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Study the effects of metallic ions on the combination of DNA and histones with molecular combing technique
作者姓名:LIUYuying  WANGPengye  DOUShuoxing  XIEPing  WANGWeichi  YINHuawei
作者单位:LaboratoryofSoftMatterPhysics,InstituteofPhysics,ChineseAcademyofSciences,Beijing100080,China
摘    要:The effects of monovalent (Na^ , K^ ) and divalent (Mg^2 , Ca^2 , Mn^2 ) ions on the interaction between DNA and histone are studied using the molecular combing technique. λ-DNA molecules and DNA-histone complexes incubated with metal cations (Na^ , K^ , Mg^2 , Ca^2 , Mn^2 ) are stretched on hydrophobic surfaces, and directly observed by fluorescence microscopy. The results indicate that when these cations are added into the DNA solution, the fluorescence intensities of the stained DNA are reduced differently. The monovalent cations (Na^ , K^ ) inhibit binding of histone to DNA. The divalent cations (Mg^2 , Ca^2 , Mn^2 ) enhance significantly the binding of histone to DNA and the binding of the DNA-histone complex to the hydrophobic surface. Mn^2 also induces condensation and aggregation of the DNA- histone complex.

关 键 词:DNA  组蛋白  金属离子  荧光显微镜法
收稿时间:2004-12-29

Study the effects of metallic ions on the combination of DNA and histones with molecular combing technique
LIUYuying WANGPengye DOUShuoxing XIEPing WANGWeichi YINHuawei.Study the effects of metallic ions on the combination of DNA and histones with molecular combing technique[J].Chinese Science Bulletin,2005,50(8):731-737.
Authors:Yuying Liu  Pengye Wang  Shuoxing Dou  Ping Xie  Weichi Wang  Huawei Yin
Institution:LIU Yuying, WANG Pengye, DOU Shuoxing, XIE Ping, WANG Weichi & YIN Huawei Laboratory of Soft Matter Physics, Institute of Physics, Chinese Acad emy of Sciences, Beijing 100080, China
Abstract:The effects of monovalent (Na+, K4) and divalent (Mg2+, Ca2+, Mn2+) ions on the interaction between DNA and histone are studied using the molecular combing technique. DNA molecules and DNA-histone complexes incubated with metal cations (Na+, K+, Mg2+, Ca2+, Mn2+) are stretched on hydrophobic surfaces, and directly observed by fluorescence microscopy. The results indicate that when these cations are added into the DNA solution, the fluorescence intensities of the stained DNA are reduced differently. The monovalent cations (Na+, K4) inhibit binding of histone to DNA. The divalent cations (Mg2+, Ca2+, Mn2+) enhance significantly the binding of histone to DNA and the binding of the DNA-histone complex to the hydrophobic surface. Mn2+ also induces condensation and aggregation of the DNA-histone complex.
Keywords:DNA  histone  molecular combing  metal cation  fluores- cence microscopy  
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