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Stability toward High Energy Radiation of Non-Proteinogenic Amino Acids: Implications for the Origins of Life

机译:非蛋白原氨基酸对高能量辐射的稳定性:对生命起源的影响

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A series of non-proteinogenic amino acids, most of them found quite commonly in the meteorites known as carbonaceous chondrites, were subjected to solid state radiolysis in vacuum to a total radiation dose of 3.2 MGy corresponding to 23% of the total dose expected to be taken by organic molecules buried in asteroids and meteorites since the beginning of the solar system 4.6 × 109 years ago. The radiolyzed amino acids were studied by FT-IR spectroscopy, Differential Scanning Calorimetry (DSC) and by polarimety and Optical Rotatory Dispersion (ORD). It is shown that an important fraction of each amino acid is able to “survive” the massive dose of radiation, while the enantiomeric excess is partially preserved. Based on the results obtained, it is concluded that it is unsurprising to find amino acids even in enantiomeric excess in carbonaceous chondrites.
机译:一系列非蛋白质氨基酸,其中大多数在称为碳质球粒陨石的陨石中很常见,在真空下进行了固态放射分解,总辐射剂量为3.2 MGy,相当于预期总剂量的23%。自4.6×10 9 年前的太阳系开始以来,被埋在小行星和陨石中的有机分子所捕获。通过FT-IR光谱,差示扫描量热法(DSC)以及极性和旋光色散(ORD)研究了放射性氨基酸。结果表明,每个氨基酸的重要部分都能“存活”大量辐射,而对映体过量则部分保留。根据获得的结果,得出结论,即使在碳质球粒陨石中对映异构体过量也找不到氨基酸。

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