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本文引用的文献

1
Temperature dependence of amide proton chemical shifts: the secondary structures of gramicidin S and valinomycin.酰胺质子化学位移的温度依赖性:短杆菌肽S和缬氨霉素的二级结构
Biochem Biophys Res Commun. 1969 Jul 23;36(2):194-202. doi: 10.1016/0006-291x(69)90314-3.
2
Stereochemical criteria for polypeptides and proteins. V. Conformation of a system of three linked peptide units.多肽和蛋白质的立体化学标准。V. 三个相连肽单元系统的构象
Biopolymers. 1968 Oct;6(10):1425-36. doi: 10.1002/bip.1968.360061006.
3
A conformational analysis of gramicidin S-A by nuclear magnetic resonance.通过核磁共振对短杆菌肽S-A进行构象分析。
Proc Natl Acad Sci U S A. 1968 Oct;61(2):734-41. doi: 10.1073/pnas.61.2.734.
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Nuclear magnetic resonance studies of the interaction of peptides and hormones with bovine neurophysin.肽和激素与牛神经垂体素相互作用的核磁共振研究
Biochemistry. 1973 Nov 6;12(23):4695-704. doi: 10.1021/bi00747a024.
5
Study of nitrogen-15-labeled amino acids and peptides by nuclear magnetic resonance spectroscopy.通过核磁共振光谱法对氮-15标记的氨基酸和肽进行研究。
Biochemistry. 1973 May 22;12(11):2100-5. doi: 10.1021/bi00735a013.
6
Studies of individual amino acid residues of the decapeptide tyrocidine A by proton double-resonance difference spectroscopy in the correlation mode.采用质子双共振差谱相关模式对十肽短杆菌酪肽A的单个氨基酸残基进行研究。
Biochemistry. 1975 Jan 28;14(2):420-9. doi: 10.1021/bi00673a032.
7
Intramolecular 1H nuclear Overhauser effect study of the solution conformation of valinomycin in dimethyl sulfoxide.在二甲基亚砜中缬氨霉素溶液构象的分子内1H核Overhauser效应研究
Biochemistry. 1976 Dec 28;15(26):5721-9. doi: 10.1021/bi00671a007.
8
Nuclear Overhauser enhancement demonstration of the type II beta-turn in repeat peptides of tropoelastin.原弹性蛋白重复肽段中II型β-转角的核Overhauser效应证明
Biochem Biophys Res Commun. 1976 May 17;70(2):485-91. doi: 10.1016/0006-291x(76)91072-x.
9
Use of proton nuclear Overhauser effects for the determination of the conformations of amino acid residues in oligopeptides.利用质子核Overhauser效应确定寡肽中氨基酸残基的构象。
Biochem Biophys Res Commun. 1977 Mar 7;75(1):207-15. doi: 10.1016/0006-291x(77)91310-9.
10
Amide proton spin-lattice relaxation in polypeptides. A field-dependence study of the proton and nitrogen dipolar interactions in alumichrome.多肽中的酰胺质子自旋-晶格弛豫。铝铬合物中质子与氮偶极相互作用的场依赖性研究。
Biophys J. 1978 Dec;24(3):849-62. doi: 10.1016/S0006-3495(78)85424-1.

十肽短杆菌酪肽A中二面角和跨环质子间距离的核Overhauser效应及交叉弛豫率测定

Nuclear Overhauser effect and cross-relaxation rate determinations of dihedral and transannular interproton distances in the decapeptide tyrocidine A.

作者信息

Kuo M C, Gibbons W A

出版信息

Biophys J. 1980 Nov;32(2):807-36. doi: 10.1016/S0006-3495(80)85018-1.

DOI:10.1016/S0006-3495(80)85018-1
PMID:6266536
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1327240/
Abstract

The following interproton distances are reported for the decapeptide tyrocidine A in solution: (a) r(phi) distances between NH(i) and H alpha (i), (b) r(psi) distances between NH (i + 1) and H alpha (i), (c) r(phi psi) distances between NH(i + 1) and NH(i), (d) NH in equilibrium NH transannular distances, (e) H alpha in equilibrium H alpha transannular distances, (f) r x 1 distances between H alpha and H beta protons, (g) NH(i) in equilibrium H beta (i) distances, (h) NH (i + 1) in equilibrium H beta (i) distances, (i) carboxamide-backbone protons and carboxamide-side chain proton distances, (j) side chain proton-side chain proton distances. The procedures for distance calculations were: NOE ratios and calibration distances, sigma ratios and calibration distances, and correlation times and sigma parameters. The cross-relaxation parameters were obtained from the product, say, of NOE 1 leads to 2 and the monoselective relaxation rate of proton 2; the NOEs were measured by NOE difference spectroscopy. The data are consistent with a type I beta-turn/ type II' beta-turn/ approximately antiparallel beta-pleated sheet conformation of tyrocidine A in solution and the NOEs, cross-relaxation parameters, and interproton distances serve as distinguishing criteria for beta-turn and beta-pleated sheet conformations. It should be borne in mind that measurement of only r phi and r psi distances for a decapeptide only defines the ( phi, psi)-space in terms of 4(10) possible conformations; the distances b-j served to reduce the degeneracy in possible (phi, psi)-space to one tyrocidine A conformation. The latter conformation is consistent with that derived from scalar coupling constants, hydrogen bonding studies, and proton-chromophore distance measurement, and closely resembles the conformation of gramicidin S.

摘要

溶液中十肽短杆菌酪肽A的以下质子间距离已被报道:(a) NH(i)与Hα(i)之间的r(φ)距离;(b) NH(i + 1)与Hα(i)之间的r(ψ)距离;(c) NH(i + 1)与NH(i)之间的r(φψ)距离;(d) 处于平衡状态的NH跨环距离;(e) 处于平衡状态的Hα跨环距离;(f) Hα与Hβ质子之间的r x 1距离;(g) 处于平衡状态的NH(i)与Hβ(i)之间的距离;(h) 处于平衡状态的NH(i + 1)与Hβ(i)之间的距离;(i) 羧酰胺主链质子与羧酰胺侧链质子之间的距离;(j) 侧链质子与侧链质子之间的距离。距离计算的方法有:NOE比率和校准距离、σ比率和校准距离以及相关时间和σ参数。交叉弛豫参数是从例如NOE 1到2的乘积以及质子2的单选择性弛豫速率获得的;NOE通过NOE差光谱法测量。这些数据与溶液中短杆菌酪肽A的I型β-转角/II'型β-转角/近似反平行β-折叠构象一致,并且NOE、交叉弛豫参数和质子间距离可作为β-转角和β-折叠构象的区分标准。应该记住,仅测量十肽的rφ和rψ距离仅根据4(10)种可能的构象定义了(φ, ψ)空间;距离b - j用于将可能的(φ, ψ)空间中的简并性降低到一种短杆菌酪肽A构象。后一种构象与从标量耦合常数、氢键研究和质子-发色团距离测量得出的构象一致,并且与短杆菌肽S的构象非常相似。