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Inactivation of catalase monolayers by irradiation with 100 keV electrons.

机译:用100 keV电子辐照使过氧化氢酶单层失活。

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摘要

A catalase monolayer adsorbed on a layer of arachidic acid deposited on a solid support was irradiated with 100 keV electrons simulating the conditions of electron microscopic imaging. Effective doses were calculated taking into account the angular and energy distribution of backscattered electrons. Enzymatic inactivation was chosen as the criterion for damage and was monitored by a rapid and quantifiable but nevertheless sensitive assay. Dose-response curves revealed that inactivation is a one-hit-multiple-target phenomenon, which is consistent with biochemical evidence for a cooperative function of subunits. The experimentally determined target size coincides fairly well with both calculated cross sections for inelastic interactions based on the atomic composition of catalase and with calculated cross sections for ionizing events based on the chemical bonds involved. This legitimates both types of calculations even for complex biomolecules.
机译:用模拟电子显微镜成像条件的100 keV电子辐照吸附在固体支持物上沉积的花生酸层上的过氧化氢酶单层。计算有效剂量时要考虑到反向散射电子的角度和能量分布。选择酶灭活作为损害的标准,并通过快速,定量但灵敏的检测方法进行监测。剂量-反应曲线表明,灭活是一种单靶多靶现象,与亚基协同功能的生化证据一致。实验确定的目标尺寸与基于过氧化氢酶原子组成的非弹性相互作用的计算截面和基于涉及的化学键的电离事件的计算截面都非常吻合。即使对于复杂的生物分子,这也可以使两种类型的计算合法化。

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