首页> 外文会议>Second European Workshop on Exo-Astrobiology Sep 16-19, 2002 Graz, Austria >STUDY OF THE EFFECT OF SIMULATED SPACE ENVIRONMENT ON NUCLEOPROTEIN AND DNA THIN FILMS
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STUDY OF THE EFFECT OF SIMULATED SPACE ENVIRONMENT ON NUCLEOPROTEIN AND DNA THIN FILMS

机译:模拟空间环境对蛋白质和DNA薄膜的影响研究

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The main goal of PUR experiment (phage and uracil response) is to examine and quantify the effect of specific space conditions on nucleic acid models. To achieve this an improved method was elaborated for the preparation of DNA and bacteriophage thin films. The homogeneity of the films was controlled by UV spectroscopy and microscopy. To provide experimental evidence for the hypothesis that interplanetary transfer of life is possible, phage T7 and isolated T7 DNA thin films have been exposed to selected space conditions: intense UVC radiation (λ = 254 nm) and high vacuum (10~(-5) mbar). The effects of DNA hydration, conformation and packing on UV radiation damage were examined. Characteristic changes in the absorption spectrum, in the electrophoretic pattern of DNA and the decrease of the amount of PCR products have been detected indicating the photodamage of isolated and intraphage DNA.
机译:PUR实验(噬菌体和尿嘧啶反应)的主要目标是检查和量化特定空间条件对核酸模型的影响。为了实现这一点,精心设计了一种改进的方法来制备DNA和噬菌体薄膜。膜的均匀性通过紫外光谱和显微镜检查来控制。为了为可能的行星际转移生命的假设提供实验证据,噬菌体T7和分离的T7 DNA薄膜已暴露于选定的空间条件下:强UVC辐射(λ= 254 nm)和高真空(10〜(-5)毫巴)。检查了DNA水合,构象和堆积对UV辐射损伤的影响。已检测到吸收光谱,DNA电泳图谱的特征变化和PCR产物数量的减少,表明分离的和噬菌体DNA的光损伤。

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