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突变分析能否用于辅助肽结构的确定?

Can Mutational Analysis Be Used To Assist Structure Determination of Peptides?

机构信息

Laboratoire de Chimie Physique Moléculaire, École Polytechnique Fédérale de Lausanne, EPFL SB ISIC LCPM , Station 6, CH-1015 Lausanne, Switzerland.

出版信息

J Am Chem Soc. 2018 Feb 21;140(7):2401-2404. doi: 10.1021/jacs.7b11302. Epub 2018 Feb 9.

Abstract

Mutational analysis is widely used to study the relationship between sequence and structure of proteins and peptides. It is often assumed that substituting a proline with another amino acid "locks" the peptide bond in the trans conformation, allowing only a subset of the initial molecular geometries to be observed. To test this assumption, we assess the result of substituting two prolines in the bradykinin sequence with alanine using field-asymmetric ion mobility spectrometry combined with cryogenic ion spectroscopy in the gas phase. While the structure of the mutant coincides with a part of the conformational space of the original peptide, the higher flexibility of the alanine backbone compared to proline allows it to access additional structures. We conclude that proline-to-nonproline substitutions are helpful to assign structures, but they should be used in conjunction with spectroscopic techniques that allow detailed comparison of the structures of the mutant and the native peptide.

摘要

突变分析被广泛用于研究蛋白质和肽的序列和结构之间的关系。通常假设用另一种氨基酸取代脯氨酸“锁定”肽键处于反式构象,仅允许观察初始分子几何形状的一个子集。为了检验这一假设,我们使用非对称场离子迁移谱结合低温离子光谱法在气相中评估了 bradykinin 序列中两个脯氨酸被丙氨酸取代的结果。虽然突变体的结构与原始肽的构象空间的一部分一致,但与脯氨酸相比,丙氨酸主链的更高灵活性允许其进入额外的结构。我们得出结论,脯氨酸到非脯氨酸的取代有助于确定结构,但应与允许详细比较突变体和天然肽结构的光谱技术一起使用。

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