Banerjee Raja, Sheet Tridip
Maulana Abul Kalam Azad University of Technology, West Bengal (Formerly Known as West Bengal University of Technology), Salt Lake, Kolkata, 700064, West Bengal, India.
Proteins. 2017 Nov;85(11):1975-1982. doi: 10.1002/prot.25351. Epub 2017 Aug 7.
Circular dichroism (CD) spectroscopy represents an important tool for characterization of the peptide and protein secondary structures that mainly arise from the conformational disposition of the peptide backbone in solution. In 1991 Manning and Woody proposed that, in addition to the signal intensity, the ratio between [θ]nπ* and [θ]ππǁ ((R ) ≅ [θ] /[θ] ), along with [θ]ππ⊥ and [θ]ππǁ ((R ) ≅ [θ] /[θ] ), may be utilized towards identifying the peptide/protein conformation (especially 3 - and α-helices). However, till date the use of the ratiometric ellipticity component for helical structure analysis of peptides and proteins has not been reported. We studied a series of temperature dependent CD spectra of a thermally stable, model helical peptide and its related analogs in water as a function of added 2,2,2-trifluoroethanol (TFE) in order to explore their landscape of helicity. For the first time, we have experimentally shown here that the R parameter can characterize better the individual helices, while the other parameter R and the signal intensity do not always converge. We emphasize the use of the R ratio of ellipticities for helical characterization because of the common origin of these two bands (exciton splitting of the amide π→ π transition in a helical polypeptide). This approach may become worthwhile and timely with the increasing accessibility of CD synchrotron sources.
圆二色性(CD)光谱是表征肽和蛋白质二级结构的重要工具,这些二级结构主要源于肽主链在溶液中的构象排列。1991年,曼宁和伍迪提出,除信号强度外,[θ]nπ与[θ]ππǁ之比((R ) ≅ [θ] /[θ] )以及[θ]ππ*⊥与[θ]ππǁ之比((R ) ≅ [θ] /[θ] )可用于识别肽/蛋白质的构象(尤其是3 - 螺旋和α - 螺旋)。然而,迄今为止,尚未有关于将椭圆率比值成分用于肽和蛋白质螺旋结构分析的报道。我们研究了一种热稳定的模型螺旋肽及其相关类似物在水中一系列随温度变化的CD光谱,该光谱是添加2,2,2 - 三氟乙醇(TFE)的函数,以探索它们的螺旋度情况。在此,我们首次通过实验表明,R参数能更好地表征各个螺旋,而另一个参数R和信号强度并不总是一致。由于这两个谱带的共同起源(螺旋多肽中酰胺π→ π跃迁的激子分裂),我们强调使用椭圆率的R比值进行螺旋表征。随着CD同步辐射源的日益普及,这种方法可能会变得既实用又及时。