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水溶液中线性肽中VI型转角的三维结构。芳香环堆积作为主要稳定因素的证据。

Three-dimensional structure of a type VI turn in a linear peptide in water solution. Evidence for stacking of aromatic rings as a major stabilizing factor.

作者信息

Yao J, Dyson H J, Wright P E

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

J Mol Biol. 1994 Nov 4;243(4):754-66. doi: 10.1016/0022-2836(94)90045-0.

DOI:10.1016/0022-2836(94)90045-0
PMID:7966294
Abstract

Structures have been calculated for the folded conformation found at high population in the cis isomeric form of the peptide NH3(+)-Ser-Tyr-Pro-Phe-Asp-Val-COO- (SYPFDV) in aqueous solution, using distance geometry and restrained molecular dynamics. A number of NMR parameters, including NOE distance restraints and phi and chi 1 dihedral angle restraints derived from coupling constants were used in the calculation. The restraints were carefully selected to exclude those that might have a significant contribution from the unfolded states of the peptide, so that the calculated structure represents only the folded form (present at about 70% population) and contains no information on the other members of the conformational ensemble. The calculations give a tight family of structures in the region Tyr2 to Phe4, all containing a type VI turn with an unusual disposition of the aromatic rings of Tyr and Phe, which stack against the proline ring. Both backbone and side-chain conformations are well defined in this region. At the ends of the molecule the polypeptide chain is disordered. The structures are consistent with all of the available NMR information, including upfield chemical shifts observed for the proline ring protons in the cis isomer, and with the independently determined proline ring pucker. There is no evidence for cross-turn hydrogen bonding. According to the calculated structures, the major source of stabilization of the turn conformation appears to be the stacking of the aromatic and proline rings.

摘要

利用距离几何和受限分子动力学方法,已计算出在水溶液中以高丰度存在的顺式异构体形式的肽NH3(+)-Ser-Tyr-Pro-Phe-Asp-Val-COO- (SYPFDV)的折叠构象的结构。计算中使用了许多核磁共振参数,包括从耦合常数导出的NOE距离限制以及phi和chi 1二面角限制。仔细选择这些限制以排除那些可能来自肽未折叠状态的显著贡献,从而使计算出的结构仅代表折叠形式(约占70%丰度),并且不包含构象集合中其他成员的信息。计算在Tyr2至Phe4区域给出了一组紧密的结构,所有结构都包含一个VI型转角,其中Tyr和Phe的芳香环具有不寻常的排列方式,它们与脯氨酸环堆叠。在该区域主链和侧链构象都定义明确。在分子末端多肽链是无序的。这些结构与所有可用的核磁共振信息一致,包括在顺式异构体中脯氨酸环质子观察到的高场化学位移,并且与独立确定的脯氨酸环褶皱一致。没有交叉转角氢键的证据。根据计算出的结构,转角构象稳定的主要来源似乎是芳香环和脯氨酸环的堆叠。

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