Keiderling Timothy A
Department of Chemistry, University of Illinois at Chicago, 845 West Taylor Street, 60607-7061, USA.
Curr Opin Chem Biol. 2002 Oct;6(5):682-8. doi: 10.1016/s1367-5931(02)00369-1.
Vibrational circular dichroism (VCD) provides alternative views of protein and peptide conformation with advantages over electronic (UV) CD (ECD) or IR spectroscopy. VCD is sensitive to short-range order, allowing it to discriminate beta-sheet and various helices as well as disordered structure. Quantitative secondary structure analyses use protein VCD bandshapes, but are best combined with ECD and IR for balance. Much recent work has focused on empirical and theoretical VCD analyses of peptides, with detailed prediction of helix, sheet and hairpin spectra and site-specific application of isotopic substitution for structure and folding.
振动圆二色性(VCD)提供了蛋白质和肽构象的不同视角,相对于电子(紫外)圆二色性(ECD)或红外光谱具有优势。VCD对短程有序敏感,使其能够区分β-折叠、各种螺旋以及无序结构。定量二级结构分析使用蛋白质VCD谱带形状,但最好与ECD和红外结合以达到平衡。最近的许多工作集中在肽的经验性和理论性VCD分析上,对螺旋、折叠和发夹光谱进行详细预测,并将同位素取代用于结构和折叠的位点特异性应用。