Literature DB >> 25929263

Curcumin specifically binds to the human calcium-calmodulin-dependent protein kinase IV: fluorescence and molecular dynamics simulation studies.

Nasimul Hoda1, Huma Naz2, Ehtesham Jameel3, Ashutosh Shandilya4,5, Sharmistha Dey6, Md Imtaiyaz Hassan2, Faizan Ahmad2, B Jayaram4,5.   

Abstract

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.

Entities:  

Keywords:  calcium–calmodulin-dependent protein kinase IV; curcumin; docking; drug target; high affinity ligand; molecular dynamics simulation

Mesh:

Substances:

Year:  2015        PMID: 25929263     DOI: 10.1080/07391102.2015.1046934

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  13 in total

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5.  Elucidation of Dietary Polyphenolics as Potential Inhibitor of Microtubule Affinity Regulating Kinase 4: In silico and In vitro Studies.

Authors:  Parvez Khan; Shafikur Rahman; Aarfa Queen; Saaliqa Manzoor; Farha Naz; Gulam Mustafa Hasan; Suaib Luqman; Jihoe Kim; Asimul Islam; Faizan Ahmad; Md Imtaiyaz Hassan
Journal:  Sci Rep       Date:  2017-08-25       Impact factor: 4.379

6.  Identification of Potential Inhibitors of Calcium/Calmodulin-Dependent Protein Kinase IV from Bioactive Phytoconstituents.

Authors:  Preeti Gupta; Shama Khan; Zeynab Fakhar; Afzal Hussain; Md Tabish Rehman; Mohamed F AlAjmi; Asimul Islam; Faizan Ahmad; Md Imtaiyaz Hassan
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Journal:  ACS Omega       Date:  2020-06-08

8.  Discovery of Hordenine as a Potential Inhibitor of Pyruvate Dehydrogenase Kinase 3: Implication in Lung Cancer Therapy.

Authors:  Saleha Anwar; Taj Mohammad; Anas Shamsi; Aarfa Queen; Shahnaz Parveen; Suaib Luqman; Gulam Mustafa Hasan; Khalid A Alamry; Naved Azum; Abdullah M Asiri; Md Imtaiyaz Hassan
Journal:  Biomedicines       Date:  2020-05-14

9.  MARK4 Inhibited by AChE Inhibitors, Donepezil and Rivastigmine Tartrate: Insights into Alzheimer's Disease Therapy.

Authors:  Anas Shamsi; Saleha Anwar; Taj Mohammad; Mohamed F Alajmi; Afzal Hussain; Md Tabish Rehman; Gulam Mustafa Hasan; Asimul Islam; Md Imtaiyaz Hassan
Journal:  Biomolecules       Date:  2020-05-20

10.  Evaluation of binding and inhibition mechanism of dietary phytochemicals with sphingosine kinase 1: Towards targeted anticancer therapy.

Authors:  Preeti Gupta; Taj Mohammad; Rashmi Dahiya; Sonam Roy; Omar Mohammed Ali Noman; Mohamed F Alajmi; Afzal Hussain; Md Imtaiyaz Hassan
Journal:  Sci Rep       Date:  2019-12-10       Impact factor: 4.379

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