首页> 美国卫生研究院文献>Biophysical Journal >Infrared Spectroscopic Discrimination between the Loop and α-Helices and Determination of the Loop Diffusion Kinetics by Temperature-Jump Time-Resolved Infrared Spectroscopy for Cytochrome c
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Infrared Spectroscopic Discrimination between the Loop and α-Helices and Determination of the Loop Diffusion Kinetics by Temperature-Jump Time-Resolved Infrared Spectroscopy for Cytochrome c

机译:环和α-螺旋的红外光谱鉴别及温度跃迁时间分辨红外光谱法测定细胞色素c的环扩散动力学

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摘要

The infrared (IR) absorption of the amide I band for the loop structure may overlap with that of the α-helices, which can lead to the misassignment of the protein secondary structures. A resolution-enhanced Fourier transform infrared (FTIR) spectroscopic method and temperature-jump (T-jump) time-resolved IR absorbance difference spectra were used to identify one specific loop absorption from the helical IR absorption bands of horse heart cytochrome c in D2O at a pD around 7.0. This small loop consists of residues 70–85 with Met-80 binding to the heme Fe(III). The FTIR spectra in amide I′ region indicate that the loop and the helical absorption bands overlap at 1653 cm−1 at room temperature. Thermal titration of the amide I′ intensity at 1653 cm−1 reveals that a transition in loop structural change occurs at lower temperature (Tm = 45°C), well before the global unfolding of the secondary structure (Tm ≈ 82°C). This loop structural change is assigned as being triggered by the Met-80 deligation from the heme Fe(III). T-jump time-resolved IR absorbance difference spectra reveal that a T-jump from 25°C to 35°C breaks the Fe-S bond between the Met-80 and the iron reversibly, which leads to a loop (1653 cm−1, overlap with the helical absorption) to random coil (1645 cm−1) transition. The observed unfolding rate constant interpreted as the intrachain diffusion rate for this 16 residue loop was ∼3.6 × 106 s−1.
机译:环状结构的酰胺I带的红外(IR)吸收可能与α螺旋的红外吸收重叠,这可能导致蛋白质二级结构的错误分配。使用分辨率增强的傅立叶变换红外(FTIR)光谱方法和温度跃迁(T-jump)时间分辨的红外吸收差光谱,从D2O中马心脏细胞色素c的螺旋红外吸收带中识别出一种特定的环吸收。 pD约为7.0。这个小环由70-85位残基组成,Met-80与血红素Fe(III)结合。酰胺I'区的FTIR光谱表明,室温下环和螺旋吸收带在1653 cm -1 处重叠。在1653 cm −1 上对酰胺I'强度进行热滴定表明,在较低温度(Tm = 45°C)下,远在二级结构整体展开之前,环结构发生了转变。 Tm≈82°C)。该环结构变化被认为是由血红素Fe(III)的Met-80结合触发的。 T跃迁时间分辨的IR吸光度差异光谱显示,从25°C到35°C的T跃迁可逆地破坏Met-80和铁之间的Fe-S键,从而形成环(1653 cm -1 ,与螺旋吸收重叠)到随机线圈(1645 cm -1 )过渡。观察到的解链速率常数被解释为该16个残基环的链内扩散速率,约为3.6×10 6 s -1

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