首页> 美国卫生研究院文献>Journal of Genetic Engineering Biotechnology >In silico structural and functional modelling of Antifreeze protein (AFP) sequences of Ocean pout (Zoarces americanus Bloch Schneider 1801)
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In silico structural and functional modelling of Antifreeze protein (AFP) sequences of Ocean pout (Zoarces americanus Bloch Schneider 1801)

机译:在计算机模拟中对大嘴p的抗冻蛋白(AFP)序列进行结构和功能建模(美洲佐洛斯Bloch和Schneider 1801)

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摘要

Antifreeze proteins (AFPs) are known to polypeptide components formed by certain plants, animals, fungi and bacteria which support to survive in sub-zero temperature. Current study highlighted the seven different antifreeze proteins of fish Ocean pout (Zoarces americanus), in which protein (amino acids sequence) were collected from National Centre for Biotechnology Information and finely characterized using several in silico tools. Such biocomputational techniques applied to figure out the physicochemical, functional and conformational characteristics of targeted AFPs. Multiple physicochemical properties such as Isoelectric Point, Extinction Coefficient and Instability Index, Aliphatic Index, Grand Average Hydropathy were calculated and analysed by ExPASy-ProtParam prediction web server. EMBOSS: pepwheel online tool was used to represent the protein sequences in a helical form. The primary structure analysis shows that most of the AFPs are hydrophobic in nature due to the high content of non-polar residues. The secondary structure of these proteins was calculated using SOPMA tool. SOSUI server and CYS_REC program also run for ideal prediction of transmembrane helices and disulfide bridges of experimental proteins respectively. The modelling of 3D structures of seven desired AFPs were executed by the homology modelling programmes; SWISS MODEL and ProSA web server. UCSF Chimera, Antheprot 3D, PyMOL and RAMPAGE were used to visualize and analysis of the structural variation of the predicted protein model. MEGA7.0.9 software used to know the phylogenetic relationship among these AFPs. These models offered excellent and reliable baseline information for functional characterization of the experimentally derived protein domain composition by using the advanced tools and techniques of Computational Biology.
机译:已知抗冻蛋白(AFP)是由某些植物,动物,真菌和细菌形成的多肽成分,这些成分支持在零度以下的温度下生存。当前的研究强调了鱼类大嘴p(Zoarces americanus)的7种不同的抗冻蛋白,其中的蛋白(氨基酸序列)是从美国国家生物技术信息中心收集的,并使用多种计算机工具进行了精细表征。此类生物计算技术可用于确定目标AFP的物理化学,功能和构象特征。通过ExPASy-ProtParam预测Web服务器计算并分析了多个物理化学性质,如等电点,消光系数和不稳定性指数,脂肪指数,总体平均亲水性。 EMBOSS:使用pepwheel在线工具以螺旋形式表示蛋白质序列。一级结构分析表明,由于非极性残基含量高,大多数AFP本质上是疏水的。这些蛋白质的二级结构是使用SOPMA工具计算的。 SOSUI服务器和CYS_REC程序也可以运行,分别用于理想地预测实验蛋白的跨膜螺旋和二硫键。通过同源性建模程序执行了七个所需AFP的3D结构的建模。 SWISS MODEL和ProSA Web服务器。 UCSF Chimera,Antheprot 3D,PyMOL和RAMPAGE用于可视化和分析预测的蛋白质模型的结构变异。 MEGA7.0.9软件用于了解这些AFP之间的系统发育关系。这些模型通过使用先进的计算生物学工具和技术,为表征实验衍生的蛋白质结构域组成提供了功能强大且可靠的基线信息。

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