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Thermal unfolding of the N-terminal region of p53 monitored by circular dichroism spectroscopy

机译:圆二色谱法监测p53 N末端区域的热解折叠

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摘要

It has been estimated that 30% of eukaryotic protein and 70% of transcription factors are intrinsically disordered (ID). The biochemical significance of proteins that lack stable tertiary structure, however, is not clearly understood, largely owing to an inability to assign well-defined structures to specific biological tasks. In an attempt to investigate the structural character of ID protein, we have measured the circular dichroism spectrum of the N-terminal region of p53 over a range of temperatures and solution conditions. p53 is a well-studied transcription factor that has a proline-rich N-terminal ID region containing two activation domains. High proline content is a property commonly associated with ID, and thus p53 may be a good model system for investigating the biochemical importance of ID. The spectra presented here suggest that the N-terminal region of p53 may adopt an ordered structure under physiological conditions and that this structure can be thermally unfolded in an apparent two-state manner. The midpoint temperature for this thermal unfolding of the N-terminal region of p53 was at the near-physiological temperature of 39°C, suggesting the possibility of a physiological role for the observed structural equilibrium.
机译:据估计,30%的真核蛋白和70%的转录因子是内在失调的(ID)。然而,缺乏稳定的三级结构的蛋白质的生化意义尚不清楚,这主要是由于无法将明确定义的结构分配给特定的生物学任务。为了尝试研究ID蛋白的结构特征,我们在一定温度和溶液条件下测量了p53 N末端区域的圆二色性光谱。 p53是一种经过充分研究的转录因子,具有富含脯氨酸的N端ID区域,其中包含两个激活域。脯氨酸含量高是通常与ID相关的属性,因此p53可能是研究ID的生化重要性的良好模型系统。此处显示的光谱表明,p53的N端区域在生理条件下可以采用有序结构,并且该结构可以以明显的二态方式热展开。 p53的N端区域热解开的中点温度为39°C的近乎生理温度,这表明所观察到的结构平衡可能具有生理作用。

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