Protonation-State-Dependent Communication in Cytochrome c Oxidase

被引:6
作者
Helabad, Mandi Bagherpoor [1 ]
Ghane, Tahereh [1 ]
Reidelbach, Marco [1 ]
Woelke, Anna Lena [2 ]
Knapp, Ernst Walter [3 ]
Imhof, Petra [1 ]
机构
[1] Free Univ Berlin, Inst Theoret Phys, Berlin, Germany
[2] Free Univ Berlin, Inst Pharm, Berlin, Germany
[3] Free Univ Berlin, Inst Biochem, Berlin, Germany
关键词
K-CHANNEL; PARACOCCUS-DENITRIFICANS; MOLECULAR-DYNAMICS; ELECTRON-TRANSFER; TRANSFER PATHWAY; LIQUID WATER; MECHANISM; SPHAEROIDES; RESPIRATION; RESOLUTION;
D O I
10.1016/j.bpj.2017.07.005
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Proton transfer in cytochrome c oxidase from the cellular inside to the binuclear redox center (BNC) can occur through two distinct pathways, the D- and K-channels. For the protein to function as both a redox enzyme and a proton pump, proton transfer into the protein toward the BNC or toward a proton loading site (and ultimately through the membrane) must be highly regulated. The P-R -> F transition is the first step in a catalytic cycle that requires proton transfer from the bulk at the N-side to the BNC. Molecular dynamics simulations of the P-R -> F intermediate of this transition, with 16 different combinations of protonation states of key residues in the D- and K-Channel, show the impact of the K-channel on the D-channel to be protonation-state dependent. Strength as well as means of communication, correlations in positions, or communication along the hydrogen-bonded network depends on the protonation state of the K-channel residue K362. The conformational and hydrogen-bond dynamics of the D-channel residue N139 is regulated by an interplay of protonation in the D-channel and K362. N139 thus assumes a gating function by which proton passage through the D-channel toward E286 is likely facilitated for states with protonated K362 and unprotonated E286. In contrast, proton passage through the D-channel is hindered by N139's preference for a closed conformation in situations with protonated E286.
引用
收藏
页码:817 / 828
页数:12
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