Structure of Myxovirus Resistance Protein A Reveals Intra- and Intermolecular Domain Interactions Required for the Antiviral Function

被引:178
作者
Gao, Song [1 ,2 ]
von der Malsburg, Alexander [3 ]
Dick, Alexej [1 ]
Faelber, Katja [1 ]
Schroeder, Gunnar F. [4 ]
Haller, Otto [3 ]
Kochs, Georg [3 ]
Daumke, Oliver [1 ,5 ]
机构
[1] Max Delbruck Ctr Mol Med, D-13125 Berlin, Germany
[2] Free Univ Berlin, Inst Chem & Biochem, D-14195 Berlin, Germany
[3] Univ Freiburg, Inst Med Microbiol & Hyg, Dept Virol, D-79104 Freiburg, Germany
[4] Forschungszentrum Julich, Inst Complex Syst ICS 6, D-52425 Julich, Germany
[5] Charite, Inst Med Phys & Biophys, D-10117 Berlin, Germany
关键词
HUMAN MXA GTPASE; INFLUENZA-VIRUS; CRYSTAL-STRUCTURE; CONFERS RESISTANCE; INHIBITION; MODEL; DIMERIZATION; EXPRESSION; LOCALIZES; COMPLEX;
D O I
10.1016/j.immuni.2011.07.012
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Human myxovirus resistance protein 1 (MxA) is an interferon-induced dynamin-like GTPase that acts as a cell-autonomous host restriction factor against many viral pathogens including influenza viruses. To study the molecular principles of its antiviral activity, we determined the crystal structure of nucleotide-free MxA, which showed an extended three-domain architecture. The central bundle signaling element (BSE) connected the amino-terminal GTPase domain with the stalk via two hinge regions. MxA oligomerized in the crystal via the stalk and the BSE, which in turn interacted with the stalk of the neighboring monomer. We demonstrated that the intra- and intermolecular domain interplay between the BSE and stalk was essential for oligomerization and the antiviral function of MxA. Based on these results, we propose a structural model for the mechano-chemical coupling in ring-like MxA oligomers as the principle mechanism for this unique antiviral effector protein.
引用
收藏
页码:514 / 525
页数:12
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