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Öğe Loss of heterozygosity of chromosome 13q33-34 region and molecular analysis of ING1 and p53 genes in bladder carcinoma(Springer, 2015) Igci, Mehri; Arslan, Ahmet; Erturhan, Sakip; Igci, Yusuf Ziya; Pala, Elif; Gogebakan, Bulent; Karakok, MetinCancer is a consequence of accumulation of genetic and epigenetic alterations in the cell which can lead to activation of oncogenes or inactivation of tumor suppressor genes (TSG). Since members of ING family were discovered as TSGs in different cancer types, it was aimed to analyze the chromosome 13q33-34 region, ING1 and p53 genes in bladder cancer. 30 paired normal and tumor tissues were investigated in terms of microdeletion of chromosome 13q33-34 region, ING1 expression and mutation status of ING1 and p53 genes. Because there is no data available about the transcription factors which bind to ING1 promoter, the promoter sequence was analyzed via Genomatix-MatInspector and TFSEARCH softwares. Used DS markers were D13S285, D13S1315, D13S796, D13S278, D13S158, and D13S779 where loss of heterozygosity (LOH) results were as 23.3, 20, 6.7, 3.3, 6.7, and 0 %, respectively. The highest LOH scores were obtained with markers D13S285 and D13S1315 which are flanking the ING1. Seven of 30 cases showed alteration in expression (p > 0.05). However, no mutation was detected in the exons of ING1. One patient showed a two-nucleotide deletion in p53 gene. However no significant TSG activity of ING1 was observed while higher activity was reported in different cancer types. As for the LOH data 13q33-34 region may contain different candidate TSGs like COL4A1, COL4A2 and SOX1. As a result of computational promoter analysis, some factors like ABL, E2F, HIF1, SOX, P53, BPTF, NRSF, c-Rel and c-ETS were associated with the promoter region. Molecular analysis of ING1 promoter warrants further analysis.Öğe NADPH oxidase P22PHOX gene expression in ulcerative colitis(2014) Bülbül, Neşe; Pala, Elif; İğci, Yusuf Ziya; Göğebakan, Bülent; Öztuzcu, Serdar; Cengiz, Beyhan; Bayraktar, Recep; Dağ, Muhammet Sait; Aydınlı, MusaBackground/Aims: Nicotinamide adenine dinucleotide phosphate (NADPH) oxidase, which catalyzes the formation of reactive oxygen species (ROS) in phagocytic cells, has five subunits: p67phox ("phox"refers to "phagocyte oxidase"), p47phox, p40phox, p22phox, and gp91phox (catalytic subunit). Oxidative stress resulting from the accumulation of ROS and/or defective removal of ROS by antioxidants has detrimental effects on cellular functions and may contribute to chronic inflammation. Disruption of the colonic mucosa due to the dysregulation of antioxidants or transformation enzymes may play a role in the pathogenesis of ulcerative colitis (UC) and influence the clinical features of this disease. In this study, we examined the expression of the gene encoding NADPH oxidase subunit p22phox cytochrome b-245, alphapolypeptidein the colonic mucosa to test its possible contribution in the pathogenesis of UC.Materials and Methods: Expression levels of mRNA in the inflamed and non-inflamed colonic mucosa (determined using colonoscopy)of 22 patients with UC and in the normal mucosa of 22 healthy controls were analyzed using real-time polymerase chain reaction.Results: Expression levels of mRNA were not significantly different between patients with inflamed and non-inflamed colonic mucosa (p>0.05) and betweenpatients with inflamed colonicmucosa and healthy controls (p>0.05). Conclusion: Although our data suggest that expression of the gene encoding p22phox is not associated with chronic inflammation in patients with UC, other mechanisms can affect oxidative stress in these patients.