homology modeling
- 网络同源模建;同源建模;同源性模型;同源模拟;同源模拟法
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Homology Modeling and Evolution Trace Analysis of Human Adenovirus Type 3 Hexon
人3型腺病毒六邻体蛋白同源建模及其进化轨迹分析
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According the structure-known protein as template , homology modeling is regarded one of successful structure prediction algorithms .
以已知蛋白质结构为模板的同源建模(HomologyModeling)算法被认为是当前最成功的蛋白质结构预测算法。
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Homology modeling of protein structure is become a focus of structural biology .
蛋白质结构模建已经成为当前结构生物学的一个热点。
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Homology modeling and analysis of three-dimension structure of bovine serum albumin
牛血清白蛋白的同源模建与结构解析
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Homology Modeling for the Structure of the Soluble Segment of TRAIL
可溶性TRAIL分子的同源性模建
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Homology modeling and ligand design of human estrogen receptor subtype 36
雌激素受体36亚型的同源模建以及配体设计
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The three dimensional structure of VL was also modeled by computer homology modeling techniques .
利用同源蛋白结构模建技术,采用计算机辅助分子设计系统模建VL的三维空间结构。
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We can find 12 significant a-helix in homology modeling of the model .
同源建模的模型中我们可以发现12个明显α-螺旋。
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Homology Modeling of the Functional Domain of the Extracellular Region of Human IL-6 Receptor
人白介素6受体胞外区三维结构的同源模拟
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Homology Modeling of Three-dimension Structure of Hepatitis B Surface Antigen Fragment and Its Ligand Design
乙型肝炎表面抗原片段三维结构的同源模建及其配体的设计
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Homology Modeling of Insect and Mammalian GABA Receptors and Insecticide Design
昆虫和哺乳动物GABA受体同源模建及杀虫剂分子设计
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Homology Modeling of the Human Brain and Serum Cholinesterases
人脑和人血清胆碱酯酶三维结构的计算机模拟研究
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Homology Modeling of α - Glucosidase and Its Molecular Docking with Inhibitors
α-葡萄糖苷酶三维结构的同源模建及其对接研究
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Homology Modeling and Molecular Docking Simulation on Dopamine D1-Like Receptor
多巴胺D1样受体的同源模建与分子对接模拟研究
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Homology Modeling and Molecular Docking on A1 adenosine Receptor
腺苷A1受体的同源模拟和分子对接研究
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Homology modeling and molecular docking simulation are used to study the human dopamine D1-like receptor in this article .
本文采用同源模建和分子对接模拟的方法对人多巴胺D1样受体进行研究。
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Homology Modeling and Docking Studies of the α 2A-adrenergic Receptor
α2A-肾上腺素受体的同源模建及与Yohimbine的对接研究
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Homology Modeling and Molecular Docking on Muscarinic M_1 Receptor
毒蕈碱型M1受体的同源模建和分子对接
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Histidine kinase ( YycG ) protein of Streptococcus pneumoniae : Homology modeling and analysis
肺炎链球菌双组份系统中的组氨酸激酶(YycG)的同源模建与分析
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Homology modeling for cytoplasmic region of toil-like receptor 4
TLR4胞内区的同源模建
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This paper presents some bioinformatics analysis and homology modeling of marine microbe alkaline protease , then analytic and validate the modeling .
本论文对一株分离自海洋微生物的碱性蛋白酶进行了生物信息学的分析,并对其空间结构进行了模拟,同时对模建的结果进行了结构质量的分析和检测。
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METHODS To model HIV-1 IN dimer which has two Mg2 + icons in each catalytic core domain , homology modeling method was adopted .
方法用同源模建方法搭建每条单链核心区具有两个Mg2+的IN二聚体模型。
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It was possible to construct a partial 3D-structure of Class ⅲ chitinase of Panax ginseng by homology modeling .
用同源建模法模拟出人参ClassⅢ几丁质酶的空间结构模型;
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Based on the X-ray crystal structures of other annexin family members , the 3-D structure of annexin Bl was generated by homology modeling .
根据annexin家族其它成员晶体结构,采用同源蛋白模建技术构建annexinBl三维结构。
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Homology Modeling of Truncated Porcine Zona Pellucida-3 β
重组猪卵透明带-3β截短型蛋白的同源建模
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Homology Modeling of Bacillus subtilis Tryptophanyl-tRNA Synthetase
枯草杆菌色氨酰tRNA合成酶的同源模建
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The 3D structure of EGFR was constructed using homology modeling , and the complex structures between receptor and ligands were predicted by using molecular mechanics and molecular dynamics .
表皮生长因子受体的三维结构通过同源蛋白模建的方法得到,而抑制剂和靶酶结合复合物结构则通过分子力学和分子动力学结合的方法计算得到。
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Knowledge based protein structure prediction methods such as homology modeling and inverse folding or threading , and ab initio prediction method were reviewed in tertiary structure modeling of protein .
在四级结构预测方面,对基于蛋白质结构认识的结构预测、从头预测方法等进行了综述。
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Though homology modeling methods are efficient when sequence similarity is high , they could just predict rough fold pattern and the credibility descends greatly as sequence similarity decreases .
在序列相似度较高时,同源模型化方法能取得很好的预测效果,但随着相似度的降低,同源模型化方法只能预测出未知蛋白质整体折叠的粗糙模型,可信性大幅下降。
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The methods of Homology modeling not only can rapidly and accurately confirm the three-dimensional structure of amino acid sequence , but also do not fussily cultivate the single crystal .
同源模建方法不需要耗时、繁琐的单晶培养,能比较快速准确地确定已知氨基酸序列的蛋白质三维结构。