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Influence of the Valine Zipper Region on the Structure and Aggregation of the Basic Leucine Zipper (bZIP) Domain of Activating Transcription Factor 5 (ATF5)

机译:缬氨酸拉链区对激活转录因子5(ATF5)碱性亮氨酸拉链(BZIP)结构域的结构和聚集的影响

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摘要

Protein aggregation is a major problem for biopharmaceuticals. While the control of aggregation is critically important for the future of protein pharmaceuticals, mechanisms of aggregate assembly, particularly the role that structure plays, are still poorly understood. Increasing evidence indicates that partially folded intermediates critically influence the aggregation pathway. We have previously reported the use of the basic leucine zipper (bZIP) domain of Activating Transcription Factor 5 (ATF5) as a partially folded model system to investigate protein aggregation. This domain contains three regions with differing structural propensity: a N-terminal polybasic region, a central helical leucine zipper region, and a C-terminal extended valine zipper region. Additionally, a centrally positioned cysteine residue readily forms an intermolecular disulfide bond that reduces aggregation. Computational analysis of ATF5 predicts that the valine zipper region facilitates self-association. Here we test this hypothesis using a truncated mutant lacking the C-terminal valine zipper region. We compare the structure and aggregation of this mutant to the wild-type (WT) form under both reducing and non-reducing conditions. Our data indicate that removal of this region results in a loss of alpha-helical structure in the leucine zipper and a change in the mechanism of self-association. The mutant form displays increased association at low temperature but improved resistance to thermally induced aggregation.
机译:蛋白质聚集是生物药物的主要问题。尽管聚集控制对于蛋白质药物的未来至关重要,但对聚集组装的机制,尤其是结构所起的作用,仍然知之甚少。越来越多的证据表明,部分折叠的中间体会严重影响聚集途径。我们之前已经报道了使用活化转录因子5(ATF5)的基本亮氨酸拉链(bZIP)域作为部分折叠的模型系统来研究蛋白质聚集的情况。该结构域包含三个具有不同结构倾向的区域:一个N末端的多元碱基区域,一个中心螺旋亮氨酸拉链区域和一个C末端延伸的缬氨酸拉链区域。另外,居中的半胱氨酸残基容易形成减少聚集的分子间二硫键。 ATF5的计算分析预测,缬氨酸拉链区域可促进自我联想。在这里,我们使用缺少C末端缬氨酸拉链区域的截短的突变体来检验该假设。我们在还原和非还原条件下比较该突变体与野生型(WT)形式的结构和聚集。我们的数据表明,删除该区域会导致亮氨酸拉链中的α螺旋结构丢失,并改变自结合机制。突变体形式在低温下显示出增加的缔合,但是对热诱导聚集的抵抗力提高。

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