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Protein synthesis and the viability of rye grains. Loss of activity of protein-synthesizing systems in vitro associated with a loss of viability

机译:蛋白质合成和黑麦谷物的生存能力。体外蛋白质合成系统活性的丧失与活力的丧失相关

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摘要

A study was made of the integrity of some components of the protein-synthesizing system from viable and non-viable embryos of rye grains. In comparison with viable-embryo components both post-ribosomal supernatant and ribosomal fractions from non-viable embryos are impaired, for neither will fully support polyphenylalanine synthesis in poly(U)-directed cell-free systems. The lesion in the supernatant lies in components other than the tRNA or the aminoacyl-tRNA synthetase, for these are as functional as those present in the fully active cell-free systems from viable embryos. The ribosomes of embryos of lowered viability show considerable fragmentation and degradation of both 18S and 25S rRNA. This breakdown does not, however, account for the complete lack of polypeptide synthesis in the poly(U)-directed non-viable-embryo system, for if provided with viable-embryo supernatant, non-viable-embryo ribosomes will sustain 60% of the viable-embryo ribosome activity. A lesion in non-viable-embryo supernatant has been located in the binding of the aminoacyl-tRNA to the ribosome. The impaired components in both supernatant and ribosomes in systems in vitro may reflect the site of faults in protein synthesis in vivo in the early hours of germination. The development of these lesions during grain storage could contribute to senescence and loss of viability in the embryos of rye.
机译:从黑麦谷物的有生命和无生命的胚胎对蛋白质合成系统某些成分的完整性进行了研究。与活胚成分相比,核糖体后的上清液和来自非活胚的核糖体级分均受到损害,因为它们都不能完全支持聚(U)定向无细胞系统中的聚苯丙氨酸合成。上清液中的病变位于tRNA或氨酰基-tRNA合成酶以外的其他成分中,因为它们的功能与活胚完全无细胞系统中存在的功能相同。存活力降低的胚胎的核糖体显示出18S和25S rRNA的大量断裂和降解。但是,这种分解并不能说明在定向于poly(U)的非存活胚系统中多肽合成的完全缺乏,因为如果提供有存活胚上清液,则非存活核糖体将维持60%活胚核糖体活性。非存活胚胎上清液中的病变位于氨酰基-tRNA与核糖体的结合中。体外系统中上清液和核糖体中受损的成分可能反映了发芽初期体内体内蛋白质合成的缺陷部位。谷物储存过程中这些病变的发展可能有助于黑麦胚的衰老和丧失活力。

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