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铸造联合银汞充填的多桩核体修复多根后牙残冠 被引量:1
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作者 唐伟成 蒋萍 《华西口腔医学杂志》 CAS CSCD 北大核心 2005年第6期541-542,共2页
关键词 分体铸造桩核 后牙残冠 核体修复 银汞充填 多根 联合 牙冠大面积缺损 桩核冠修复 残冠修复
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核桩、核体修复后牙残根残冠的临床观察
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作者 赵畅 韩龙 《齐齐哈尔医学院学报》 2004年第4期406-406,共1页
关键词 核桩 核体修复 牙残根残冠 临床资料 根管治疗
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Histone variants: the artists of eukaryotic chromatin 被引量:4
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作者 LI Min FANG YuDa 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第3期232-239,共8页
The eukaryotic genome is packaged into a complex nucleoprotein structure named chromatin, balancing the compactness of genome and the accessibility of regulatory proteins and RNA polymerases to DNA. The mechanisms of ... The eukaryotic genome is packaged into a complex nucleoprotein structure named chromatin, balancing the compactness of genome and the accessibility of regulatory proteins and RNA polymerases to DNA. The mechanisms of the regulation of chromatin dynamics include the post-translational modification of histones, alteration of nucleosome positions by chromatin remodelers, replacement of canonical histones by histone variants with the aid of histone chaperones, and dynamic organization of the three-dimensional genome in the small nucleus. Histone variants are different from canonical histones by substitution of several amino acid residues or changes in amino acid sequence. Histone variants perform specialized functions such as altering nucleosome stability, dynamics, structure, as well as playing critical roles in a range of biological processes like transcriptional regulation, DNA repair and recombination, development and immune responses. Here we discuss how histone variants, their modification and specific loading to chromatin are involved in transcriptional regulation, DNA repair and plant development. 展开更多
关键词 histone variants histone modification gene regulation DNA repair stress responsiveness
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