Hoda Nasimul, Naz Huma, Jameel Ehtesham, Shandilya Ashutosh, Dey Sharmistha, Hassan Md Imtaiyaz, Ahmad Faizan, Jayaram B
a Department of Chemistry , Jamia Millia Islamia , Jamia Nagar, New Delhi 110025 , India.
b Centre for Interdisciplinary Research in Basic Sciences , Jamia Millia Islamia , Jamia Nagar, New Delhi 110025 , India.
J Biomol Struct Dyn. 2016;34(3):572-84. doi: 10.1080/07391102.2015.1046934. Epub 2015 Jun 5.
Calcium-calmodulin-dependent protein kinase IV (CAMK4) plays significant role in the regulation of calcium-dependent gene expression, and thus, it is involved in varieties of cellular functions such as cell signaling and neuronal survival. On the other hand, curcumin, a naturally occurring yellow bioactive component of turmeric possesses wide spectrum of biological actions, and it is widely used to treat atherosclerosis, diabetes, cancer, and inflammation. It also acts as an antioxidant. Here, we studied the interaction of curcumin with human CAMK4 at pH 7.4 using molecular docking, molecular dynamics (MD) simulations, fluorescence binding, and surface plasmon resonance (SPR) methods. We performed MD simulations for both neutral and anionic forms of CAMK4-curcumin complexes for a reasonably long time (150 ns) to see the overall stability of the protein-ligand complex. Molecular docking studies revealed that the curcumin binds in the large hydrophobic cavity of kinase domain of CAMK4 through several hydrophobic and hydrogen-bonded interactions. Additionally, MD simulations studies contributed in understanding the stability of protein-ligand complex system in aqueous solution and conformational changes in the CAMK4 upon binding of curcumin. A significant increase in the fluorescence intensity at 495 nm was observed (λexc = 425 nm), suggesting a strong interaction of curcumin to the CAMK4. A high binding affinity (KD = 3.7 × 10(-8) ± .03 M) of curcumin for the CAMK4 was measured by SPR further indicating curcumin as a potential ligand for the CAMK4. This study will provide insights into designing a new inspired curcumin derivatives as therapeutic agents against many life-threatening diseases.
钙调蛋白依赖性蛋白激酶IV(CAMK4)在钙依赖性基因表达的调控中发挥着重要作用,因此,它参与了多种细胞功能,如细胞信号传导和神经元存活。另一方面,姜黄素是姜黄中天然存在的黄色生物活性成分,具有广泛的生物学作用,广泛用于治疗动脉粥样硬化、糖尿病、癌症和炎症。它还具有抗氧化作用。在此,我们使用分子对接、分子动力学(MD)模拟、荧光结合和表面等离子体共振(SPR)方法研究了姜黄素在pH 7.4条件下与人类CAMK4的相互作用。我们对CAMK4-姜黄素复合物的中性和阴离子形式进行了相当长时间(150 ns)的MD模拟,以观察蛋白质-配体复合物的整体稳定性。分子对接研究表明,姜黄素通过几种疏水和氢键相互作用结合在CAMK4激酶结构域的大疏水腔内。此外,MD模拟研究有助于理解蛋白质-配体复合物系统在水溶液中的稳定性以及姜黄素结合后CAMK4的构象变化。在495 nm处观察到荧光强度显著增加(λexc = 425 nm),表明姜黄素与CAMK4有强烈相互作用。通过SPR测量了姜黄素对CAMK4的高结合亲和力(KD = 3.7 × 10(-8) ±.03 M),进一步表明姜黄素是CAMK4的潜在配体。这项研究将为设计新型受启发的姜黄素衍生物作为治疗多种危及生命疾病的药物提供见解。