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首页> 外文期刊>RSC Advances >Predicting the binding properties of single walled carbon nanotubes (SWCNT) with an ADP/ATP mitochondrial carrier using molecular docking, chemoinformatics, and nano-QSBR perturbation theory
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Predicting the binding properties of single walled carbon nanotubes (SWCNT) with an ADP/ATP mitochondrial carrier using molecular docking, chemoinformatics, and nano-QSBR perturbation theory

机译:使用分子对接,化学信息学和纳米QSBR扰动理论预测与ADP / ATP线粒体载体的单壁碳纳米管(SWCNT)的结合特性

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摘要

Interactions between the single walled carbon nanotube (SWCNT) family and a mitochondrial ADP/ATP carrier (ANT-1) were evaluated using constitutional (functional groups, number of carbon atoms, etc.) and electronic nanodescriptors defined by (n, m)-Hamada indexes (armchair, zig-zag and chiral). The Free Energy of Binding (FEB) was determined by molecular docking simulation and the results showed that FEB was statistically more negative (p < 0.05), following the order SWCNT-COOH > SWCNT-OH > SWCNT, suggesting that polar groups favor the anchorage to ANT-1. In this regard, it was showed that key ANT-1 amino acids (Arg 79, Asn 87, Lys 91, Arg 187, Arg 234 and Arg 279) responsible for ADP-transport were conserved in ANT-1 from different species examined to predict SWCNT interactions, including shrimp Litopenaeus vannamei and fish Danio rerio commonly employed in ecotoxicology. The SWCNT-ANT-1 inter-atomic distances for the key ANT-1 amino acids were similar to that with carboxyatractyloside, a classical inhibitor of ANT-1. Significant linear relationships between FEB and n-Hamada index were found for zig-zag SWCNT and SWCNT-COOH (R-2 = 0.95 in both cases). A Perturbation Theory-Nano-Quantitative Structure-Binding Relationship (PT-NQSBR) model was fitted that was able to distinguish between strong (FEB < -14.7 kcal mol(-1)) and weak (FEB >= -14.7 kcal mol(-1)) SWCNT-ANT-1 interactions. A simple ANT-1-inhibition respiratory assay employing mitochondria suspension from L. vannamei, showed good accordance with the predicted model. These results indicate that this methodology can be employed in massive virtual screenings and used for making regulatory decisions in nanotoxicology.
机译:使用结构(官能团,碳原子的数量等)的单壁碳纳米管(SWCNT)的家庭和线粒体ADP / ATP载体(ANT-1)之间的相互作用进行了评价,并通过定义电子nanodescriptors(N,M) - 滨田指数(扶手椅,Z字形和手性)。自由能结合的(FEB)通过分子对接模拟来确定,结果表明,FEB统计学更负(P <0.05),按照顺序SWCNT-COOH> SWCNT-OH> SWCNT,表明极性基团有利于锚固到ANT-1。在这方面,它是显示来自不同物种的检查,以预测该键ANT-1氨基酸(精氨酸79,天冬酰胺87,赖氨酸91,精氨酸187,精氨酸234和Arg 279)负责ADP传输在ANT-1是保守SWCNT的相互作用,包括虾南美白对虾和鱼斑马在生态毒理学鱼普遍采用。的SWCNT-ANT-1为键ANT-1氨基酸的原子间距离分别为类似于用carboxyatractyloside,ANT-1的经典抑制剂。被发现的FEB和正滨田指数之间显著线性关系Z字形SWCNT和SWCNT-COOH(R-2在这两种情况下= 0.95)。甲微扰理论-纳米定量结构 - 绑定关系(PT-NQSBR)模型拟合,这是能够强之间进行区分(FEB <-14.7千卡摩尔(-1))和弱(FEB> = -14.7千卡摩尔( - 1))SWCNT-ANT-1的相互作用。一个简单的ANT-1抑制呼吸测定用人线粒体从凡纳滨对虾的悬浮液,表现出根据预测模型的良好。这些结果表明,这种方法可以在大规模虚拟筛选使用,并用于制造纳米毒理学监管决定。

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