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Qi-Min Zhan

Publications and source records attributed to Qi-Min Zhan.

9 recordsLinked to original sources

Amplification and overexpression of CTTN (EMS1) contribute to the metastasis of esophageal squamous cell carcinoma by promoting cell migration and anoikis resistance.

Gain of chromosome 11q13 is a common event in esophageal squamous cell carcinoma (ESCC). The cortactin gene (CTTN, also EMS1), located at 11q13, plays a pivotal role in coupling membrane dynamics to cortical actin assembly. This gene has been implicated in the motility of several types of cells. In the present study, we found that the amplification and overexpression of the CTTN gene was associated with lymph node metastasis in ESCC. Functional analysis by small interfering RNA-mediated silencing of CTTN revealed that in addition to the effect on cell migration, CTTN influenced cell invasiveness by anoikis resistance. In vivo assay showed that inhibition of CTTN expression also decreased tumor growth and lung metastasis of ESCC cells. At the molecular level, we showed for the first time that the protective role of CTTN in anoikis resistance was correlated with the activation of the phosphatidylinositol 3-kinase/Akt pathway. Overall, the data suggest that CTTN is an oncogene in the 11q13 amplicon and exerts functions on tumor metastasis in ESCC.

Anoikis↗

Identification of chromosome aberrations in esophageal cancer cell line KYSE180 by multicolor fluorescence in situ hybridization.

Analysis of chromosomal changes in esophageal squamous cell carcinoma (ESCC) can illuminate the molecular mechanisms underlying the development and progression of this cancer, which is among the 10 most common malignant tumors. Cell lines are better suited than surgical samples for chromosome analysis in this cancer. This study used multicolor fluorescence in situ hybridization (M-FISH) to characterize the molecular cytogenetics of ESCC in cell line KYSE180. Two pools of 12-color whole-chromosome painting probes were designed, and two rounds of FISH were performed on the same metaphase spreads. Loss of DNA copy number was observed at 4p, 5q, 6q, 9, 10p, 12p, 13, 14p, 15p, 18p, 18q, 20, 22, and Y. Chromosomal gains and translocations occurred at the entire or part of 1, 2p, 3, 4p, 5p, 5q, 6p, 7, 8, 10q, 11, 12q, 14q, 16, 17q, 19, and Xp. Seven derivative chromosomes (5, 8, 12, 14, 14, 14, and 17) presented complex translocations, each involving three or four chromosomes. No chromosomes 9, 13, or Y were detected. These results add significant information to the existing karyotype description of KYSE180 and provide detailed cytogenetic background data for appropriate use of the cell line.

Carcinoma, Squamous Cell↗

Alteration of RPL14 in squamous cell carcinomas and preneoplastic lesions of the esophagus.

Allelic loss on chromosome 3p occurs frequently in esophageal cancer. The human ribosomal protein L14 gene (RPL14) is located on chromosome 3p21.3. In the present study, we investigated alteration of RPL14 at both the genomic DNA and RNA levels in 129 Chinese esophageal squamous cell carcinomas (ESCC) and 17 dysplasia adjacent to tumor tissues by a combination of tissue microdissection, microsatellite analysis of the intragenic marker, reverse transcriptase-polymerase chain reaction (RT-PCR) and direct sequencing. In the tested informative cases, loss of heterozygosity (LOH) of RPL14 was observed in 29 out of 68 (43%) tumors. Decreased expression of the gene was detected in 31 out of 49 (63%) carcinomas. No mutation was found in the remaining RPL14 allele of the tumors with LOH. We examined subsequently the allelic status of RPL14 in the dysplasia (preneoplastic lesions) between malignant tissues and histologically normal epithelia. Of 17 tested dysplasia in which the tumors showed LOH, eight (47%) displayed the same allelic loss as their corresponding tumors, seven (41%) exhibited microsatellite instability (MSI), and only two retained both the RPL14 alleles. The data suggest that alteration of RPL14 occurred frequently in ESCC and might be an earlier event in the tumorigenesis of the esophagus. Analysis to RPL14 gene may contribute to the early detection of ESCC as a potential molecular marker.

Adult↗

Detection of chromosomal alterations in bladder transitional cell carcinomas from Northern China by comparative genomic hybridization.

To identify chromosome alterations in Chinese bladder cancer, forty-six transitional cell carcinomas of the bladder were analyzed by comparative genomic hybridization. Frequent gains of DNA copy number were observed on 1p (13/46), 1q (13/46), 5p (8/46), 6p (9/46), 7p (7/46), 8q (12/46), 11q (8/46), 17q (11/46), 19q (7/46), 20q (8/46) and Yq (8/46), with minimal overlapping regions at 1p32-pter (10/46), 1q21-q24 (12/46), 5p (8/46), 6p22-p23 (7/46), 7p11.2-p14 (7/46), 8q22-q24 (12/46), 11q13-q14 (8/46), 17q22-qter (11/46), 19q11-13.2 (7/46), 20q11-q13.2 (8/46) and Yq11 (8/46). Losses were predominantly found on 2q (16/46), 5q (8/46), 8p (7/46), 9p (8/46), 9q (13/46), 11p (7/46), 13q (7/46), 17p (12/46), 18q (7/46), Xp (18/46) and Xq (19/46), with smallest overlapping regions at 2q32-qter (16/46), 5q12-q31 (8/46), 8p12-pter (7/46), 9p21-pter (10/46), 9q (13/46), 11p (7/46), 13q13-q22 (7/46), 17p (12/46), 18q21-qter (7/46), Xp (18/46) and Xq (19/46). There were significantly higher frequencies of gains of 1q21-q24 and 17q22-qter in moderately differentiated tumors as compared with those in well-differentiated tumors, indicating a possible association of these two abnormalities with the dedifferentiation of tumor cells. Gains of 1p32-pter, 5p, 6p22-p23, 11q13-q14, 17q22-qter and losses of 2q32-qter, 9q, 17p were more frequent in pT1 as compared with those in pTa carcinomas. Gains at 1q21-q24, 7p11.2-p14, 8q22-q24, 19q, 20q11-q13.2 and losses at 5q12-q31, 8p12-pter, 9p21-pter, 11p, 13q13-q22 and 18q21-qter were unique to pT1 and higher stage tumors, suggesting that genes responsible for the invasion and progression of bladder cancer might be located at these chromosomal regions. In multiple tumors from the same patients, consistent alterations such as gains of 8q, 11q13-q14, 12q13-q15, 13q12, 20q and losses of 2q32-qter, 8p, 9, 11p, 11q21-qter, 13q13-qter, X were detected. These abnormalities were possibly earlier events, which might play a critical role during the genesis of the tumors. Further detailed studies to the recurrent aberration regions may lead to the identification of oncogenes and tumor suppressor genes involved in the development and progression of Chinese bladder cancer.

Adult↗

Alterations of MLH1 and microsatellite instability in esophageal squamous cell carcinomas.

Human MLH1 is one of the DNA mismatch repair genes and located in chromosome 3p21.3. Alterations of the MLH1 were associated with various kinds of human tumors. The present study was to investigate allelic loss of MLH1 and microsatellite instability (MSI) in esophageal squamous cell carcinomas (ESCC), and to estimate the correlation between MSI status and allelic loss of the MLH1 gene. The MSI of 14 microsatellite markers and mRNA expression of MLH1 were assessed in a large cohort of patients with ESCC by using denaturing polyacrylamide gel electrophoresis (PAGE) and reverse transcriptase-polymerase chain reaction (RT-PCR) techniques. Thirty-five percent of tumors displayed MSI in at least one tested marker. MSI in D3S1611, an intragenic marker of the MLH1, was observed in 66.7% of tumors. No down-expression of MLH1 was found at the transcriptional level. The presence of MSI did not correlate with tumor stage, degree of differentiation, lymphonode-metastasis, age and sex of the patients, neither with allelic loss of the MLH1 gene. The data suggested that LOH of MLH1 is common in ESCC, but not lead to the alteration of MLH1 at the level of RNA expression. MSI in tested microsatellite markers occurs frequently in ESCC but is not associated with allelic loss of the MLH1 gene.

Adaptor Proteins, Signal Transducing↗

A novel region of deletion on 13q33-q34 in esophageal squamous cell carcinoma.

Chromosome 13 presents frequent allelic loss in esophageal squamous cell carcinomas (ESCC). However, no ESCC suppressor gene has been identified from this chromosome. To define common deletion regions that possibly contain the ESCC suppressor gene(s), we performed a mapping of allelic loss in 50 esophageal squamous cell carcinomas using a panel of 25 microsatellite markers on chromosome 13q21-qter, which has rarely been studied for allelic loss. Loss of heterozygosity (LOH) with high frequencies (> or = 50%) was observed at markers D13S1494, D13S1323, D13S248, D13S1315, D13S285, and D13S1295, in which the peak LOH (69.2%) was at locus D13S248. Seven cases presented LOH at three consecutive markers D13S248, D13S1315 and D13S285, 4 of which also displayed LOH at another adjacent marker D13S1295. This overlapping region of deletion covers an interval of 6.36 Mb at 13q33.1-q34, whose deletion has not previously been reported in ESCC. Tumors of grade II showed significantly more frequent LOH at D13S248 than those of grade I. A significantly higher frequency of allelic loss at D13S152 was also found in tumors with lymph node metastasis compared to those without lymph node metastasis. The present study defined a novel region of allelic loss in 13q33-q34. LOH at D13S248 and D13S152 are associated with higher tumor grade and metastasis, respectively.

Adult↗

[Gadd45 mediated G2/M cell cycle arrest induced by BRCA1].

BACKGROUND & OBJECTIVE: It is considered that tumor suppressor gene BRCA1 is an important factor in the regulation of cell cycle checkpoint, but the molecular mechanism by which BRCA1 regulates cell cycle G(2)/M arrest is less known. The objective of this study was to investigate the effects of Gadd45 on the BRCA1-induced cell growth suppression. METHODS: BRCA1 induction of Gadd45 protein was analyzed using Western-blot assay following cells transfection with BRCA1 expression vector and cell sorting. Activation of the Gadd45 promoter by BRCA1 was determined by CAT assay. Effect of antisense Gadd45 on the BRCA1-induced cell cycle G(2)-M arrest was examined by flow cytometry analysis. And the effects of antisense Gadd45 on BRCA1-mediated growth suppression in HeLa and HCT116 cell lines was determined by colony formation assay. RESULTS: Gadd45 protein was highly induced after expression of BRCA1. BRCA1 strongly activated the Gadd45 promoter. Antisense Gadd45 substantially abrogated BRCA1-activated cell cycle G(2)-M arrest and BRCA1-induced cell growth suppression on HeLa and HCT116 cell lines. CONCLUSION: Gadd45 is a BRCA1-regulated downstream gene and mediates the role of BRCA1 in the control of cell cycle G(2)/M arrest and growth suppression.

BRCA1 Protein↗

[Allelic loss and down-regulation of FHIT gene expression in esophageal squamous cell carcinoma].

BACKGROUND & OBJECTIVE: Deletions and translocations involving the short arm of chromosome 3 (3p14) have been observed frequently in esophageal cancer. Fragile histidine triad (FHIT) gene is located in 3p14.2, and its deletion or abnormal expression was found in many kinds of cancers. The study was to investigate the alterations of FHIT gene, and its significance in esophageal squamous cell carcinoma (ESCC). METHODS: The deletion of FHIT gene in 80 cases of ESCC was evaluated by microsatellite analysis, and the mRNA expression of FHIT gene in 20 cases of ESCC was analyzed by reverse transcriptase-polymerase chain reaction (RT-PCR). RESULTS: Intragenic markers of FHIT gene, D3S3356, D3S3378, and D3S3361, showed homozygous in all samples. D3S1234 and D3S1540, located near FHIT, presented high heterozygosity. In the tested informative cases, loss of heterozygosity (LOH) of D3S1234 was detected in 30 out of 52 tumors (57.69%), and that of D3S1540 was observed in 38 out of 56 carcinomas (67.86%). Reduced expression of FHIT mRNA occurred in 15 of 20 (75.00%) cases, and was often accompanied with LOH. However, the FHIT down-regulation was not always coincident with LOH. CONCLUSIONS: The abnormal expression of FHIT gene occurred frequently in ESCC. LOH was the main factor leading to down-regulation of FHIT expression. Epigenetic mechanism might be associated with reduced expression of FHIT in a part of ESCC cases.

Acid Anhydride Hydrolases↗

[BRCA1 and genomic stability].

BRCA1 is a 220kDa nuclear protein with multiple functional domains. It interacts directly or indirectly with a variety of important proteins, including oncogene proteins (c-myc, E2F), tumor suppressor proteins (p53, RB, BRCA2), DNA damage repair proteins (RAD50, RAD51), cell-cycle regulators (cyclin, CDK), transcriptional regulators (RNA polymerase II) and others related to the important biological events. BRCA1 is likely to play an important role in the maintenance of genomic stability through its activities in cell-cycle progression, DNA damage repair, transcriptional regulation, and apoptosis. Here, the authors provided a review of the biochemistry structure of BRCA1 as well as its role in maintaining the genomic stability.

BRCA1 Protein↗