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血清DNMT1与TET1表达水平在肺癌早期诊断中的临床价值 被引量:1
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作者 叶尔那尔·哈再斯汗 刘旭骏 司文喆 《临床与病理杂志》 CAS 2023年第1期1-8,共8页
目的:检测不同类型肺癌患者与健康人血清中DNA甲基化酶1(DNA methylase 1,DNMT1)和甲基胞嘧啶双加氧酶(ten-eleven translocation methylcytosine dioxygenase 1,TET1)的表达水平,探讨2种酶对肺癌早期诊断的临床意义。方法:选取170例初... 目的:检测不同类型肺癌患者与健康人血清中DNA甲基化酶1(DNA methylase 1,DNMT1)和甲基胞嘧啶双加氧酶(ten-eleven translocation methylcytosine dioxygenase 1,TET1)的表达水平,探讨2种酶对肺癌早期诊断的临床意义。方法:选取170例初诊为肺癌的患者血清与90例体检中心健康成年人血清,采用酶联免疫吸附试验(enzyme-linked immunoadsordent assay,ELISA)检测血清中DNMT1与TET1的表达水平。使用SPSS 26.0与Medcalc软件进行统计分析,比较健康成年人与肺癌患者血清中DNMT1与TET1表达水平的差异;比较血清DNMT1和TET1表达水平在不同临床分期、不同类型肺癌、不同性别、不同年龄段、不同吸烟史、不同癌症家族史之间的差异。结果:肺癌患者血清中的DNMT1显著高于健康成年人,而TET1的表达水平低于健康成年人,差异均有统计学意义(均P<0.05)。两种酶在肺癌患者血清中的表达水平与肺癌患者的临床病理分期有关。此外,DNMT1与TET1表达水平与不同类型肺癌的分类有关。结论:DNMT1与TET1有作为肺癌早期诊断标志物的潜在价值。 展开更多
关键词 DNA甲基化酶1 甲基胞嘧啶双加氧酶 肺癌 血清肿瘤标志物
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Expression of the C-Terminal Domain of Mammalian TET3 DNA Dioxygenase in Arabidopsis thaliana Induces Heritable Methylation Changes at rDNA Loci
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作者 Elizabeth Hollwey Michael Watson Peter Meyer 《Advances in Bioscience and Biotechnology》 2016年第5期243-250,共8页
In plants, demethylation of 5-methylcytosine (5 mC) residues is controlled by DNA glycosylases, while in mammals it requires oxidation of 5 mC by TET proteins, a group of Fe(II)/2-oxoglutaratedependent dioxygenases. W... In plants, demethylation of 5-methylcytosine (5 mC) residues is controlled by DNA glycosylases, while in mammals it requires oxidation of 5 mC by TET proteins, a group of Fe(II)/2-oxoglutaratedependent dioxygenases. We analysed the effects of expressing the C-terminal catalytic domain of the human TET3 gene (TET3c) in Arabidopsis thaliana, using an rDNA region as a methylation reporter. In TET3c transformants, epialleles with hypomethylation or hypermethylation patterns can be induced, which is each stably retained in progeny lines even after removal of the TET3c transgene. In TET3c transformants, 5-hydroxymethylcytosine (5 hmC) marks are detected, indicative of the oxidative activity of the transgenic enzyme. 5-formylcytosine (5 fC) is only detectable in TET3c transformants with a DNA glycosylase mutant background suggesting further oxidation of 5 hmC residues to 5 fC by TET3c, and efficient recognition and removal of 5 fC by plant glycosylases. The results suggest that TET3c can be employed to induce heritable locus-specific changes in DNA methylation, and that accumulation of 5 hmC can be used as a marker for TET3c target regions. 展开更多
关键词 Arabidopsis thaliana DNA Methylation DNA Demethylation ten-eleven-translocation (TET) Proteins dioxygenase 5-Hydroxy-methylcytosine (5 hmC) 5-Formyl-Cytosine 1.
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