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Pressure dissociation studies provide insight into oligomerization competence of temperature-sensitive folding mutants of P22 tailspike

机译:压力解离研究提供了对温度敏感的P22尾钉折叠突变体的寡聚能力的见解

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摘要

Several temperature-sensitive folding (tsf) mutants of the tailspike protein from bacteriophage P22 have been found to fold with lower efficiency than the wild-type sequence, even at lowered temperatures. Previous refolding studies initiated from the unfolded monomer have indicated that the tsf mutations decrease the rate of structured monomer formation. We demonstrate that pressure treatment of the tailspike aggregates provides a useful tool to explore the effects of tsf mutants on the assembly pathway of the P22 tailspike trimer. The effects of pressure on two different tsf mutants, G244R and E196K, were explored. Pressure treatment of both G244R and E196K aggregates produced a folded trimer. E196K forms almost no native trimer in in vitro refolding experiments, yet it forms a trimer following pressure in a manner similar to the native tailspike protein. In contrast, trimer formation from pressure-treated G244R aggregates was not rapid, despite the presence of a G244R dimer after pressure treatment. The center-of-mass shifts of the fluorescence spectra under pressure are nearly identical for both tsf aggregates, indicating that pressure generates similar intermediates. Taken together, these results suggest that E196K has a primary defect in formation of the β-helix during monomer collapse, while G244R is primarily an assembly defect.
机译:已发现噬菌体P22的尾钉蛋白的几种温度敏感折叠(tsf)突变体即使在较低温度下也能以比野生型序列低的效率折叠。从未折叠的单体开始的先前重新折叠研究表明,tsf突变会降低结构化单体形成的速率。我们证明了对尾钉聚集体的压力处理提供了一种有用的工具,以探索tsf突变体对P22尾钉三聚体组装路径的影响。探索了压力对两个不同的tsf突变体G244R和E196K的影响。对G244R和E196K骨料进行加压处理后产生了折叠的三聚体。 E196K在体外重折叠实验中几乎不形成天然三聚体,但在加压后它会以类似于天然尾钉蛋白的方式形成三聚体。相反,尽管在加压处理后存在G244R二聚体,但由加压处理的G244R聚集体形成的三聚体并不迅速。两种tsf聚集体在压力下荧光光谱的质心位移几乎相同,表明压力产生相似的中间体。综上所述,这些结果表明,E196K在单体塌陷期间在β-螺旋的形成中具有主要缺陷,而G244R主要是组装缺陷。

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