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A Computational Study of the Glycine-Rich Loop of Mitochondrial Processing Peptidase

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    0423430 - MBÚ 2014 RIV US eng J - Journal Article
    Kučera, Tomáš - Otyepka, M. - Matušková, Anna - Samad, Abdul - Kutejová, Eva - Janata, Jiří
    A Computational Study of the Glycine-Rich Loop of Mitochondrial Processing Peptidase.
    PLoS ONE. Roč. 8, č. 9 (2013). ISSN 1932-6203. E-ISSN 1932-6203
    R&D Projects: GA MŠMT(CZ) EE2.3.20.0055; GA MŠMT(CZ) EE2.3.30.0003; GA ČR GBP208/12/G016
    Institutional support: RVO:61388971
    Keywords : ALPHA-SUBUNIT * BETA-SUBUNIT * CRYSTAL-STRUCTURES
    Subject RIV: EE - Microbiology, Virology
    Impact factor: 3.534, year: 2013

    An all atomic, non-restrained molecular dynamics (MD) simulation in explicit water was used to study in detail the structural features of the highly conserved glycine-rich loop (GRL) of the a-subunit of the yeast mitochondrial processing peptidase (MPP) and its importance for the tertiary and quaternary conformation of MPP. Wild-type and GRL-deleted MPP structures were studied using non-restrained MD simulations, both in the presence and the absence of a substrate in the peptidase active site. Targeted MD simulations were employed to study the mechanism of substrate translocation from the GRL to the active site. We demonstrate that the natural conformational flexibility of the GRL is crucial for the substrate translocation process from outside the enzyme towards the MPP active site. We show that the a-helical conformation of the substrate is important not only during its initial interaction with MPP (i.e. substrate recognition), but also later, at least during the first third of the substrate translocation trajectory. Further, we show that the substrate remains in contact with the GRL during the whole first half of the translocation trajectory and that hydrophobic interactions play a major role. Finally, we conclude that the GRL acts as a precisely balanced structural element, holding the MPP subunits in a partially closed conformation regardless the presence or absence of a substrate in the active site
    Permanent Link: http://hdl.handle.net/11104/0229527

     
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    15_2013_Kucera_MPP_PlosOne.pdf32.3 MBPublisher’s postprintopen-access
     
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