A novel dimerization interface of cyclic nucleotide binding domain, which is disrupted in presence of cAMP: implications for CNG channels gating

被引:0
|
作者
Ivan Y. Gushchin
Valentin I. Gordeliy
Sergei Grudinin
机构
[1] Université Joseph Fourier – Grenoble 1,Institut de Biologie Structurale Jean
[2] CEA,Pierre Ebel
[3] CNRS,Institut de Biologie Structurale Jean
[4] Moscow Institute of Physics and Technology,Pierre Ebel
[5] Research Centre Juelich,Institut de Biologie Structurale Jean
[6] INRIA Grenoble-Rhone-Alpes Research Center,Pierre Ebel
[7] CNRS,Research
[8] Laboratoire Jean Kuntzmann,educational Centre “Bionanophysics”
来源
Journal of Molecular Modeling | 2012年 / 18卷
关键词
Channel gating; CNG channel; Cyclic-nucleotide binding domain; Epac2;
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学科分类号
摘要
Cyclic nucleotide binding domain (CNBD) is a ubiquitous domain of effector proteins involved in signalling cascades of prokaryota and eukaryota. CNBD activation by cyclic nucleotide monophosphate (cNMP) is studied well in the case of several proteins. However, this knowledge is hardly applicable to cNMP-modulated cation channels. Despite the availability of CNBD crystal structures of bacterial cyclic nucleotide-gated (CNG) and mammalian hyperpolarization-activated cyclic nucleotide-modulated (HCN) channels in presence and absence of the cNMP, the full understanding of CNBD conformational changes during activation is lacking. Here, we describe a novel CNBD dimerization interface found in crystal structures of bacterial CNG channel MlotiK1 and mammalian cAMP-activated guanine nucleotide-exchange factor Epac2. Molecular dynamics simulations show that the found interface is stable on the studied timescale of 100 ns, in contrast to the dimerization interface, reported previously. Comparisons with cN-bound structures of CNBD show that the dimerization is incompatible with cAMP binding. Thus, the cAMP-dependent monomerization of CNBD may be an alternative mechanism of the cAMP sensing. Based on these findings, we propose a model of the bacterial CNG channel modulation by cAMP.
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页码:4053 / 4060
页数:7
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