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信号转导和转录激活因子2(STAT2)是麻疹病毒V蛋白介导的α/β干扰素信号传导抑制的主要靶点。

STAT2 is a primary target for measles virus V protein-mediated alpha/beta interferon signaling inhibition.

作者信息

Ramachandran Aparna, Parisien Jean-Patrick, Horvath Curt M

机构信息

Department of Medicine, Northwestern University, Evanston, Illinois, USA.

出版信息

J Virol. 2008 Sep;82(17):8330-8. doi: 10.1128/JVI.00831-08. Epub 2008 Jun 25.

Abstract

Measles virus, a member of the Morbillivirus family, infects millions of people each year despite the availability of effective vaccines. The V protein of measles virus is an important virulence factor that can interfere with host innate immunity by inactivating alpha/beta interferon (IFN-alpha/beta) and IFN-gamma signaling through protein interactions with signal transducer and activator of transcription proteins STAT1 and STAT2. Here we demonstrate that although STAT1 interference results from protein interactions within a V protein N-terminal region encompassed by amino acids 110 to 130, detection of STAT1 interaction and IFN-gamma signaling inhibition requires the presence of cellular STAT2. Cell-specific variability in STAT1 interference was observed to correlate with V protein expression level. A more direct target for measles virus V protein-mediated IFN-alpha/beta evasion is STAT2. Results indicate that the widely conserved C-terminal zinc finger domain of measles virus V protein is both necessary and sufficient to bind STAT2 and disrupt IFN-alpha/beta signal transduction. Mutagenesis and molecular modeling define a contact surface for STAT2 association that includes aspartic acid residue 248 as critical for STAT2 interference and IFN antiviral immune suppression. These findings clearly define the molecular determinants for measles virus IFN evasion and validate specific targets as candidates for therapeutic intervention.

摘要

麻疹病毒是副黏病毒科的成员之一,尽管有有效的疫苗,但每年仍感染数百万人。麻疹病毒的V蛋白是一种重要的毒力因子,它可以通过与信号转导和转录激活蛋白STAT1和STAT2进行蛋白质相互作用,使α/β干扰素(IFN-α/β)和IFN-γ信号失活,从而干扰宿主的先天免疫。在这里,我们证明,虽然STAT1的干扰是由V蛋白N端区域(氨基酸110至130)内的蛋白质相互作用引起的,但STAT1相互作用的检测和IFN-γ信号抑制需要细胞STAT2的存在。观察到STAT1干扰中的细胞特异性变异性与V蛋白表达水平相关。麻疹病毒V蛋白介导的IFN-α/β逃避的一个更直接靶点是STAT2。结果表明,麻疹病毒V蛋白广泛保守的C端锌指结构域对于结合STAT2和破坏IFN-α/β信号转导既是必要的也是充分的。诱变和分子建模确定了STAT2结合的一个接触面,其中包括天冬氨酸残基248,它对STAT2干扰和IFN抗病毒免疫抑制至关重要。这些发现明确了麻疹病毒IFN逃避的分子决定因素,并验证了特定靶点作为治疗干预候选物的可能性。

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