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通过虚拟筛选、药代动力学以及对蓖麻毒素A链和蓖麻毒素抑制剂的动力学预测来研究分子相互作用的计算视角

A computational perspective of molecular interactions through virtual screening, pharmacokinetic and dynamic prediction on ribosome toxin A chain and inhibitors of Ricinus communis.

作者信息

Kumar R Barani, Suresh M Xavier

机构信息

Department of Bioinformatics, Sathyabama University, Chennai, Tamil Nadu, India.

出版信息

Pharmacognosy Res. 2012 Jan;4(1):2-10. doi: 10.4103/0974-8490.91027.

Abstract

BACKGROUND

Ricin is considered to be one of the most deadly toxins and gained its favor as a bioweapon that has a serious social and biological impact, due to its widespread nature and abundant availability. The hazardous effects of this toxin in human being are seen in almost all parts of the organ system. The severe consequences of the toxin necessitate the need for developing potential inhibitors that can effectively block its interaction with the host system.

MATERIALS AND METHODS

In order to identify potential inhibitors that can effectively block ricin, we employed various computational approaches. In this work, we computationally screened and analyzed 66 analogs and further tested their ADME/T profiles. From the kinetic and toxicity studies we selected six analogs that possessed appropriate pharmacokinetic and dynamic property. We have also performed a computational docking of these analogs with the target.

RESULTS

On the basis of the dock scores and hydrogen bond interactions we have identified analog 64 to be the best interacting molecule. Molecule 64 seems to have stable interaction with the residues Tyr80, Arg180, and Val81. The pharmacophore feature that describes the key functional features of a molecule was also studied and presented.

CONCLUSION

The pharmacophore features of the drugs provided suggests the key functional groups that can aid in the design and synthesis of more potential inhibitors.

摘要

背景

蓖麻毒素被认为是最致命的毒素之一,由于其分布广泛且易于获取,它作为一种具有严重社会和生物影响的生物武器而受到青睐。这种毒素对人体的有害影响几乎在器官系统的所有部位都能看到。毒素的严重后果使得有必要开发能够有效阻断其与宿主系统相互作用的潜在抑制剂。

材料与方法

为了鉴定能够有效阻断蓖麻毒素的潜在抑制剂,我们采用了各种计算方法。在这项工作中,我们对66种类似物进行了计算筛选和分析,并进一步测试了它们的ADME/T特性。通过动力学和毒性研究,我们选择了六种具有合适药代动力学和动力学性质的类似物。我们还对这些类似物与靶点进行了计算对接。

结果

基于对接分数和氢键相互作用,我们确定类似物64是相互作用最佳的分子。分子64似乎与残基Tyr80、Arg180和Val81具有稳定的相互作用。还研究并展示了描述分子关键功能特征的药效团特征。

结论

所提供药物的药效团特征表明了可有助于设计和合成更多潜在抑制剂的关键官能团。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c62/3250034/db33c6896f98/PR-4-2-g001.jpg

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