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Accessing local structural disruption of Bid protein during thermal denaturation by absorption-mode ESR spectroscopy

机译:通过吸收模式ESR光谱分析热变性过程中Bid蛋白的局部结构破坏

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Bid is a requisite protein that connects death receptors to the initiation of mitochondrial-dependent apoptosis. Its structure was determined more than a decade ago, but its structure–function relationship remains largely unexplored. Here we investigate the thermostability of Bid protein and explore how the death-promoting function of Bid is affected by thermally-induced unfolding. First, we show by circular dichroism (CD) spectroscopy that Bid remains partially folded at high temperatures (350–368 K), and that the thermal unfolding of Bid is irreversible and accompanied with intermolecular associations that lead to protein aggregation. In 3 M GdnHCl, the onset of unfolding can, however, be conveniently observed at much lower temperatures around 320 K. We employ pulsed ESR dipolar spectroscopy to show that the structure of Bid remains almost unchanged between 0 and 3 M GdnHCl before thermal denaturation. More than 30 single-labeled Bid mutants are studied using the peak-height analysis method based on ESR absorption spectroscopy, in the temperature range of 300–345 K. The ESR results provide site-specific information about the temperature dependence of the local environment of Bid, thus enabling the discrimination between the onsets of unfolding and aggregation for respective sites. Consequently, we map out the local thermostability over the Bid structure and identify a new interface between helices 3, 6, and 8 as the beginning of structural unfolding. This study also investigates the apoptotic activity of the thermally-induced Bid aggregates and shows that Bid retains the death-promoting function even when unfolded and aggregated. The applicability of the new ESR absorption peak-height method is demonstrated for protein thermostability.
机译:出价是将死亡受体连接到线粒体依赖性细胞凋亡起始的必需蛋白。它的结构在十多年前就已确定,但其结构-功能关系在很大程度上尚未得到探索。在这里,我们研究了Bid蛋白的热稳定性,并探讨了Bid促进死亡的功能如何受到热诱导的折叠的影响。首先,我们通过圆二色性(CD)光谱表明,出价在高温(350–368 K)下仍然部分折叠,并且出价的热展开是不可逆的,并伴随着分子间缔合,导致蛋白质聚集。然而,在3 M GdnHCl中,可以在320 K左右更低的温度下方便地观察到展开的发生。我们使用脉冲ESR双极光谱法显示,在热变性之前,Bid的结构在0至3 M GdnHCl之间几乎保持不变。使用基于ESR吸收光谱的峰高分析方法,在300–345 K的温度范围内研究了30多个单标记Bid突变体。ESR结果提供了有关当地环境温度依赖性的特定位置信息。出价,从而可以区分各个位置的展开和聚集的开始。因此,我们绘制了Bid结构上的局部热稳定性,并确定了螺旋3、6和8之间的新界面作为结构展开的开始。这项研究还调查了热诱导竞价聚集体的凋亡活性,并显示竞价即使展开并聚集也保留了促进死亡的功能。证明了新的ESR吸收峰高方法对蛋白质热稳定性的适用性。

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