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Enzymatic Responses to Low-Intensity Radiation of Tritium

机译:对氚低强度辐射的酶促反应

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摘要

The present study considers a possible role of enzymatic reactions in the adaptive response of cells to the beta-emitting radionuclide tritium under conditions of low-dose exposures. Effects of tritiated water (HTO) on the reactions of bacterial luciferase and NAD(P)H:FMN-oxidoreductase, as well as a coupled system of these two reactions, were studied at radioactivity concentrations ≤ 200 MBq/L. Additionally, one of the simplest enzymatic reactions, photobiochemical proton transfer in Coelenteramide-containing Fluorescent Protein (CLM-FP), was also investigated. We found that HTO increased the activity of NAD(P)H:FMN-oxidoreductase at the initial stage of its reaction (by up to 230%); however, a rise of luciferase activity was moderate (<20%). The CLM-FP samples did not show any increase in the rate of the photobiochemical proton transfer under the exposure to HTO. The responses of the enzyme systems were compared to the ‘hormetic’ response of luminous marine bacterial cells studied earlier. We conclude that (1) the oxidoreductase reaction contributes significantly to the activation of the coupled enzyme system and bacterial cells by tritium, and (2) an increase in the organization level of biological systems promotes the hormesis phenomenon.
机译:本研究考虑在低剂量曝光条件下细胞对β发射放射性核素氚的适应性响应中的酶促反应的可能作用。在放射性浓度下,研究了氚化水(HTO)对细菌荧光素酶和NAD(P)H:FMN-氧化还原酶的反应(P)H:FMN-氧化还原酶的影响,在放射性浓度≤200mbq/升。另外,还研究了最简单的酶促反应之一,含Coelentamide荧光蛋白(CLM-FP)的光学化学质子转移之一。我们发现HTO在其反应的初始阶段增加了NAD(P)H:FMN-氧化还原酶的活性(高达230%);然而,荧光素酶活性的升高为中等(<20%)。 CLM-FP样品未显示在接触HTO下的光学化学质子转移速率的任何增加。将酶系统的反应与早期研究的发光船只细菌细胞的“刺激性”反应进行了比较。我们得出结论,(1)氧化还原酶反应显着促使偶联酶系统和细菌细胞的激活,并通过氚激活,(2)生物系统组织水平的增加促进了血液化现象。

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