• 蛋白质结构生物信息学网络服务1600多种不同功能

    This protein structure bioinformatics web service collection has over 1600 different functions.

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  • 利用结构生物信息学方法进行蛋白质理性设计将会在后基因组时代生物研究蛋白药物开发起到越来越重要作用

    Structural bioinformatics based rational protein design will play important role in biological research and development of protein therapeutics in the post genome era.

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  • 蛋白质结构研究已经成为生物信息学中的一个重要课题

    The research of the structure of protein has become an important topic in bioinformatics.

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  • 通过应用最新现代生物信息学蛋白质组技术体系对此酶部分信息结构进行了鉴定

    And through applying newest modern biological informatics and proteome technical system the partial informations and the structure of this new tapy DNAase are further appraised.

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  • 生物信息学基因、基因结构、基因产物功能分析必不可少技术手段。

    Biological information was the essential technique for agricultural science, which could be used to analyze the gene, the gene structure, the function of gene product.

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  • 运用生物信息学方法病毒TK基因基本元件TK蛋白理化性质结构功能进行分析。

    The basic elements of Duck Plague Virus TK gene and physicochemical properties, structure, function of TK protein were analyzed by using bioinformatics method.

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  • 蛋白质结构预测生物信息学主要研究方向蛋白质关联预测是其中的一个重要内容

    The protein structure prediction is a main direction in bioinformatics, and the prediction of protein contact maps is an important content in protein structure prediction.

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  • 蛋白质结构预测生物信息学中的重要课题蛋白质序列是蛋白质结构预测基础

    The structure prediction of proteins is the important problem of biology informatics. And the protein sequence is the base of the structure prediction of proteins.

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  • RNA二级结构预测问题生物信息学一个研究重点

    One of the most important research areas in bioinformatics is RNA secondary structure prediction.

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  • 利用生物信息学技术分析HBVDNAPTP1BP基因染色体定位组织表达,以及编码蛋白的化学物理性质结构特征

    Bioinformatics technique was used to analyze the chromosome mapping and tissue expression of HBVDNAPTP1BP gene, and the chemical-physical property and structural feature of HBVDNAPTP1BP.

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  • 随着人类基因组计划完成应用生物信息学技术预测蛋白质结构功能成为基因组时代一项重要任务

    With the completion of human genome project, prediction and analysis of protein structure and function by using informatics has become one of the most important tasks of after the genome project.

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  • RNA序列结构比对生物信息学中的基本问题

    RNA sequence-structure alignment is a basic problem in bioinformatics.

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  • 序列比对生物信息学中的一项重要任务通过序列比对可以发现生物序列中的功能结构和进化信息

    Sequence alignment is an important task in bioinformatics. We may discover functional, structural and evolutionary information in biological sequences by sequence comparing.

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  • 生物信息学结构层次来定义,它一个学科领域,包含基因组信息获取处理存储分配分析解释所有方面

    Genome informatics is a scientific discipline that encompasses all aspects of genome information acquisition, processing, storage, distribution, analysis, and interpretation. The U. s.

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  • 利用生物信息学软件TVBMV编码蛋白结构进行了预测,结果表明6k2P3蛋白为膜蛋白。

    Structures prediction of TVBMV proteins using bioinformatics software showed that 6k2 and P3 were transmembrane proteins while others were not.

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  • 然后生物信息学方法结构功能作用位点进行分析和预测,并绘制蛋白进化

    The structure and functions of the protein were analyzed by bioinformatics method, and the phylogenetic tree of the protein was drawn.

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  • 并应用生物信息学方法分析基因同源性蛋白结构跨膜拓扑结构

    Bioinformatic methods were employed to analyze the homology of the nucleotide and amino acids sequence of beta subunit gene and its possible protein domain and transmembrane topology.

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  • 应用计算机软件生物信息学站点对抗体结构功能进行分析

    The structure and function of antibody were analyzed with related computer software.

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  • 这个计算系统致力于核糖核酸进行鉴定分析预测结构设计核糖核酸分子这个系统生物信息学软件为基础,满足高性能高吞吐量的需求。

    This system is dedicated to identify, analyze, structurally predict and design RNA molecules on the basis of established bioinformatics software in a high-performance, high-throughput fashion.

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  • 序列比对生物信息学领域一种重要研究方法进行比对可以根据已知序列未知序列结构功能进行快速的预测

    Sequence alignment is an important research method in Bioinformatics. It can predict the structures and functions of unknown sequences by aligning them to the known similar sequences.

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  • 该中心研究领域包括细胞生物信号传导遗传学分子生物学,免疫学结构生物学和生物信息学

    Its research programs include: Cell Biology and Signaling, Genetics and Molecular Biology, Immunology, and Structural Biology and Bioinformatics.

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  • 蛋白拓扑结构预测生物信息学研究热点之一。

    The topology prediction of transmembrane protein is a hot in Bioinformatics.

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  • 在各种生态环境筛选生物新种,监测微生物群落结构结合生物信息学进行微生物基因组研究

    Classification of novel isolates, analysis of microbial population, and study of metagenomics with the support of bioinformatics from variant environments.

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  • 特里·波尔结构生物信息学平台重新建立一个蛋白质工程协助减少免疫原性优化其他财产

    Tripole is a structural bioinformatics platform to assist in the re-engineering of a protein to reduce immunogenicity and optimize other properties.

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  • 特里·波尔结构生物信息学平台重新建立一个蛋白质工程协助减少免疫原性优化其他财产

    Tripole is a structural bioinformatics platform to assist in the re-engineering of a protein to reduce immunogenicity and optimize other properties.

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