The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies

Self-assembly of phenylalanine creates Phe fibers which is the characteristic fiber model found in amyloid fibrils linked with various neurodegenerative diseases. L-Isoleucyl-L-Phenylalanine (IlePhe) dipeptide is composed of isoleucine and phenylalanine amino acids, having fibrillary structure simil...

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Main Authors: Bilge Bicak, Yagmur Kokcu, Serda Kecel-Gunduz, Aysen E. Ozel, Sevim Akyuz
Format: Article
Language:English
Published: Natural and Engineering Sciences 2020-02-01
Series:Natural and Engineering Sciences
Subjects:
Online Access:https://www.nesciences.com/download.php?id=431
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spelling doaj-5a732439cce246979141c6bd0fd736862021-02-14T21:04:45ZengNatural and Engineering SciencesNatural and Engineering Sciences2458-89892458-89892020-02-0151182910.28978/nesciences.691673The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking StudiesBilge BicakYagmur Kokcu Serda Kecel-GunduzAysen E. OzelSevim AkyuzSelf-assembly of phenylalanine creates Phe fibers which is the characteristic fiber model found in amyloid fibrils linked with various neurodegenerative diseases. L-Isoleucyl-L-Phenylalanine (IlePhe) dipeptide is composed of isoleucine and phenylalanine amino acids, having fibrillary structure similar to nanotube forms of the core recognition motif of Alzheimer's β-amyloid polypeptide. The integrated coordination of neuronal responses via the PI3-K / Akt pathway has a significant functional impact on Alzheimer's disease. Exposure to Aβ in neuronal cultures leads to deterioration of PI3-K, Akt and mTOR signaling, which may cause cognitive loss during disease. Modulation of PI3-K, Akt and mTOR signal activity need aim to reduce or eliminate the accumulation of potential neurotoxins. The therapeutic approaches aimed to normalize neuronal responses on these pathways or activation of PI3-kinase have a protective effect against cognitive decline in animal models of Alzheimer disease. This study aims to determine the interaction of PI3-kinase with Ile-Phe dipeptide having amyloid fibril structure by three-dimensional simulation techniques such as molecular dynamics (with the GROMACS program) and molecular docking techniques (Schrodinger Software program).https://www.nesciences.com/download.php?id=431ile-phemolecular dynamicsmolecular dockingadme
collection DOAJ
language English
format Article
sources DOAJ
author Bilge Bicak
Yagmur Kokcu
Serda Kecel-Gunduz
Aysen E. Ozel
Sevim Akyuz
spellingShingle Bilge Bicak
Yagmur Kokcu
Serda Kecel-Gunduz
Aysen E. Ozel
Sevim Akyuz
The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies
Natural and Engineering Sciences
ile-phe
molecular dynamics
molecular docking
adme
author_facet Bilge Bicak
Yagmur Kokcu
Serda Kecel-Gunduz
Aysen E. Ozel
Sevim Akyuz
author_sort Bilge Bicak
title The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies
title_short The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies
title_full The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies
title_fullStr The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies
title_full_unstemmed The Interaction of Ile-Phe Dipeptide with Phosphatidylinositide 3-Kinase (PI3K): Molecular Dynamics and Molecular Docking Studies
title_sort interaction of ile-phe dipeptide with phosphatidylinositide 3-kinase (pi3k): molecular dynamics and molecular docking studies
publisher Natural and Engineering Sciences
series Natural and Engineering Sciences
issn 2458-8989
2458-8989
publishDate 2020-02-01
description Self-assembly of phenylalanine creates Phe fibers which is the characteristic fiber model found in amyloid fibrils linked with various neurodegenerative diseases. L-Isoleucyl-L-Phenylalanine (IlePhe) dipeptide is composed of isoleucine and phenylalanine amino acids, having fibrillary structure similar to nanotube forms of the core recognition motif of Alzheimer's β-amyloid polypeptide. The integrated coordination of neuronal responses via the PI3-K / Akt pathway has a significant functional impact on Alzheimer's disease. Exposure to Aβ in neuronal cultures leads to deterioration of PI3-K, Akt and mTOR signaling, which may cause cognitive loss during disease. Modulation of PI3-K, Akt and mTOR signal activity need aim to reduce or eliminate the accumulation of potential neurotoxins. The therapeutic approaches aimed to normalize neuronal responses on these pathways or activation of PI3-kinase have a protective effect against cognitive decline in animal models of Alzheimer disease. This study aims to determine the interaction of PI3-kinase with Ile-Phe dipeptide having amyloid fibril structure by three-dimensional simulation techniques such as molecular dynamics (with the GROMACS program) and molecular docking techniques (Schrodinger Software program).
topic ile-phe
molecular dynamics
molecular docking
adme
url https://www.nesciences.com/download.php?id=431
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