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解析突变对结直肠癌进展中c-Src-HK2相互作用的影响以及潜在植物化合物抑制剂的鉴定:一种分子模拟和自由能计算方法

Deciphering Mutational Impacts on c-Src-HK2 Interaction in Colorectal Cancer Progression, and Identification of Potential Phytocompounds Inhibitors: A Molecular Simulation and Free Energy Calculation Approach.

作者信息

Suleman Muhammad, Khan Abbas, Mohammad Sayaf Abrar, Alghamdi Abdullah, Alghamdi Suad A, Alissa Mohammed, Alghamdi Amani, Crovella Sergio

机构信息

Laboratory of Animal Research Center (LARC), Qatar University, Doha, Qatar.

Center for Biotechnology and Microbiology, University of Swat, Swat, Pakistan.

出版信息

Curr Med Chem. 2024 Aug 27. doi: 10.2174/0109298673311962240815055821.

Abstract

BACKGROUND

Colorectal cancer (CRC) stands as the third most widespread cancer worldwide in both men and women, witnessing a concerning rise, especially in younger demographics. Abnormal activation of the Non-Receptor Tyrosine Kinase c-Src has been linked to the advancement of several human cancers, including colorectal, breast, lung, and pancreatic ones. The interaction between c-Src and Hexokinase 2 (HK2) triggers enzyme phosphorylation, significantly boosting glycolysis, and ultimately contributing to the development of CRC.

OBJECTIVES

The objectives of this study are to examine the influence of newly identified mutations on the interaction between c-Src and the HK2 enzyme and to discover potent phytocompounds capable of disrupting this interaction.

METHODS

In this study, we utilized molecular docking to check the effect of the identified mutation on the binding of c-Src with HK2. Virtual drug screening, MD simulation, and binding free energy were employed to identify potent drugs against the binding interface of c-Src and HK2.

RESULTS

Among these mutations, six (W151C, L272P, A296S, A330D, R391H, and P434A) were observed to significantly disrupt the stability of the c-Src structure. Additionally, through molecular docking analysis, we demonstrated that the mutant forms of c-Src exhibited high binding affinities with HK2. The wildtype showed a docking score of -271.80 kcal/mol, while the mutants displayed scores of -280.77 kcal/mol, -369.01 kcal/mol, -324.41 kcal/mol, -362.18 kcal/mol, 266.77 kcal/mol, and -243.28 kcal/mol for W151C, L272P, A296S, A330D, R391H, and P434A respectively. Furthermore, we identified five lead phytocompounds showing strong potential to impede the binding of c-Src with HK2 enzyme, essential for colon cancer progression. These compounds exhibit robust bonding with c-Src with docking scores of -7.37 kcal/mol, -7.26 kcal/mol, -6.88 kcal/mol, -6.81 kcal/mol, and -6.73 kcal/mol. Moreover, these compounds demonstrate dynamic stability, structural compactness, and the lowest residual fluctuation during MD simulation. The binding free energies for the top five hits (-42.44±0.28 kcal/mol, -28.31±0.25 kcal/mol, -34.95±0.44 kcal/mol, -38.92±0.25 kcal/mol, and -30.34±0.27 kcal/mol), further affirm the strong interaction of these drugs with c-Src which might impede the cascade of events that drive the progression of colon cancer.

CONCLUSION

Our findings serve as a promising foundation, paving the way for future discoveries in the fight against colorectal cancer.

摘要

背景

结直肠癌(CRC)是全球男性和女性中第三大最常见的癌症,且呈令人担忧的上升趋势,尤其是在较年轻人群中。非受体酪氨酸激酶c-Src的异常激活与包括结直肠癌、乳腺癌、肺癌和胰腺癌在内的多种人类癌症的进展有关。c-Src与己糖激酶2(HK2)之间的相互作用会触发酶磷酸化,显著促进糖酵解,并最终导致结直肠癌的发展。

目的

本研究的目的是检查新发现的突变对c-Src与HK2酶之间相互作用的影响,并发现能够破坏这种相互作用的有效植物化合物。

方法

在本研究中,我们利用分子对接来检查已鉴定突变对c-Src与HK2结合的影响。采用虚拟药物筛选、分子动力学模拟(MD模拟)和结合自由能来鉴定针对c-Src与HK2结合界面的有效药物。

结果

在这些突变中,观察到六个突变(W151C、L272P、A296S、A330D、R391H和P434A)会显著破坏c-Src结构的稳定性。此外,通过分子对接分析,我们证明c-Src的突变形式与HK2具有高结合亲和力。野生型的对接分数为-271.80 kcal/mol,而突变体W151C、L272P、A296S、A330D、R391H和P434A的对接分数分别为-280.77 kcal/mol、-369.01 kcal/mol、-324.41 kcal/mol、-362.18 kcal/mol、266.77 kcal/mol和-243.28 kcal/mol。此外,我们鉴定出五种先导植物化合物,它们显示出强大的潜力来阻碍c-Src与HK2酶的结合,而这种结合对于结肠癌进展至关重要。这些化合物与c-Src表现出强烈的结合,对接分数分别为-7.37 kcal/mol、-7.26 kcal/mol、-6.88 kcal/mol、-6.81 kcal/mol和-6.73 kcal/mol。此外,这些化合物在MD模拟过程中表现出动态稳定性、结构紧凑性和最低的残余波动。排名前五的命中化合物的结合自由能(-42.44±0.28 kcal/mol、-28.31±0.25 kcal/mol、-34.95±0.44 kcal/mol、-38.92±0.25 kcal/mol和-30.34±0.27 kcal/mol)进一步证实了这些药物与c-Src的强相互作用,这可能会阻碍驱动结肠癌进展的一系列事件。

结论

我们的研究结果是一个有前景的基础,为未来抗击结直肠癌的发现铺平了道路。

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