Incorporation of labeled amino acids into proteins of the cell organelles of muscle tissue during the restoration of the regenerative capacity of the limbs of axolotl, suppressed by x-irradiation.

N A Teplitz
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Abstract

The incorporation of labeled amino acids into the total proteins of muscle tissue and cell organelles during the regeneration of limbs of axolotls and after the suppression of the regenerative capacity by x-irradiation and its experimental restoration were investigated. In the case of suppression of the regenerative capacity of the limbs by x-irradiation, the protein synthesis in the muscle tissue is impaired. The intensity of the incorporation of labeled amino acids into the proteins of a homogenate of muscle tissue, nuclei, mitochondria, and the mitochondria-free fraction is reduced in comparison with normal regeneration. Under the influence of biopreparations (a salt extract from a homogenate of the rat gastrocnemius muscle), a restoration of protein synthesis, processes of differentiation, and the formation of regenerates was observed. C-14-lysine was incorporated most intensively into the proteins of the mitochondria-free fraction and nuclei at the spatula stage (exceeding this index in the series with irradiation of the limbs without treatment with the biopreparation by 5 and 7-fold, respectively).

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x射线抑制美西螈四肢再生能力恢复过程中,标记氨基酸与肌肉组织细胞器蛋白质的结合。
研究了蝾螈肢体再生过程中标记氨基酸与肌肉组织和细胞器总蛋白的结合情况,以及x射线对其再生能力的抑制和实验恢复。在x射线照射抑制四肢再生能力的情况下,肌肉组织中的蛋白质合成受到损害。与正常再生相比,标记氨基酸与肌肉组织、细胞核、线粒体和无线粒体部分的匀浆蛋白结合的强度降低。在生物修复剂(从大鼠腓肠肌匀浆中提取的盐提取物)的影响下,观察到蛋白质合成、分化过程和再生形成的恢复。在刮刀期,c -14-赖氨酸被最密集地结合到无线粒体部分和细胞核的蛋白质中(在未进行生物修复处理的肢体辐照组中,这一指数分别高出5倍和7倍)。
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