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追溯甘氨酸原始化学生命:量子化学模拟综述。

Tracing the Primordial Chemical Life of Glycine: A Review from Quantum Chemical Simulations.

机构信息

Departament de Química, Universitat Autònoma de Barcelona, 08193 Catalonia, Spain.

Dipartimento di Chimica, Biologia e Biotecnologie, Università di Perugia, Via Elce di Sotto 8, 06123 Perugia, Italy.

出版信息

Int J Mol Sci. 2022 Apr 12;23(8):4252. doi: 10.3390/ijms23084252.

Abstract

Glycine (Gly), NHCHCOOH, is the simplest amino acid. Although it has not been directly detected in the interstellar gas-phase medium, it has been identified in comets and meteorites, and its synthesis in these environments has been simulated in terrestrial laboratory experiments. Likewise, condensation of Gly to form peptides in scenarios resembling those present in a primordial Earth has been demonstrated experimentally. Thus, Gly is a paradigmatic system for biomolecular building blocks to investigate how they can be synthesized in astrophysical environments, transported and delivered by fragments of asteroids (meteorites, once they land on Earth) and comets (interplanetary dust particles that land on Earth) to the primitive Earth, and there react to form biopolymers as a step towards the emergence of life. Quantum chemical investigations addressing these Gly-related events have been performed, providing fundamental atomic-scale information and quantitative energetic data. However, they are spread in the literature and difficult to harmonize in a consistent way due to different computational chemistry methodologies and model systems. This review aims to collect the work done so far to characterize, at a quantum mechanical level, the chemical life of Gly, i.e., from its synthesis in the interstellar medium up to its polymerization on Earth.

摘要

甘氨酸(Gly),NHCHCOOH,是最简单的氨基酸。尽管它尚未在星际气相介质中直接检测到,但已在彗星和陨石中被识别出来,并且已经在地球实验室实验中模拟了其在这些环境中的合成。同样,在类似于原始地球上存在的情景下,甘氨酸凝结形成肽的实验已经得到了证明。因此,甘氨酸是生物分子构建块的典范系统,可以研究它们如何在天体物理环境中合成,通过小行星(一旦落在地球上就成为陨石)和彗星(落在地球上的星际尘埃颗粒)的碎片进行运输和输送到原始地球上,然后在那里反应形成生物聚合物,作为生命出现的一个步骤。已经进行了涉及这些甘氨酸相关事件的量子化学研究,提供了基本的原子尺度信息和定量能量数据。然而,由于不同的计算化学方法和模型系统,这些工作分散在文献中,难以以一致的方式协调。本综述旨在收集迄今为止所做的工作,以在量子力学水平上表征甘氨酸的化学生命,即从其在星际介质中的合成到其在地球上的聚合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9299/9030215/bdb7f3c40e33/ijms-23-04252-g001.jpg

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