Hadidi Rim, Božanić Dušan K, Ganjitabar Hassan, Garcia Gustavo A, Powis Ivan, Nahon Laurent
Synchrotron SOLEIL, l'Orme des Merisiers, Gif sur Yvette Cedex, France.
Department of Radiation Chemistry and Physics, "VINČA" Institute of Nuclear Sciences-National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, Serbia.
Commun Chem. 2021 May 20;4(1):72. doi: 10.1038/s42004-021-00508-z.
Proline is a unique amino-acid, with a secondary amine fixed within a pyrrolidine ring providing specific structural properties to proline-rich biopolymers. Gas-phase proline possesses four main H-bond stabilized conformers differing by the ring puckering and carboxylic acid orientation. The latter defines two classes of conformation, whose large ionization energy difference allows a unique conformer-class tagging via electron spectroscopy. Photoelectron circular dichroism (PECD) is an intense chiroptical effect sensitive to molecular structures, hence theorized to be highly conformation-dependent. Here, we present experimental evidence of an intense and striking conformer-specific PECD, measured in the vacuum ultraviolet (VUV) photoionization of proline, as well as a conformer-dependent cation fragmentation behavior. This finding, combined with theoretical modeling, allows a refinement of the conformational landscape and energetic ordering, that proves inaccessible to current molecular electronic structure calculations. Additionally, astrochemical implications regarding a possible link of PECD to the origin of life's homochirality are considered in terms of plausible temperature constraints.
脯氨酸是一种独特的氨基酸,其仲胺固定在吡咯烷环内,为富含脯氨酸的生物聚合物提供特定的结构特性。气相脯氨酸具有四种主要的氢键稳定构象体,它们因环的褶皱和羧酸取向不同而有所差异。后者定义了两类构象,其较大的电离能差异使得通过电子能谱能够对独特的构象体类别进行标记。光电子圆二色性(PECD)是一种对分子结构敏感的强烈手性光学效应,因此理论上高度依赖于构象。在此,我们展示了在脯氨酸的真空紫外(VUV)光电离中测量到的强烈且显著的构象体特异性PECD的实验证据,以及构象体依赖性的阳离子碎片化行为。这一发现与理论建模相结合,使得能够优化构象态势和能量排序,而这是目前的分子电子结构计算所无法实现的。此外,从合理的温度限制角度考虑了PECD与生命同手性起源可能联系的天体化学意义。