Quantum Chemistry Group, Department of Chemistry & Centre of Advanced Studies in Chemistry, Panjab University, Chandigarh-160014, India.
Quantum Chemistry Group, Department of Chemistry & Centre of Advanced Studies in Chemistry, Panjab University, Chandigarh-160014, India.
Life Sci Space Res (Amst). 2021 Aug;30:29-38. doi: 10.1016/j.lssr.2021.05.003. Epub 2021 May 20.
The search for life-supporting molecules in outer space is an ever-growing endeavour. Towards this, the computational chemistry supporting the astronomical spectroscopic observations is becoming a valuable tool to unravel the complex chemical network in interstellar medium (ISM). In the present work, quantum-mechanical computations, accounting for anharmonic effects, are performed to obtain the rotational and vibrational line-data for the gas-phase conformers of proteinogenic amino acid Leucine and its isomeric species predicted to be involved in its stereoinversion under the extreme environment of ISM. These species exhibit diverse chemistry including branched skeleton and zwitterionic ammonium ylides. A few of the species have significantly high dipole moment, which can act as tracer for the conformers of Leucine having low dipole moment. Besides this, the species, which are terrestrially less stable, can be of significant importance to the astronomers. Notably, the spectral database generated in this work can assist in the detection of proteinogenic Leucine and its isomeric species in different regions of ISM.
在外太空中寻找支持生命的分子是一项不断发展的努力。为此,支持天文光谱观测的计算化学正在成为揭示星际介质(ISM)中复杂化学网络的有价值工具。在本工作中,进行了考虑非谐效应的量子力学计算,以获得气相构象异构体的转动和振动谱线数据,这些构象异构体预测在 ISM 的极端环境下参与其立体反转。这些物质表现出多样化的化学性质,包括支链骨架和两性离子铵叶立德。一些物质具有显著高的偶极矩,这可以作为具有低偶极矩的亮氨酸构象异构体的示踪剂。除此之外,在地球上不太稳定的物质对天文学家来说可能具有重要意义。值得注意的是,本工作生成的光谱数据库可以协助在 ISM 的不同区域检测蛋白质亮氨酸及其异构体。