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过甲酸氧化核糖核酸酶A胰蛋白酶片段中的局部结构,该结构对应于通过酪氨酸荧光寿命和质子磁共振测量检测到的一个假定的多肽链折叠起始位点。

Local structure in a tryptic fragment of performic acid oxidized ribonuclease A corresponding to a proposed polypeptide chain-folding initiation site detected by tyrosine fluorescence lifetime and proton magnetic resonance measurements.

作者信息

Haas E, Montelione G T, McWherter C A, Scheraga H A

出版信息

Biochemistry. 1987 Mar 24;26(6):1672-83. doi: 10.1021/bi00380a028.

Abstract

The effects of proline and X-Pro peptide bond conformations on the fluorescence properties of tyrosine in peptides corresponding to parts of a proposed chain-folding initiation site in bovine pancreatic ribonuclease A are examined by time-resolved and steady-state fluorescence spectroscopy. In peptides with Tyr-Pro sequences, the conformational constraints of proline on a preceding residue result in significant fluorescence quenching for both trans and cis peptide bond conformations. Small peptides containing Pro-Tyr sequences, on the other hand, do not exhibit fluorescence quenching compared to Ac-Tyr-NHMe. Studies of fluorescence decay in the tryptic fragment of performic acid oxidized ribonuclease corresponding to residues 105-124 (i.e., O-T-16) demonstrate the presence of at least two environments of the single tyrosine chromophore (in the sequence Asn113-Pro114-Tyr115). In these two (ensemble-averaged) environments, tyrosine has shorter and longer lifetimes, respectively, than in Ac-Tyr-NHMe. The fluorescence heterogeneity in O-T-16 does not correlate with X-Pro cis/trans conformational heterogeneity that can be detected by nuclear magnetic resonance (NMR) spectroscopy. Instead, the fluorescence heterogeneity in O-T-16 arises from the presence of multiple conformations with the same X-Pro peptide bond conformations which interconvert rapidly on the 1H NMR time scale (tau much less than 1 ms) but are distinguishable on the fluorescence lifetime time scale (tau greater than or equal to 1 ns). From comparisons with the tyrosine fluorescence decay of smaller synthetic peptides, it is concluded that the long-lifetime tyrosine fluorescence component of O-T-16 arises from interactions involving residues outside the Asn113-Pro114-Tyr115-Val116-Pro117 sequence, which either stabilize particular local conformations in the vicinity of Tyr115 or act directly to protect Tyr115 from efficient fluorescence quenching. The short-lifetime component of O-T-16 is also observed for the pentapeptide Ac-Asn-Pro-Tyr-Val-Pro-NHMe. The data provide evidence for a nonrandom polypeptide conformation of O-T-16 under conditions of solvent pH and temperature at which the complete disulfide-intact ribonuclease molecule is fully folded. Implications of this work for the interpretation of fluorescence-detected unfolding experiments are discussed.

摘要

通过时间分辨和稳态荧光光谱法,研究了脯氨酸和X-脯氨酸肽键构象对牛胰核糖核酸酶A中拟议的链折叠起始位点部分对应的肽中酪氨酸荧光特性的影响。在具有Tyr-Pro序列的肽中,脯氨酸对前一个残基的构象限制导致反式和顺式肽键构象均出现显著的荧光猝灭。另一方面,与Ac-Tyr-NHMe相比,含有Pro-Tyr序列的小肽未表现出荧光猝灭。对过甲酸氧化的核糖核酸酶对应于残基105 - 124(即O-T-16)的胰蛋白酶片段中的荧光衰减研究表明,单个酪氨酸发色团(在序列Asn113-Pro114-Tyr115中)至少存在两种环境。在这两种(整体平均)环境中,酪氨酸的寿命分别比在Ac-Tyr-NHMe中短和长。O-T-16中的荧光异质性与可通过核磁共振(NMR)光谱检测到的X-脯氨酸顺式/反式构象异质性无关。相反,O-T-16中的荧光异质性源于具有相同X-脯氨酸肽键构象的多种构象的存在,这些构象在1H NMR时间尺度上快速相互转换(弛豫时间远小于1毫秒),但在荧光寿命时间尺度上(弛豫时间大于或等于1纳秒)是可区分的。通过与较小合成肽的酪氨酸荧光衰减进行比较,得出结论:O-T-16中长寿命的酪氨酸荧光成分源于涉及Asn113-Pro114-Tyr115-Val116-Pro117序列之外残基的相互作用,这些残基要么稳定Tyr115附近的特定局部构象,要么直接作用以保护Tyr115免受有效的荧光猝灭。五肽Ac-Asn-Pro-Tyr-Val-Pro-NHMe也观察到了O-T-16的短寿命成分。这些数据为在溶剂pH和温度条件下O-T-16的非随机多肽构象提供了证据,此时完整的二硫键完整的核糖核酸酶分子已完全折叠。讨论了这项工作对荧光检测的去折叠实验解释的意义。

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