Prebiotic chemistry and protocells during the faint young sun event.

IF 4.9 Q1 BIOPHYSICS Biophysical reviews Pub Date : 2024-09-26 eCollection Date: 2024-10-01 DOI:10.1007/s12551-024-01223-4
Navaniswaran Tharumen, Mahendran Sithamparam, Tony Z Jia, Kuhan Chandru
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Abstract

The sun generates light and heat for life on Earth to flourish. However, during the late Hadean-early Archean epoch on Earth, the "faint young sun" (FYS) was less luminous, influencing prebiotic chemistry and, by extension, the origins of life (OoL). However, higher levels of ultraviolet (UV) radiation from the FYS, especially UV-C, due to the lack of an ozone layer, would likely have impacted the assembly, stability, persistence, and functions of prebiotic cellular precursors, i.e., protocells. Consequently, it is essential to study how such UV-C radiation would have affected the synthesis and stability of prebiotically relevant molecules and protocells to better understand the plausibility of the OoL during the FYS period. In this letter, we introduce unanswered questions surrounding the structure and stability of protocells under UV-C radiation. Such a perspective may be vital to exoplanetary systems orbiting other stars, enhancing our understanding of life's potential beyond our solar system.

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生命前化学和原始细胞在微弱的年轻太阳事件。
太阳产生光和热,使地球上的生命得以繁荣。然而,在地球的冥古宙晚期-太古宙早期,“微弱的年轻太阳”(FYS)亮度较低,影响了生命前化学,进而影响了生命的起源(OoL)。然而,由于缺乏臭氧层,来自FYS的更高水平的紫外线(UV)辐射,特别是UV- c,可能会影响益生元细胞前体(即原始细胞)的组装、稳定性、持久性和功能。因此,有必要研究这种UV-C辐射如何影响益生元相关分子和原始细胞的合成和稳定性,以更好地了解在FYS期间OoL的合理性。在这封信中,我们介绍了围绕在UV-C辐射下的原始细胞的结构和稳定性悬而未决的问题。这样的观点可能对围绕其他恒星运行的系外行星系统至关重要,增强了我们对太阳系以外生命潜力的理解。
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来源期刊
Biophysical reviews
Biophysical reviews Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
8.90
自引率
0.00%
发文量
93
期刊介绍: Biophysical Reviews aims to publish critical and timely reviews from key figures in the field of biophysics. The bulk of the reviews that are currently published are from invited authors, but the journal is also open for non-solicited reviews. Interested authors are encouraged to discuss the possibility of contributing a review with the Editor-in-Chief prior to submission. Through publishing reviews on biophysics, the editors of the journal hope to illustrate the great power and potential of physical techniques in the biological sciences, they aim to stimulate the discussion and promote further research and would like to educate and enthuse basic researcher scientists and students of biophysics. Biophysical Reviews covers the entire field of biophysics, generally defined as the science of describing and defining biological phenomenon using the concepts and the techniques of physics. This includes but is not limited by such areas as: - Bioinformatics - Biophysical methods and instrumentation - Medical biophysics - Biosystems - Cell biophysics and organization - Macromolecules: dynamics, structures and interactions - Single molecule biophysics - Membrane biophysics, channels and transportation
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Biophysical Reviews: the IUPAB journal promoting biophysics on an international stage. Probing living cell dynamics and molecular interactions using atomic force microscopy. Biophysical assays to test cellular mechanosensing: moving towards high throughput. Hydrogel models of pancreatic adenocarcinoma to study cell mechanosensing. Editorial to the topical issue: the 7th Nanoengineering for Mechanobiology Symposium 2024 Camogli, Genoa, Italy.
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