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Guanosine tetra- and pentaphosphate synthase activity in chloroplasts of a higher plant: association with 70S ribosomes and inhibition by tetracycline

机译:高等植物叶绿体中的鸟苷四磷酸和五磷酸合酶活性:与70S核糖体相关并被四环素抑制

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Chloroplasts possess bacterial-type systems for transcription and translation. On the basis of the identification of a Chlamydomonas reinhardtii gene encoding a RelA-SpoT homolog (RSH) that catalyzes the synthesis of guanosine tetra- or pentaphosphate [(p)ppGpp], we have previously suggested the operation of stringent control in the chloroplast genetic system. Although RSH genes have also been identified in several higher plants, the activities of the encoded enzymes and their mode of action in chloroplasts have remained uncharacterized. We have now characterized the intrinsic (p)ppGpp synthase activity of chloroplast extracts prepared from pea (Pisum sativum). Fractionation by ultracentrifugation suggested that the (p)ppGpp synthase activity of a translationally active chloroplast stromal extract was associated with 70S ribosomes. Furthermore, this enzymatic activity was inhibited by tetracycline, as was the peptide elongation activity of the extract. Structural comparisons between rRNA molecules of Escherichia coli and pea chloroplasts revealed the conservation of putative tetracycline-binding sites. These observations demonstrate the presence of a ribosome-associated (p)ppGpp synthase activity in the chloroplasts of a higher plant, further implicating (p)ppGpp in a genetic system of chloroplasts similar to that operative in bacteria.
机译:叶绿体具有细菌类型的转录和翻译系统。基于鉴定编码催化鸟苷四磷酸或五磷酸鸟嘌呤[(p)ppGpp]合成的RelA-SpoT同源物(RSH)的衣藻衣藻基因,我们之前曾建议在叶绿体遗传中进行严格控制系统。尽管在一些高等植物中也已经鉴定出RSH基因,但编码酶的活性及其在叶绿体中的作用方式仍未鉴定。现在我们已经表征了从豌豆(Pisum sativum)制备的叶绿体提取物的固有(p)ppGpp合酶活性。通过超速离心分离表明,翻译活性叶绿体基质提取物的(p)ppGpp合酶活性与70S核糖体有关。此外,四环素抑制了这种酶活性,提取物的肽延伸活性也受到抑制。大肠杆菌和豌豆叶绿体的rRNA分子之间的结构比较揭示了假定的四环素结合位点的保守性。这些观察结果表明,高等植物的叶绿体中存在核糖体相关的(p)ppGpp合酶活性,进一步将(p)ppGpp牵涉到类似于细菌中的叶绿体遗传系统中。

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