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肾癌组织中BHD、RASSF1A、SPINT2基因启动子的甲基化研究 被引量:2
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作者 郑伏甫 戴宇平 +2 位作者 徐理华 邓春华 郑克立 《新医学》 2010年第6期358-361,394,共5页
目的:检测肾癌组织中伯特-霍格-杜贝(BHD)、Ras相关结构域家族(RASSF)1A、丝氨酸蛋白酶抑制剂(SPINT)2基因启动子的甲基化状态,探讨其在肾癌发病中的可能作用。方法:收集肾肿瘤组织标本24份,其中透明细胞癌19份、错构瘤2份、癌旁组织3份... 目的:检测肾癌组织中伯特-霍格-杜贝(BHD)、Ras相关结构域家族(RASSF)1A、丝氨酸蛋白酶抑制剂(SPINT)2基因启动子的甲基化状态,探讨其在肾癌发病中的可能作用。方法:收集肾肿瘤组织标本24份,其中透明细胞癌19份、错构瘤2份、癌旁组织3份,应用甲基化特异性聚合酶链反应法分别检测其BHD、RASSF1A、SPINT2基因启动子区CpG岛甲基化状态。结果:19例透明细胞癌同时检出3种抑癌基因甲基化3例,2种抑癌基因甲基化9例,1种抑癌基因甲基化7例。2例错构瘤中检出1种抑癌基因甲基化1例,3例癌旁组织中检出2种抑癌基因甲基化1例。检出BHD基因甲基化9例,均为透明细胞癌。检出RASSF1A基因甲基化8例,其中透明细胞癌7例,癌旁组织1例。检出SPINT2基因甲基化20例,其中透明细胞癌18例,错构瘤1例,癌旁组织1例。结论:肾癌组织中BHD、RASSF1A、SPINT2基因启动子区存在甲基化状态,抑癌基因甲基化可能在肾癌的发病机制中起重要作用。 展开更多
关键词 肾癌 甲基化 BHD基因 RASSF1A基因 spint2基因
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Identification of Global DNA Methylation Signatures in Glioblastoma-Derived Cancer Stem Cells 被引量:1
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作者 Eun-Joon Lee Prakash Rath +15 位作者 Jimei Liu Dungsung Ryu Lirong Pei Satish K.Noonepalle Austin Y.Shull Qi Feng N.Scott Litofsky Douglas C.Miller Douglas C.Anthony Mark D.Kirk John Laterra Libin Deng Hong-Bo Xin Xinguo Wang Jeong-Hyeon Choi Huidong Shi 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2015年第7期355-371,共17页
Glioblastoma (GBM) is the most common and most aggressive primary brain tumor in adults. The existence of a small population of stem-like tumor cells that efficiently propagate tumors and resist cytotoxic therapy is... Glioblastoma (GBM) is the most common and most aggressive primary brain tumor in adults. The existence of a small population of stem-like tumor cells that efficiently propagate tumors and resist cytotoxic therapy is one proposed mechanism leading to the resilient behavior of tumor cells and poor prognosis. In this study, we performed an in-depth analysis of the DNA methylation landscape in GBM- derived cancer stem ceils (GSCs). Parallel comparisons of primary tumors and GSC lines derived from these tumors with normal controls (a neural stem cell (NSC) line and normal brain tissue) identified groups of hyper- and hypomethylated genes that display a trend of either increasing or decreasing methylation levels in the order of controls, primary GBMs, and their counterpart GSC lines, respectively. Interestingly, concurrent promoter hypermethylation and gene body hypomethylation were observed in a subset of genes including MGMT, AJAP1 and PTPRN2. These unique DNA methylation signatures were also found in primary GBM-derived xenograft tumors indicating that they are not tissue culture-related epigenetic changes. Integration of GSC-specific epigenetic signatures with gene expression analysis further identified candidate tumor suppressor genes that are frequently down-regulated in GBMs such as SPINT2, NEFM and PENK. Forced re-expression of SPINT2 reduced glioma cell proliferative capacity, anchorage independent growth, cell motility, and tumor sphere formation in vitro. The results from this study demonstrate that GSCs possess unique epigenetic signatures that may play important roles in the pathogenesis of GBM. 展开更多
关键词 GLIOBLASTOMA Cancer stem cells DNA methylation spint2
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