secretions were partially blocked by elimination of extracellular Ca2+. GnRH-induced LH secretion was completely inhibited by calphostin C (a protein kinase C inhibitor) and 1 microM wortmannin. In contrast to the GnRH induction, high K+-induced LH secretion was inhibited by KN93, a Ca2+/calmodulin-dependent protein kinase II inhibitor, as well as by 1 microM wortmannin. We also confirmed that activation of cAMP-pathway induced LH secretion, but activation of mitogen-activated protein (MAP) kinase pathway was not involved in LH secretion. These results suggest that GnRH directly regulates LH secretion as well as LHbeta-subunit synthesis, and that LH2 cells are a useful model for the study of LH secretion induced by several secretagogues.

Animals↗

Mutation analysis of K-ras and beta-catenin genes related to O6-methylguanin-DNA methyltransferase and mismatch repair protein status in human gallbladder carcinoma.

O6-methylguanin-DNA methyltransferase (MGMT) is a DNA repair enzyme that transfers methyl groups from O6-methylguanine to itself. Alkylation of DNA at the O6 position of guanine is the first step by alkylating agents in inducing DNA mutations in an organism. When MGMT and the mismatch repair (MMR) system are impaired, O6-methylguanine mispairs with thymine during DNA replication, resulting in a G:C right curved arrow A:T transitional mutation in DNA. We obtained cancer lesions by manual micro-dissection (MMD) from 26 paraffin-embedded formalin-fixed gallbladder carcinoma and Laser Capture Micro-dissection (LCM) method from 10 fresh frozen specimens. Mutation analysis was performed on the micro-dissected samples for K-ras and beta-catenin genes. At codon 12 of the K-ras gene, the MMD and LCM methods detected mutations in 3 (11.5%) and 1 (10%) case, respectively. In exon 3 of beta-catenin gene, only 1 (3.8%) case revealed a mutation in MMD cancer foci. Two cases without MGMT or MMR expression revealed a G right curved arrow A transition mutation in the K-ras gene. The findings suggested that negative MGMT and MMR status contributed to a G:C right curved arrow A:T transitional mutation in the K-ras gene. However, K-ras and beta-catenin mutations were actually rare in GB carcinoma. Other gene mutations frequently occurring in gallbladder carcinoma might be affected by this negative MGMT and MMR status.

Base Pair Mismatch↗