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CHARGE DISTRIBUTION SURFACE PROPERTIES OF THE TOBACCO MOSAIC VIRUS 4-NM CENTRAL-PORE

机译:烟草花叶病毒4-NM中心孔的电荷分布和表面性质

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The uniform distribution of charged amino acids along the exterior surface of the tobacco mosaic virus (TMV) along with its unusual structural stability over a large pH and temperature range has made it a model organism for inorganic deposition and nanostructure fabrication studies on biomolecules. However, the potential engineering applications of the virus's central pore, which is about 300 nm long and 4 nm in diameter, has been overlooked. We aim to expand TMV applications by understanding the surface characteristics of its central pore. We have identified the set of amino acids and atoms that create the surface of the pore, mapped the partial charge distribution of the pore using AMBER9 force fields, and determined the electrostatic potential of the pore surface through Coulomb's law and Poisson-Boltzmann Equation (PBE). Our analysis has revealed that the pore contains a dense helical distribution of negatively charged glutamic amino acid residues, which results in a strong negative electrostatic potential across the pore. This can potentially be used for water filtration by creating overlapping electric double layer within the central pore.
机译:沿着烟草叶片病毒(TMV)的外表面的带电氨基酸的均匀分布以及其在大的pH和温度范围内的不寻常的结构稳定性使其成为无机沉积和纳米结构制造研究的模型生物体上的生物分子。然而,已经忽视了病毒中央孔径的潜在工程应用,该孔径约为300nm和4nm的直径,已经被忽视了。我们的目标是通过了解其中心孔的表面特征来扩展TMV应用。我们已经鉴定了产生孔隙表面的氨基酸和原子的组,使用Amber9力场映射孔的部分电荷分布,并通过库仑的法律和泊松 - Boltzmann等式确定孔表面的静电电位(PBE )。我们的分析表明,孔隙含有带负电荷的谷氨酸氨基酸残基的致密螺旋分布,导致孔隙中的强负静电潜力。这可以通过在中心孔内产生重叠的电双层来用于水过滤。

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