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Dissociation of Paramyxovirus Interferon Evasion Activities: Universal and Virus-Specific Requirements for Conserved V Protein Amino Acids in MDA5 Interference

机译:副粘病毒干扰素逃避活动的解离:MDA5干扰中保守的V蛋白氨基酸的通用和病毒特定要求。

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摘要

The V protein of the paramyxovirus subfamily Paramyxovirinae is an important virulence factor that can interfere with host innate immunity by inactivating the cytosolic pathogen recognition receptor MDA5. This interference is a result of a protein-protein interaction between the highly conserved carboxyl-terminal domain of the V protein and the helicase domain of MDA5. The V protein C-terminal domain (CTD) is an evolutionarily conserved 49- to 68-amino-acid region that coordinates two zinc atoms per protein chain. Site-directed mutagenesis of conserved residues in the V protein CTD has revealed both universal and virus-specific requirements for zinc coordination in MDA5 engagement and has also identified other conserved residues as critical for MDA5 interaction and interference. Mutation of these residues produces V proteins that are specifically defective for MDA5 interference and not impaired in targeting STAT1 for proteasomal degradation via the VDC ubiquitin ligase complex. Results demonstrate that mutation of conserved charged residues in the V proteins of Nipah virus, measles virus, and mumps virus also abolishes MDA5 interaction. These findings clearly define molecular determinants for MDA5 inhibition by the paramyxovirus V proteins.
机译:副粘病毒亚科副粘病毒的V蛋白是一种重要的致病因子,可通过使胞质病原体识别受体MDA5失活来干扰宿主的先天免疫。这种干扰是V蛋白高度保守的羧基末端结构域与MDA5的解旋酶结构域之间蛋白质相互作用的结果。 V蛋白的C末端结构域(CTD)是一个进化保守的49至68个氨基酸区域,可协调每个蛋白质链上两个锌原子。 V蛋白CTD中保守残基的定点诱变揭示了MDA5参与中锌配位的通用要求和病毒特异性要求,并且还确定了其他保守残基对于MDA5相互作用和干扰至关重要。这些残基的突变会产生V蛋白,这些蛋白对MDA5干扰特别有缺陷,并且不会通过VDC泛素连接酶复合物破坏针对STAT1的蛋白酶体降解。结果表明,尼帕病毒,麻疹病毒和腮腺炎病毒的V蛋白中保守的带电荷残基突变也消除了MDA5相互作用。这些发现清楚地定义了副粘病毒V蛋白抑制MDA5的分子决定因素。

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