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关于紫外线辐射对大肠杆菌50S核糖体亚基核糖体RNA组分结构完整性影响的研究。

Studies of the effects of ultraviolet radiation on the structural integrities of ribosomal RNA components of the Escherichia coli 50S ribosomal subunit.

作者信息

Gorelic L, Parker D

出版信息

Biochemistry. 1978 Jul 25;17(15):3152-62. doi: 10.1021/bi00608a033.

Abstract

The effects of 254-nm radiation on the structural integrities of free and 50S ribosome-bound 5S and 23S ribosomal ribonucleic acids (rRNA) have been elucidated. Irradiation of aqueous solutions of Escherichia coli 50S ribosomes with 253.7-nm radiation results in the formation of single-strand breaks in double-stranded regions of the 23S rRNA component, but not in rRNA chain scission, and destabilization of the secondary structure of the 23S rRNA toward denaturation. The minimum doses of 253.7-nm radiation required for the first detection of the two effects are 7 x 10(19) quanta for the production of single-strand breaks in double-stranded regions of the 23S rRNA, and less than 2.3 x 10(19) quanta for destabilization of the 23S rRNA secondary structure. Free 23S rRNA is resistant toward photoinduced chain breakage at doses of 253.7-nm radiation up to at least 2.3 x 10(20) and is much less sensitive toward destabilization of secondary structure than ribosome-bound 23S rRNA toward chain breakage, 50S ribosome-bound 5S rRNA is resistant toward chain breakage at doses of 253.7-nm radiation up to at least 2.3 x 10(20) quanta. Ribosome-bound 5S and 23S rRNA are also not photosensitive toward intermolecular 5S/23S rRNA crosslinkage.

摘要

已阐明254纳米辐射对游离及与50S核糖体结合的5S和23S核糖体核糖核酸(rRNA)结构完整性的影响。用253.7纳米辐射照射大肠杆菌50S核糖体的水溶液,会导致23S rRNA组分双链区域形成单链断裂,但不会导致rRNA链断裂,且会使23S rRNA二级结构向变性方向不稳定。首次检测到这两种效应所需的253.7纳米辐射的最小剂量,对于在23S rRNA双链区域产生单链断裂为7×10¹⁹量子,对于使23S rRNA二级结构不稳定则小于2.3×10¹⁹量子。游离的23S rRNA在253.7纳米辐射剂量至少达到2.3×10²⁰时对光诱导链断裂具有抗性,且对二级结构不稳定的敏感性远低于与核糖体结合的23S rRNA对链断裂的敏感性。与50S核糖体结合的5S rRNA在253.7纳米辐射剂量至少达到2.3×10²⁰量子时对链断裂具有抗性。与核糖体结合的5S和23S rRNA对分子间5S/23S rRNA交联也不敏感。

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