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首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Resonance Raman determination of vinyl group disposition in different derivatives of native myoglobin and its heme-disoriented form
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Resonance Raman determination of vinyl group disposition in different derivatives of native myoglobin and its heme-disoriented form

机译:共振拉曼法测定天然肌红蛋白不同衍生物及其血红素偏向形式中乙烯基的位置

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In heme-reconstituted heme proteins, the heme inserts such that some of the heme is rotated 180° about the α-γ meso axis, eventually equilibrating to native conformations. Also, proteins from different species may naturally possess both conformers. Resonance Raman (RR) spectroscopy is effective in signaling this conformational heterogeneity, detecting altered interactions with active site residues. While shifts of the vibrational modes of the two vinyl groups could be readily detected, they could not be assigned to a particular vinyl group. This deficiency is alleviated by employing a specifically labeled protoheme isotopomer, wherein only the 4-vinyl group is labeled (i.e. -CH=C~2H_2), providing a spectral editing mechanism for selectively tracking the individual vinyl groups. The RR spectral data acquired here for the met-, deoxy-, and ferrous CO adduct of myoglobin, along with their 'flipped heme' isomers, provide convincing evidence for the anticipated effects of 'swapping' the environments of the two vinyl groups; i.e., in the native form, the 2-vinyl group assumes a more out-of-plane orientation with respect to the pyrrole plane than does the (nearly in-plane) 4-vinyl group, whereas in the 'reversed' orientation, the 4-vinyl group now assumes a position that is more out-of-plane than the newly positioned 2-vinyl group. The ability of RR spectroscopy to document such differences in the orientation of the vinyl substituents ismade important by the fact that changes in the disposition of these groups has long been known to carry functional consequences.
机译:在血红素重构的血红素蛋白中,血红素插入使得一些血红素绕α-γ介观轴旋转180°,最终平衡为天然构象。同样,来自不同物种的蛋白质自然可以拥有两个构象体。共振拉曼(RR)光谱可有效地发信号通知这种构象异质性,检测与活性位点残基相互作用的改变。尽管可以容易地检测到两个乙烯基的振动模式的变化,但是不能将它们分配给特定的乙烯基。通过使用专门标记的原血红素异位异构体可以缓解这种不足,其中仅标记了4-乙烯基(即-CH = C〜2H_2),从而提供了一种光谱编辑机制,可选择性地追踪各个乙烯基。此处获得的肌红蛋白的二元,脱氧和亚铁一氧化碳加合物的RR光谱数据,以及它们的“翻转血红素”异构体,为“交换”两个乙烯基环境的预期影响提供了令人信服的证据。即,在天然形式下,相对于吡咯平面,2-乙烯基比(几乎在平面内)4-乙烯基具有更多的平面外取向,而在“反向”取向下,相对于吡咯平面,现在,4-乙烯基的位置比新放置的2-乙烯基的平面外。由于人们早就知道这些基团的位置变化会带来功能后果,因此使RR光谱记录乙烯基取代基取向差异的能力变得很重要。

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