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Solid state radiolysis of sulphur-containing amino acids: Cysteine, cystine and methionine

机译:固态硫分解含硫氨基酸:半胱氨酸,胱氨酸和蛋氨酸

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The sulphur-containing proteinaceous amino acids l-cysteine, l-cystine and l-methionine were irradiated in the solid state to a dose of 3.2 MGy. This dose corresponds to that delivered by radionuclide decay in a timescale of 1.05 × 10~9 years to the organic matter buried at a depth >20 m in comets and asteroids. The purity of the sulphur-containing amino acids was studied by differential scanning calorimetry (DSC) before and after the solid state radiolysis and the preservation of the chirality after the radiolysis was studied by chirooptical methods (optical rotatory dispersion, ORD) and by FT-IR spectroscopy. Although the high radiation dose of 3.2 MGy delivered, all the amino acids studied show a high radiation resistance. The best radiation resistance was offered by l-cysteine. The radiolysis of l-cysteine leads to the formation of l-cystine. The radiation resistance of l-methionine is not at the level of l-cysteine but also l-methionine is able to survive the dose of 3.2 MGy. Furthermore in all cases examined the preservation of chirality after radiolysis was clearly observed by the ORD spectroscopy although a certain level of radioracemization was measured in all cases. The radioracemization is minimal in the case of l-cysteine and is more pronounced in the case of l-methionine. In conclusion, the study shows that the sulphur-containing amino acids can survive for 1.05 × 10~9 years and, after extrapolation of the data, even to the age of the Solar System i.e. to 4.6 × 10 ~9 years.
机译:以固态照射含硫的蛋白质氨基酸L-半胱氨酸,L-胱氨酸和L-蛋氨酸至剂量为3.2MGy。该剂量对应于放射性核素在1.05×10〜9年的时间范围内向埋在彗星和小行星中> 20 m深度的有机物质中所传递的剂量。在固态辐射之前和之后,通过差示扫描量热法(DSC)研究了含硫氨基酸的纯度,并通过手性方法(光学旋转分散,ORD)和通过FT-红外光谱。尽管递送了3.2MGy的高辐射剂量,但是所有研究的氨基酸都显示出高的抗辐射性。 l-半胱氨酸提供了最佳的抗辐射性。 L-半胱氨酸的放射分解导致L-半胱氨酸的形成。 L-蛋氨酸的抗辐射能力不是L-半胱氨酸的水平,而是L-蛋氨酸能够在3.2 MGy的剂量下存活。此外,在所有检查的情况下,尽管在所有情况下都测量到一定水平的放射性外消旋作用,但通过ORD光谱学可以清楚地观察到放射分解后手性的保留。在l-半胱氨酸的情况下,放射消融作用极小,在l-蛋氨酸的情况下,放射消融作用更明显。总之,研究表明,含硫氨基酸可以生存1.05×10〜9年,并且在数据外推后,甚至可以维持到太阳系的年龄,即4.6×10〜9年。

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