Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches

<p>Abstract</p> <p>Background</p> <p>Previously, the hypothetical protein, KPN00728 from <it>Klebsiella pneumoniae</it> MGH78578 was the Succinate dehydrogenase (SDH) chain C subunit via structural prediction and molecular docking simulation studies. However...

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Main Authors: Choi Sy, Normi Yahaya M, Wahab Habibah A
Format: Article
Language:English
Published: BMC 2011-11-01
Series:BMC Bioinformatics
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spelling doaj-5464b2643e56403498c901bbe5cf07e72020-11-24T21:37:54ZengBMCBMC Bioinformatics1471-21052011-11-0112Suppl 13S1110.1186/1471-2105-12-S13-S11Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approachesChoi SyNormi Yahaya MWahab Habibah A<p>Abstract</p> <p>Background</p> <p>Previously, the hypothetical protein, KPN00728 from <it>Klebsiella pneumoniae</it> MGH78578 was the Succinate dehydrogenase (SDH) chain C subunit via structural prediction and molecular docking simulation studies. However, due to limitation in docking simulation, an in-depth understanding of how SDH interaction occurs across the transmembrane of mitochondria could not be provided.</p> <p>Results</p> <p>In this present study, molecular dynamics (MD) simulation of KPN00728 and SDH chain D in a membrane was performed in order to gain a deeper insight into its molecular role as SDH. Structural stability was successfully obtained in the calculation for area per lipid, tail order parameter, thickness of lipid and secondary structural properties. Interestingly, water molecules were found to be highly possible in mediating the interaction between Ubiquinone (UQ) and SDH chain C via interaction with Ser27 and Arg31 residues as compared with earlier docking study. Polar residues such as Asp95 and Glu101 (KPN00728), Asp15 and Glu78 (SDH chain D) might have contributed in the creation of a polar environment which is essential for electron transport chain in Krebs cycle.</p> <p>Conclusions</p> <p>As a conclusion, a part from the structural stability comparability, the dynamic of the interacting residues and hydrogen bonding analysis had further proved that the interaction of KPN00728 as SDH is preserved and well agreed with our postulation earlier.</p>
collection DOAJ
language English
format Article
sources DOAJ
author Choi Sy
Normi Yahaya M
Wahab Habibah A
spellingShingle Choi Sy
Normi Yahaya M
Wahab Habibah A
Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches
BMC Bioinformatics
author_facet Choi Sy
Normi Yahaya M
Wahab Habibah A
author_sort Choi Sy
title Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches
title_short Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches
title_full Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches
title_fullStr Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches
title_full_unstemmed Revealing the functionality of hypothetical protein KPN00728 from <it>Klebsiella pneumonia</it>e MGH78578: molecular dynamics simulation approaches
title_sort revealing the functionality of hypothetical protein kpn00728 from <it>klebsiella pneumonia</it>e mgh78578: molecular dynamics simulation approaches
publisher BMC
series BMC Bioinformatics
issn 1471-2105
publishDate 2011-11-01
description <p>Abstract</p> <p>Background</p> <p>Previously, the hypothetical protein, KPN00728 from <it>Klebsiella pneumoniae</it> MGH78578 was the Succinate dehydrogenase (SDH) chain C subunit via structural prediction and molecular docking simulation studies. However, due to limitation in docking simulation, an in-depth understanding of how SDH interaction occurs across the transmembrane of mitochondria could not be provided.</p> <p>Results</p> <p>In this present study, molecular dynamics (MD) simulation of KPN00728 and SDH chain D in a membrane was performed in order to gain a deeper insight into its molecular role as SDH. Structural stability was successfully obtained in the calculation for area per lipid, tail order parameter, thickness of lipid and secondary structural properties. Interestingly, water molecules were found to be highly possible in mediating the interaction between Ubiquinone (UQ) and SDH chain C via interaction with Ser27 and Arg31 residues as compared with earlier docking study. Polar residues such as Asp95 and Glu101 (KPN00728), Asp15 and Glu78 (SDH chain D) might have contributed in the creation of a polar environment which is essential for electron transport chain in Krebs cycle.</p> <p>Conclusions</p> <p>As a conclusion, a part from the structural stability comparability, the dynamic of the interacting residues and hydrogen bonding analysis had further proved that the interaction of KPN00728 as SDH is preserved and well agreed with our postulation earlier.</p>
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