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Effect of Reparation of Repeat Sequences in the Human α-Synuclein on Fibrillation Ability

机译:人α-突触核蛋白重复序列​​的修复对原纤化能力的影响

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The aggregation and fibrillation of α-synuclein has been implicated as a causative factor in the Parkinson's disease. The hexamer motif KTKEGV is found in each of the seven imperfect repeat sequences in the N-terminal half of α-synuclein. The motif is not fully conserved in the sixth and seventh repeats. We created mutants in which the motif was repaired to be fully conserved in either (Rep6 and Rep7) or both (Rep67) of these two repeats. The Rep6 and Rep67 mutants showed a greatly reduced propensity to aggregate and fibrillate while all three mutants showed greater resistance to HFIP-induced formation of the α-helix intermediate. Resistance to formation in the partially folded intermediate may repress the folding of α-synuclein, consequently interfering with the aggregation and fibril formation. These results demonstrated that KTKEGV repeats may have a significant role in keeping native unfolded status of α-synuclein.
机译:α-突触核蛋白的聚集和原纤维化被认为是帕金森氏病的病因。在α-突触核蛋白N端一半的七个不完全重复序列中的每个序列中都发现了六聚体基序TKGEGV。第六和第七次重复中的主题未完全保守。我们创建了突变体,其中的基序被修复,在这两个重复序列的任一(Rep6和Rep7)或两者(Rep67)中均完全保守。 Rep6和Rep67突变体显示出大大降低的聚集和原纤化倾向,而所有三个突变体均对HFIP诱导的α-螺旋中间体的形成具有更大的抵抗力。在部分折叠的中间体中对形成的抗性可能抑制α-突触核蛋白的折叠,因此干扰聚集和原纤维形成。这些结果证明,KTKEGV重复序列在保持天然α-突触核蛋白的未折叠状态中可能具有重要作用。

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