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核酸二级结构的渐进式教学设计 被引量:1
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作者 田沺 周翔 《化学教育》 CAS 北大核心 2016年第16期16-19,共4页
介绍了核酸二级结构的渐进式教学设计。以核酸二级结构形成的相互作用力为讲授核心,启发学生思考,在氢键和π-π堆积这2个重要因素影响下,核酸碱基之间还有哪些可能的相互作用模式,从而引申出核酸结构的多态性,进一步引出核酸其他重要... 介绍了核酸二级结构的渐进式教学设计。以核酸二级结构形成的相互作用力为讲授核心,启发学生思考,在氢键和π-π堆积这2个重要因素影响下,核酸碱基之间还有哪些可能的相互作用模式,从而引申出核酸结构的多态性,进一步引出核酸其他重要的二级结构。通过这一过程,充分激发学生的发散思维能力。这一教学设计将有效扩展学生对核酸二级结构的认识,激发学习兴趣。 展开更多
关键词 核酸二级结构 糖苷键 氢键 发散式思维 渐进式教学
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改进的免疫粒子群优化算法预测RNA二级结构 被引量:2
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作者 林娟 钟一文 《计算机工程与应用》 CSCD 2012年第1期40-43,75,共5页
针对RNA二级结构预测问题,在SetPSO算法的基础上提出了一种改进的免疫粒子群优化算法,根据RNA折叠的特点,启用免疫记忆算子增加粒子群多样性,有效防止了原方法易陷入局部最优的缺陷。仿真结果表明改进算法能在更短的时间内达到更高的预... 针对RNA二级结构预测问题,在SetPSO算法的基础上提出了一种改进的免疫粒子群优化算法,根据RNA折叠的特点,启用免疫记忆算子增加粒子群多样性,有效防止了原方法易陷入局部最优的缺陷。仿真结果表明改进算法能在更短的时间内达到更高的预测精度。 展开更多
关键词 核糖核酸(RNA)二级结构预测 粒子群优化 免疫记忆算子
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UNAfold在DNA传感器设计中的应用
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作者 张章 汪婷 谢国明 《生物工程前沿(中英文版)》 2015年第1期39-43,共5页
分子诊断中核酸的检测对于了解其在疾病的发生和发展中所起到的作用至关重要。近年来发展的核酸生物传感器因其响应迅速、特异性强、操作简单、易于微型化等优点受到广泛关注。因此对核酸分子杂交和核酸二级结构的预测便具有很重要的意... 分子诊断中核酸的检测对于了解其在疾病的发生和发展中所起到的作用至关重要。近年来发展的核酸生物传感器因其响应迅速、特异性强、操作简单、易于微型化等优点受到广泛关注。因此对核酸分子杂交和核酸二级结构的预测便具有很重要的意义。本文基于Zuker的最小自由能算法所开发的UNAfold,对其在核酸生物传感器设计中所起的作用进行阐述。 展开更多
关键词 DNA传感器 UNAfold 核酸二级结构核酸杂交动力学预测
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RNA secondary structures located in the interchromosomal region of human ACAT1 chimeric mRNA are required to produce the 56-kDa isoform 被引量:5
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作者 Jia Chen Xiao-Nan Zhao +8 位作者 Li Yang Guang-Jing Hu Ming Lu Ying Xiong Xin-Ying Yang Catherine CY Chang Bao-Liang Song Ta-Yuan Chang Bo-Liang Li 《Cell Research》 SCIE CAS CSCD 2008年第9期921-936,共16页
We have previously reported that the human ACAT1 gene produces a chimeric mRNA through the interchromosomal processing of two discontinuous RNAs transcribed from chromosomes 1 and 7. The chimeric mRNA uses AUG1397-139... We have previously reported that the human ACAT1 gene produces a chimeric mRNA through the interchromosomal processing of two discontinuous RNAs transcribed from chromosomes 1 and 7. The chimeric mRNA uses AUG1397-1399 and GGC1274-1276 as translation initiation codons to produce normal 50-kDa ACAT1 and a novel enzymatically active 56-kDa isoform, respectively, with the latter being authentically present in human cells, including human monocyte- derived macrophages. In this work, we report that RNA secondary structures located in the vicinity of the GGC1274-1276 codon are required for production of the 56-kDa isoform. The effects of the three predicted stem-loops (nt 1255-1268, 1286-1342 and 1355-1384) were tested individually by transfecting expression plasmids into cells that contained the wild-type, deleted or mutant stem-loop sequences linked to a partial ACAT1 AUG open reading frame (ORF) or to the ORFs of other genes. The expression patterns were monitored by western blot analyses. We found that the upstream stem-loop1255-1268 from chromosome 7 and downstream stem-loop1286-1342 from chromosome 1 were needed for production of the 56-kDa isoform, whereas the last stem-loop135s-1384 from chromosome 1 was dispensable. The results of experi- ments using both monocistronic and bicistronic vectors with a stable hairpin showed that translation initiation from the GGC1274-1276 codon was mediated by an internal ribosome entry site (IRES). Further experiments revealed that translation initiation from the GGC1274-1276 codon requires the upstream AU-constituted RNA secondary structure and the downstream GC-rich structure. This mechanistic work provides further support for the biological significance of the chimeric nature of the human ACAT1 transcript. 展开更多
关键词 human ACAT1 isoform chimeric human ACAT1 mRNA interchromosomal region RNA secondary structure internal ribosome entry site
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