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Gamma-radiation induced agglomeration of chicken muscle myosin and actin

机译:伽马射线辐射引起的鸡肌肌球蛋白和肌动蛋白的团聚

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摘要

Radiolytic behaviour of the major vertebrate muscle proteins: fibrillar myosin (molar mass, M_m = 520,000 g/mol) and filament forming actin (M_m = 42,050 g/mol) was studied using a SDS-polyacrylamide gel electrophoresis and quantified by high precision laser-densitometry. In order to study the OH radical contribution to the radiation damage, purified chicken myosin and actin (4 μM) were prepared in N_2O saturated solution and irradiated with 1-3 kGy at~(60)Co gamma source. With respect to changes in the molecular mass, the only observed myosin and actin damage was dose dependent agglomeration of proteins. The corresponding radiation chemical yields of 5 x 10~(-8) mol J~(-1) and 6.3 x 10~(-8) mol J~(-1) were obtained for myosin and actin, respectively. This result confirmed that only the radiation-induced agglomeration is initiated with the reaction of the OH radical even in the situation where the OH radical concentration produced exceeds the protein concentration 500 times, thus enabling the multi-radical attack to occur.
机译:使用SDS-聚丙烯酰胺凝胶电泳研究了主要脊椎动物肌肉蛋白(纤维状肌球蛋白(摩尔质量,M_m = 520,000 g / mol)和长丝形成肌动蛋白(M_m = 42,050 g / mol))的放射分解行为,并通过高精度激光定量-密度测定法。为了研究OH自由基对辐射损伤的影响,在N_2O饱和溶液中制备了纯化的鸡肌球蛋白和肌动蛋白(4μM),并在〜(60)Coγ源下照射了1-3 kGy。关于分子量的变化,唯一观察到的肌球蛋白和肌动蛋白损伤是蛋白质的剂量依赖性团聚。肌球蛋白和肌动蛋白的相应辐射化学产率分别为5 x 10〜(-8)mol J〜(-1)和6.3 x 10〜(-8)mol J〜(-1)。该结果证实,即使在所产生的OH自由基浓度超过蛋白质浓度500倍的情况下,也仅通过OH自由基的反应引发辐射诱导的团聚,从而能够发生多自由基攻击。

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