α 1-抗胰蛋白酶衍生的c端肽在体外形成纤维。

S Janciauskiene, E Carlemalm, S Eriksson
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引用次数: 25

摘要

各种蛋白水解降解的前体蛋白片段可形成β -淀粉样蛋白原纤维。通过电镜和刚果红定量结合,研究了α - 1-抗胰蛋白酶(AAT) c端359-374 (C-36)、370-374 (C-5)和375-394 (C-20)三种合成肽在体外形成β -淀粉样蛋白原纤维的能力。肽C-36和C-5有明显的形成原纤维的倾向。C-20缺乏这种特性,这表明残基359-375和/或370-374对原纤维的形成最为关键。添加到肽125I-C-36中的天然AAT可以与肽结合并形成复合物,从而抑制淀粉样蛋白纤维的形成。此外,添加到预成型原纤维中的天然AAT诱导原纤维结构解体。在这种“自相互作用”过程中,AAT的结构重排包括丝状蛋白的聚合,以及其热稳定性的提高。此外,相互作用后,AAT的抗弹性酶活性增加(20-40%)。AAT衍生的c端肽C-36和C-5在体外形成β -淀粉样蛋白纤维,以及完整的AAT分子对其的调控,可能具有重要的体内意义。
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In vitro fibril formation from alpha 1-antitrypsin-derived C-terminal peptides.

Fragments from various proteolytically degraded precursor proteins can form beta-amyloid fibrils. We studied, by electron microscopy and quantitative Congo red binding, the ability of three synthetic peptides, corresponding to residues 359-374 (C-36), 370-374 (C-5) and 375-394 (C-20) from the C-terminal part of alpha 1-antitrypsin (AAT) to form beta-amyloid fibrils in vitro. The peptides C-36 and C-5 had a pronounced tendency to form fibrils. C-20 lacked this property, suggesting that residues 359-375 and/or 370-374 are most critical for fibril formation. Native AAT added to peptide 125I-C-36 could bind and form complexes with the peptide, resulting in inhibition of amyloid fibril formation. Moreover, native AAT added to preformed fibrils induced disaggregation of fibrillar structures. The structural rearrangements of AAT that occurred during this 'autointeraction' included polymerization of the serpin, and an increase of its thermal stability. Also, following interaction, an increase (20-40%) of AAT's antielastase activity was noted. The demonstration of an in vitro beta-amyloid fibril formation from the AAT derived C-terminal peptides C-36 and C-5 and its regulation by the intact AAT molecule may have important in vivo implications.

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