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首页> 外文期刊>Journal of Molecular Biology >Time-resolved small-angle X-ray scattering investigation of the folding dynamics of heme oxygenase: implication of the scaling relationship for the submillisecond intermediates of protein folding.
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Time-resolved small-angle X-ray scattering investigation of the folding dynamics of heme oxygenase: implication of the scaling relationship for the submillisecond intermediates of protein folding.

机译:血红素加氧酶折叠动力学的时间分辨小角X射线散射研究:亚毫秒级蛋白质折叠中间体的比例关系的含义。

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摘要

Polypeptide collapse is generally observed as the initial folding dynamics of proteins with more than 100 residues, and is suggested to be caused by the coil-globule transition explained by Flory's theory of polymers. To support the suggestion by establishing a scaling behavior between radius of gyration (Rg) and chain length for the initial folding intermediates, the folding dynamics of heme oxygenase (HO) was characterized by time-resolved, small-angle X-ray scattering. HO is a highly helical protein without disulfide bridges, and is the largest protein (263 residues) characterized by the method. The folding process of HO was found to contain a transient oligomerization; however, the conformation within 10 ms was demonstrated to be monomeric and to possess Rg of 26.1(+/-1.1) A. Together with the corresponding data for proteins with different chain lengths, the seven Rg values demonstrated the scaling relationship to chain length with a scaling exponent of 0.35+/-0.11, which is close to the theoretical value of 1/3 predicted for globules in solutions where monomer-monomer interactions are favored over monomer-solvent interactions (poor solvent). The finding indicated that the initial folding dynamics of proteins bears the signature of the coil-globule transition, and offers a clue to explain the folding mechanisms of proteins with different chain lengths.
机译:通常观察到多肽折叠是具有超过100个残基的蛋白质的初始折叠动力学,并且被认为是由Flory的聚合物理论解释的线圈-小球过渡引起的。为了通过在初始折叠中间体的回转半径(Rg)和链长之间建立缩放行为来支持该建议,血红素加氧酶(HO)的折叠动力学特征在于时间分辨的小角度X射线散射。 HO是无二硫键的高度螺旋蛋白,是该方法表征的最大蛋白(263个残基)。发现HO的折叠过程包含瞬时的低聚反应。然而,在10毫秒内的构象被证明是单体的,并且具有26.1(+/- 1.1)A的Rg。连同具有不同链长的蛋白质的相应数据,七个Rg值证明了与标度指数为0.35 +/- 0.11,接近预测的小球理论值的1/3,在该溶液中,单体与单体之间的相互作用比单体与溶剂之间的相互作用(不良溶剂)更为有利。该发现表明蛋白质的初始折叠动力学具有线圈-小球过渡的特征,并为解释具有不同链长的蛋白质的折叠机制提供了线索。

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