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五环三萜类化合物与Keap1-Nrf2蛋白-蛋白结合位点结合的计算机模拟证据

In silico Evidence for Binding of Pentacyclic Triterpenoids to Keap1-Nrf2 Protein-Protein Binding Site.

作者信息

Kamble Sarika M, Patel Harun M, Goyal Sameer N, Noolvi Malleshappa N, Mahajan Umesh B, Ojha Shreesh, Patil Chandragouda R

机构信息

R. C. Patel Institute of Pharmaceutical Education and Research, Karwand Naka, Shirpur, District: Dhule, Maharashtra 425405, India.

Dhanvantary College of Pharmacy, Kim [East], Near Railway station, Kudsad Road, Surat, 394110, Gujarat, India.

出版信息

Comb Chem High Throughput Screen. 2017;20(3):215-234. doi: 10.2174/1386207319666161214111822.

Abstract

AIM AND OBJECTIVE

Kelch like ECH-associated protein 1 (Keap1) and Nuclear factor-E2 related factor 2 (Nrf2) binding is a key step in the ubiquitination and degradation of Nrf2. The compounds inhibiting this binding exert antioxidant actions. Naturally occurring pentacyclic triterpenoids (PTs) and their synthetic derivatives are projected as activators of Nrf2 signalling. The 16-mer Nrf2 peptide binding site on Keap-1 (PDB: 2 FLU) is proposed to be the prospective target where pentacyclic triterpenoid may exert protein-protein interaction.

MATERIAL AND METHOD

In the present study, seventy seven PTs of natural and synthetic origin are screened for Nrf2 stimulatory activity using online PASS (Prediction of Activity Spectrum of Substances) software followed by in silico molecular docking against 16-mer Nrf2 peptide binding site on Keap-1. This virtual screening reveals that Nrf2 stimulatory PTs dock on the 16-mer peptide binding site on Keap-1 and may exert their biological activities by interfering with the Keap-1 and Nrf2 binding.

RESULTS

In the present study shows that the small molecules like PT's bind to keap 1 pocket where the 16 mer peptide of Neh2 domain of Nrf2. High docking score of -10.53, -9.08, -8.36, -7.94, -7.49 and -7.18 is shown by glycyrrhizin, asiatic acid, medecassic acid, barrigenic acid, rotundic acid, ursolic acid, respectively.

CONCLUSION

The identified hits such as asiatic acid and medecassic acid represent a very promising starting point for the development of potent Nrf2 stimulator. The natural PTs are more promising than the most potent synthetic derivatives of oleanolic acid like CDDO, CDDO-methyl and CDDOimidazol.

摘要

目的

Kelch样ECH相关蛋白1(Keap1)与核因子E2相关因子2(Nrf2)的结合是Nrf2泛素化和降解的关键步骤。抑制这种结合的化合物具有抗氧化作用。天然存在的五环三萜类化合物(PTs)及其合成衍生物被认为是Nrf2信号通路的激活剂。Keap-1上的16聚体Nrf2肽结合位点(PDB:2 FLU)被认为是五环三萜类化合物可能发挥蛋白质-蛋白质相互作用的潜在靶点。

材料与方法

在本研究中,使用在线PASS(物质活性谱预测)软件筛选了77种天然和合成来源的PTs的Nrf2刺激活性,随后对Keap-1上的16聚体Nrf2肽结合位点进行了计算机模拟分子对接。这种虚拟筛选表明,具有Nrf2刺激活性的PTs对接在Keap-1上的16聚体肽结合位点上,并可能通过干扰Keap-1和Nrf2的结合来发挥其生物活性。

结果

本研究表明,像PTs这样的小分子与Keap 1口袋结合,Nrf2的Neh2结构域的16聚体肽位于该口袋中。甘草酸、积雪草苷、中肌醇六磷酸、原儿茶酸、圆柚酸、熊果酸的对接分数分别为-10.53、-9.08、-8.36、-7.94、-7.49和-7.18。

结论

已鉴定出的如积雪草苷和中肌醇六磷酸等命中物代表了开发强效Nrf2刺激剂的非常有前景的起点。天然PTs比齐墩果酸最有效的合成衍生物如CDDO、CDDO-甲基和CDDO咪唑更有前景。

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