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Modeling biominerals formed by apatites and DNA

机译:建模由磷灰石和DNA组成的生物矿物

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摘要

Different aspects of biominerals formed by apatite and DNA have been investigated using computer modeling tools. Firstly, the structure and stability of biominerals in which DNA molecules are embedded into hydroxyapatite and fluoroapatite nanopores have been examined by combining different molecular mechanics methods. After this, the early processes in the nucleation of hydroxyapatite at a DNA template have been investigated using molecular dynamics simulations. Results indicate that duplexes of DNA adopting a B double helix can be encapsulated inside nanopores of hydroxyapatite without undergoing significant distortions in the inter-strand hydrogen bonds and the intra-strand stacking. This ability of hydroxyapatite is practically independent of the DNA sequence, which has been attributed to the stabilizing role of the interactions between the calcium atoms of the mineral and the phosphate groups of the biomolecule. In contrast, the fluorine atoms of fluoroapatite induce pronounced structural distortions in the double helix when embedded in a pore of the same dimensions, resulting in the loss of its most relevant characteristics. On the other hand, molecular dynamics simulations have allowed us to observe the formation of calcium phosphate clusters at the surface of the B-DNA template. Electrostatic interactions between the phosphate groups of DNA and Ca2+ have been found to essential for the formation of stable ion complexes, which were the startingpoint of calcium phosphate clusters by incorporating from thesolution.Electronic supplementary materialThe online version of this article (doi:10.1186/1559-4106-8-10) contains supplementarymaterial, which is available to authorized users.
机译:使用计算机建模工具已经研究了磷灰石和DNA形成的生物矿物质的不同方面。首先,通过结合不同的分子力学方法研究了将DNA分子嵌入羟基磷灰石和氟磷灰石纳米孔中的生物矿物的结构和稳定性。此后,已使用分子动力学模拟研究了在DNA模板上羟基磷灰石成核的早期过程。结果表明采用B双螺旋的DNA的双链体可以封装在羟基磷灰石的纳米孔内,而不会在链间氢键和链内堆叠中发生明显的变形。羟磷灰石的这种能力实际上不依赖于DNA序列,这归因于矿物的钙原子与生物分子的磷酸基团之间相互作用的稳定作用。相反,当嵌入相同尺寸的孔中时,氟磷灰石的氟原子在双螺旋中引起明显的结构变形,从而导致失去其最相关的特性。另一方面,分子动力学模拟使我们能够观察到B-DNA模板表面磷酸钙簇的形成。发现DNA磷酸基团与Ca 2 + 之间的静电相互作用对于形成稳定的离子络合物至关重要,这是开始通过从电子补充材料本文的在线版本(doi:10.1186 / 1559-4106-8-10)包含补充信息资料,可供授权用户使用。

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