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AppppA及相关的腺苷酸化核苷酸是氧化应激的产物。 (注:原文中AppppA多了几个p,推测可能有误,正常应该是pppA之类的,这里按照正确理解翻译,但严格来说原文有误。)

AppppA and related adenylylated nucleotides are synthesized as a consequence of oxidation stress.

作者信息

Bochner B R, Lee P C, Wilson S W, Cutler C W, Ames B N

出版信息

Cell. 1984 May;37(1):225-32. doi: 10.1016/0092-8674(84)90318-0.

Abstract

AppppA , ApppGpp , AppppG , ApppG , and ApppA rapidly accumulate to high levels in Salmonella typhimurium following exposure to a variety of oxidizing agents, but not to a variety of other stresses. Among the agents inducing these adenylylated nucleotides are 1-chloro-2,4-dinitrobenzene, diamide, hydrogen peroxide, t-butyl hydroperoxide, N-ethyl maleimide, iodoacetamide, cadmium chloride, and a variety of quinones. Some of these oxidizing agents cause preferential synthesis of specific adenylylated nucleotides, e.g., N-ethyl maleimide induces ApppA and menadione induces ApppGpp . Our data, as well as other evidence in the literature, strongly suggest that oxidation stress is coupled to adenylylated nucleotide synthesis by aminoacyl-tRNA synthetases. Although adenylylated nucleotides are made by tRNA synthetases in vitro, their synthesis in vivo is not a simple consequence of inhibition of synthetase activity. Compounds that inhibit normal charging by aminoacyl-tRNA synthetases do not result in the synthesis of adenylylated nucleotides, nor do mutations in tRNA synthetase structural genes or tRNA structural, modifying, or processing genes. We propose that the family of adenylylated nucleotides are alarmones signaling the onset of oxidation stress, and that particular ones may be alarmones for specific oxidative stresses, e.g., ApppGpp for oxidative damage to amino acid biosynthesis.

摘要

在鼠伤寒沙门氏菌中,暴露于多种氧化剂后,AppppA、ApppGpp、AppppG、ApppG和ApppA会迅速积累至高水平,但暴露于多种其他应激条件下则不会。诱导这些腺苷酸化核苷酸的试剂包括1-氯-2,4-二硝基苯、二酰胺、过氧化氢、叔丁基过氧化氢、N-乙基马来酰亚胺、碘乙酰胺、氯化镉和多种醌类。其中一些氧化剂会导致特定腺苷酸化核苷酸的优先合成,例如,N-乙基马来酰亚胺诱导ApppA的合成,甲萘醌诱导ApppGpp的合成。我们的数据以及文献中的其他证据强烈表明,氧化应激通过氨酰-tRNA合成酶与腺苷酸化核苷酸的合成相关联。虽然腺苷酸化核苷酸在体外由tRNA合成酶合成,但其在体内的合成并非合成酶活性受到抑制的简单结果。抑制氨酰-tRNA合成酶正常氨基酸负载的化合物不会导致腺苷酸化核苷酸的合成,tRNA合成酶结构基因或tRNA结构、修饰或加工基因的突变也不会导致其合成。我们提出,腺苷酸化核苷酸家族是氧化应激开始的警报素,并且特定的警报素可能针对特定的氧化应激,例如,ApppGpp针对氨基酸生物合成的氧化损伤。

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