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Protein Nano-Object Integrator (ProNOI) for generating atomic style objects for molecular modeling

机译:蛋白质纳米物体集成器(ProNOI),用于生成用于分子建模的原子样式物体

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Background With the progress of nanotechnology, one frequently has to model biological macromolecules simultaneously with nano-objects. However, the atomic structures of the nano objects are typically not available or they are solid state entities. Because of that, the researchers have to investigate such nano systems by generating models of the nano objects in a manner that the existing software be able to carry the simulations. In addition, it should allow generating composite objects with complex shape by combining basic geometrical figures and embedding biological macromolecules within the system. Results Here we report the Protein Nano-Object Integrator (ProNOI) which allows for generating atomic-style geometrical objects with user desired shape and dimensions. Unlimited number of objects can be created and combined with biological macromolecules in Protein Data Bank (PDB) format file. Once the objects are generated, the users can use sliders to manipulate their shape, dimension and absolute position. In addition, the software offers the option to charge the objects with either specified surface or volumetric charge density and to model them with user-desired dielectric constants. According to the user preference, the biological macromolecule atoms can be assigned charges and radii according to four different force fields: Amber, Charmm, OPLS and PARSE. The biological macromolecules and the atomic-style objects are exported as a position, charge and radius (PQR) file, or if a default dielectric constant distribution is not selected, it is exported as a position, charge, radius and epsilon (PQRE) file. As illustration of the capabilities of the ProNOI, we created a composite object in a shape of a robot, aptly named the Clemson Robot, whose parts are charged with various volumetric charge densities and holds the barnase-barstar protein complex in its hand. Conclusions The Protein Nano-Object Integrator (ProNOI) is a convenient tool for generating atomic-style nano shapes in conjunction with biological macromolecule(s). Charges and radii on the macromolecule atoms and the atoms in the shapes are assigned according to the user’s preferences allowing various scenarios of modeling. The default output file is in PQR (PQRE) format which is readable by almost any software available in biophysical field. It can be downloaded from: http://compbio.clemson.edu/downloadDir/ProNO_integrator.tar.gz webcite
机译:背景技术随着纳米技术的发展,人们经常必须同时对生物大分子和纳米物体进行建模。但是,纳米物体的原子结构通常不可用,或者它们是固态实体。因此,研究人员必须通过以现有软件能够进行模拟的方式生成纳米物体的模型来研究此类纳米系统。此外,它应该允许通过组合基本几何图形并将生物大分子嵌入系统中来生成具有复杂形状的复合对象。结果我们在此报告了蛋白质纳米物体集成器(ProNOI),它可以生成具有用户所需形状和尺寸的原子型几何物体。可以创建无限数量的对象并将其与蛋白质数据库(PDB)格式文件中的生物大分子结合。生成对象后,用户可以使用滑块来操纵其形状,尺寸和绝对位置。此外,该软件还提供了用指定的表面电荷或体积电荷密度对物体充电并使用用户所需的介电常数对其建模的选项。根据用户的喜好,可以根据四个不同的力场为生物大分子原子分配电荷和半径:琥珀色,魅力,OPLS和PARSE。生物大分子和原子样式对象导出为位置,电荷和半径(PQR)文件,或者如果未选择默认介电常数分布,则将其导出为位置,电荷,半径和epsilon(PQRE)文件。为了说明ProNOI的功能,我们创建了一个机器人形状的复合对象,恰当地命名为Clemson机器人,该机器人的各个部分充满了不同的体积电荷密度,并且手中握有Barnase-barstar蛋白复合物。结论蛋白质纳米物体整合剂(ProNOI)是一种与生物大分子结合生成原子型纳米形状的便捷工具。大分子原子和形状原子上的电荷和半径是根据用户的偏好分配的,从而可以进行各种建模。默认输出文件为PQR(PQRE)格式,几乎可以在生物物理领域中使用的任何软件读取。可以从以下网站下载:http://compbio.clemson.edu/downloadDir/ProNO_integrator.tar.gz网站

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