Dukor R K, Keiderling T A
Department of Chemistry, University of Illinois, Chicago 60680.
Biopolymers. 1991 Dec;31(14):1747-61. doi: 10.1002/bip.360311409.
The "random coil" conformational problem is examined by comparison of vibrational CD (VCD) spectra of various polypeptide model systems with that of proline oligomers [(Pro)n] and poly(L-proline). VCD, ir and uv CD spectra of blocked L-proline oligopeptides [(Pro)n, n = 2-12] in different solvents are reported and compared to the spectra of poly(L-proline) II, poly(L-glutamic acid), and unblocked proline oligomers. Based on the chain-length dependence of the VCD and electronic CD (ECD) spectra of proline oligomers, it is established that VCD spectra are dominated by short-range interactions. The VCD of random coil model polypeptides is shown to be identical in shape but smaller in magnitude than poly(L-proline) II and of similar magnitude to that of (Pro)n (n = 3, 4). Based on the spectral evidence, it is concluded that the "random coil" conformation has a large fraction of helical regions, conformationally similar to the left-handed, 3(1) polyproline II helix, as was previously suggested by Krimm and co-workers. This conclusion is further supported by studies of effects of salt (CaCl2, LiBr, LiClO4), temperature (5-75 degrees C), and pH on the VCD spectra of L-proline oligomers, poly(L-proline) II, and poly(L-glutamic acid). These show that, after each of these perturbations, a significant local ordering remains in the oligomers and polymers studied, and that charged polypeptides such as poly(L-glutamic acid) are more flexible than are polyproline or even L-proline oligomers.
通过比较各种多肽模型系统与脯氨酸低聚物[(Pro)n]和聚(L-脯氨酸)的振动圆二色性(VCD)光谱,研究了“无规卷曲”构象问题。报道了封闭的L-脯氨酸寡肽[(Pro)n,n = 2 - 12]在不同溶剂中的VCD、红外和紫外圆二色性光谱,并与聚(L-脯氨酸)II、聚(L-谷氨酸)和未封闭的脯氨酸寡聚物的光谱进行了比较。基于脯氨酸寡聚物的VCD和电子圆二色性(ECD)光谱的链长依赖性,确定VCD光谱主要由短程相互作用主导。结果表明,无规卷曲模型多肽的VCD形状相同,但幅度比聚(L-脯氨酸)II小,与(Pro)n(n = 3,4)的幅度相似。基于光谱证据,得出结论:“无规卷曲”构象有很大一部分螺旋区域,其构象与左手3(1)聚脯氨酸II螺旋相似,这与克里姆及其同事之前的建议一致。盐(CaCl2、LiBr、LiClO4)、温度(5 - 75℃)和pH对L-脯氨酸寡聚物、聚(L-脯氨酸)II和聚(L-谷氨酸)的VCD光谱影响的研究进一步支持了这一结论。这些研究表明,在每一次这些扰动之后,所研究的寡聚物和聚合物中仍存在显著的局部有序性,并且带电荷的多肽如聚(L-谷氨酸)比聚脯氨酸甚至L-脯氨酸寡聚物更具柔性。