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Spectroscopy and molecular simulation on the interaction of Nano-Kaempferol prepared by oil-in-water with two carrier proteins: An investigation of protein-protein interaction.
Kaffash, Maryam; Tolou-Shikhzadeh-Yazdi, Shakiba; Soleimani, Samane; Hoseinpoor, Saeideh; Saberi, Mohammad Reza; Chamani, Jamshidkhan.
Affiliation
  • Kaffash M; Department of Biology, Mashhad Branch, Islamic Azad University, Mashhad, Iran.
  • Tolou-Shikhzadeh-Yazdi S; Department of Biology, Mashhad Branch, Islamic Azad University, Mashhad, Iran.
  • Soleimani S; Department of Biology, Mashhad Branch, Islamic Azad University, Mashhad, Iran.
  • Hoseinpoor S; Department of Biology, Mashhad Branch, Islamic Azad University, Mashhad, Iran.
  • Saberi MR; Department of Medicinal Chemistry, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.
  • Chamani J; Department of Biology, Mashhad Branch, Islamic Azad University, Mashhad, Iran. Electronic address: chamani.j@ut.ac.ir.
Spectrochim Acta A Mol Biomol Spectrosc ; 309: 123815, 2024 Mar 15.
Article in En | MEDLINE | ID: mdl-38154302
ABSTRACT
In this work, the interaction of human serum albumin (HSA) and human holo-transferrin (HTF) with the prepared Nano-Kaempferol (Nano-KMP) through oil-in-water procedure was investigated in the form of binary and ternary systems by the utilization of different spectroscopy techniques along with molecular simulation and cancer cell experiments. According to fluorescence spectroscopy outcomes, Nano-KMP is capable of quenching both proteins as binary systems by a static mechanism, while in the form of (HSA-HTF) Nano-KMP as the ternary system, an unlinear Stern-Volmer plot was elucidated with the occurrence of both dynamic and static fluorescence quenching mechanisms in the binding interaction. In addition, the two acquired Ksv values in the ternary system signified the existence of two sets of binding sites with two different interaction behaviors. The binding constant values of HSA-Nano KMP, HTF-Nano-KMP, and (HSA-HTF) Nano-KMP complexes formation were (2.54 ± 0.03) × 104, (2.15 ± 0.02) × 104 and (1.43 ± 0.04) × 104M-1at the first set of binding sites and (4.68 ± 0.05) × 104 M-1 at the second set of binding sites, respectively. The data of thermodynamic parameters confirmed the major roles of hydrogen binding and van der Waals forces in the formation of HSA-Nano KMP and HTF-Nano KMP complexes. The thermodynamic parameter values of (HSA-HTF) Nano KMP revealed the dominance of hydrogen binding and van der Waals forces in the first set of binding sites and hydrophobic forces for the second set of binding sites. Resonance light scattering (RLS) analysis displayed the existence of a different interaction behavior for HSA-HTF complex in the presence of Nano-KMP as the ternary system. Moreover, circular dichroism (CD) technique affirmed the conformational changes of the secondary structure of proteins as binary and ternary systems. Molecular docking and molecular dynamics simulations (for 100 ns) were performed to investigate the mechanism of KMP binding to HSA, HTF, and HSA-HTF. Next to observing a concentration and time-dependent cytotoxicity, the down regulation of PI3K/AkT/mTOR pathway resulted in cell cycle arrest in SW480 cells.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phosphatidylinositol 3-Kinases / Serum Albumin, Human Limits: Humans Language: En Journal: Spectrochim Acta A Mol Biomol Spectrosc / Spectrochim. acta, Part A, Mol. biomol. spectrosc. (Print) / Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (Print) Journal subject: BIOLOGIA MOLECULAR Year: 2024 Document type: Article Affiliation country: Iran Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phosphatidylinositol 3-Kinases / Serum Albumin, Human Limits: Humans Language: En Journal: Spectrochim Acta A Mol Biomol Spectrosc / Spectrochim. acta, Part A, Mol. biomol. spectrosc. (Print) / Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (Print) Journal subject: BIOLOGIA MOLECULAR Year: 2024 Document type: Article Affiliation country: Iran Country of publication: United kingdom