首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Both the cis-trans equilibrium and isomerization dynamics of a single proline amide modulate β2-microglobulin amyloid assembly
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Both the cis-trans equilibrium and isomerization dynamics of a single proline amide modulate β2-microglobulin amyloid assembly

机译:单一脯氨酸酰胺的顺反平衡和异构化动力学均可调节β2-微球蛋白淀粉样蛋白组装

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摘要

The human protein β2-microglobulin (β2m) aggregates as amyloid fibrils in patients undergoing long-term hemodialysis. Isomerization of Pro32 from its native cis to a nonnative trans conformation is thought to trigger β2m misfolding and subsequent amyloid assembly. To examine this hypothesis, we systematically varied the free-energy profile of proline cis-trans isomerization by replacing Pro32 with a series of 4-fluoroprolines via total chemical synthesis. We show that β2m’s stability, (un)folding, and aggregation properties are all influenced by the rate and equilibrium of Pro32 cis-trans isomerization. As anticipated, the β2m monomer was either stabilized or destabilized by respective incorporation of (2S,4S)-fluoroproline, which favors the native cis amide bond, or the stereoisomeric (2S,4R)-fluoroproline, which disfavors this conformation. However, substitution of Pro32 with 4,4-difluoroproline, which has nearly the same cis-trans preference as proline but an enhanced isomerization rate, caused pronounced destabilization of the protein and increased oligomerization at neutral pH. More remarkably, these subtle alterations in chemical composition—incorporation of one or two fluorine atoms into a single proline residue in the 99 amino acid long protein—modulated the aggregation properties of β2m, inducing the formation of polymorphically distinct amyloid fibrils. These results highlight the importance of conformational dynamics for molecular assembly of an amyloid cross-β structure and provide insights into mechanistic aspects of Pro32 cis-trans isomerism in β2m aggregation.
机译:在接受长期血液透析的患者中,人蛋白质β2-微球蛋白(β2m)聚集为淀粉样蛋白原纤维。 Pro32从其天然顺式异构体转变为非天然反式构象被认为可触发β2m错折叠和随后的淀粉样蛋白组装。为了检验该假设,我们通过总化学合成,用一系列4-氟代脯氨酸替代Pro32,系统地改变了脯氨酸顺反异构化的自由能谱。我们发现,β2m的稳定性,(解折叠)和聚集性质均受Pro32顺反异构化的速率和平衡的影响。如所预期的,通过分别引入有利于天然顺酰胺键的(2S,4S)-氟脯氨酸或不利于该构象的立体异构体(2S,4R)-氟脯氨酸,β2m单体被稳定或不稳定。然而,Pro32被4,4-二氟脯氨酸取代,后者具有与脯氨酸几乎相同的顺反异构性,但异构化速率提高,导致蛋白质明显不稳定,并在中性pH下增加寡聚。更值得注意的是,这些化学成分的细微变化(将一个或两个氟原子掺入99个氨基酸长的蛋白质中的一个脯氨酸残基中),调节了β2m的聚集特性,从而诱导了多态性独特的淀粉样蛋白原纤维的形成。这些结果突出了构象动力学对于淀粉样β-淀粉结构的分子组装的重要性,并提供了对β2m聚集中Pro32顺反异构现象机理的深入了解。

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