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PNAS Plus: Conservation of complex knotting and slipknotting patterns in proteins

机译:PNAS Plus:保留蛋白质中复杂的打结和活结样式

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摘要

While analyzing all available protein structures for the presence of knots and slipknots, we detected a strict conservation of complex knotting patterns within and between several protein families despite their large sequence divergence. Because protein folding pathways leading to knotted native protein structures are slower and less efficient than those leading to unknotted proteins with similar size and sequence, the strict conservation of the knotting patterns indicates an important physiological role of knots and slipknots in these proteins. Although little is known about the functional role of knots, recent studies have demonstrated a protein-stabilizing ability of knots and slipknots. Some of the conserved knotting patterns occur in proteins forming transmembrane channels where the slipknot loop seems to strap together the transmembrane helices forming the channel.
机译:在分析所有可用的蛋白质结构中是否存在打结和活结的同时,我们检测到了严格的保守性打结模式,尽管它们存在较大的序列差异,但在多个蛋白家族内部和之间存在复杂的打结模式。因为导致打结的天然蛋白质结构的蛋白质折叠途径比导致具有相似大小和序列的未打结蛋白质的途径慢且效率低,所以打结方式的严格保守性表明打结和活结在这些蛋白质中起着重要的生理作用。尽管对结的功能作用知之甚少,但最近的研究表明,结和活结具有稳定蛋白质的能力。一些保守的打结模式发生在形成跨膜通道的蛋白质中,其中活结环似乎将形成通道的跨膜螺旋绑在一起。

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