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A Highly Unusual Palindromic Transmembrane Helical Hairpin Formed by SARS Coronavirus E Protein.

机译:由SARS冠状病毒E蛋白形成的高度异常的回文跨膜螺旋发夹。

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摘要

The agent responsible for the recent severe acute respiratory syndrome (SARS) outbreak is a previously unidentified coronavirus. While there is a wealth of epidemiological studies, little if any molecular characterization of SARS coronavirus (SCoV) proteins has been carried out. Here we describe the molecular characterization of SCoV E protein, a critical component of the virus responsible for virion envelope morphogenesis. We conclusively show that SCoV E protein contains an unusually short, palindromic transmembrane helical hairpin around a previously unidentified pseudo-center of symmetry, a structural feature which seems to be unique to SCoV. The hairpin deforms lipid bilayers by way of increasing their curvature, providing for the first time a molecular explanation of E protein's pivotal role in viral budding. The molecular understanding of this critical component of SCoV may represent the beginning of a concerted effort aimed at inhibiting its function, and consequently, viral infectivity.
机译:导致最近的严重急性呼吸道综合症(SARS)爆发的病原是以前未发现的冠状病毒。尽管有大量的流行病学研究,但几乎没有对SARS冠状病毒(SCoV)蛋白进行分子表征。在这里,我们描述了SCoV E蛋白的分子特征,SCoV E蛋白是负责病毒粒子包膜形态发生的病毒的重要组成部分。我们结论性地表明,SCoV E蛋白在一个以前未知的伪对称中心周围包含一个异常短的回文跨膜螺旋发夹,这种结构特征似乎是SCoV独有的。发夹通过增加脂质双层的曲率使脂质双层变形,这首次为E蛋白在病毒出芽中的关键作用提供了分子解释。对SCoV的这一关键成分的分子理解可能代表着旨在抑制其功能并因此抑制病毒感染性的共同努力的开始。

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