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腺嘌呤缺乏时大肠杆菌K-12中光裂合酶的调控

Regulation of photolyase in Escherichia coli K-12 during adenine deprivation.

作者信息

Alcorn J L, Rupert C S

机构信息

Programs in Molecular and Cellular Biology, University of Texas, Dallas, Richardson 75083.

出版信息

J Bacteriol. 1990 Dec;172(12):6885-91. doi: 10.1128/jb.172.12.6885-6891.1990.

Abstract

DNA photolyase, a DNA repair enzyme encoded by the phr gene of Escherichia coli, is normally regulated at 10 to 20 active molecules per cell. In purA mutants deprived of adenine, this amount increased sixfold within 2 h. Operon fusions placing lacZ under transcriptional control of phr promoters indicated no change in transcription rate during adenine deprivation, and gene fusions of phr with lacZ showed a nearly constant level of translation as well. Immunoblot analysis indicated that the total amount of photolyase protein remained constant during enzyme amplification. On the other hand, treatment of cells with chloramphenicol during the adenine deprivation prevented any increase. DNA regions lying 1.3 to 4.2 kb upstream of the phr coding sequences were necessary for this amplification to occur and for this purpose would function in trans. These results suggest that adenine deprivation leads to a posttranslational change, involving synthesis of protein encoded by sequences lying upstream of phr, which increases photolyase activity. The amplification in activity was found to be reversible, for when adenine was restored, the photolyase activity declined before cell growth resumed.

摘要

DNA光解酶是一种由大肠杆菌phr基因编码的DNA修复酶,通常每个细胞有10到20个活性分子受到调控。在缺乏腺嘌呤的purA突变体中,这个数量在2小时内增加了六倍。将lacZ置于phr启动子转录控制下的操纵子融合表明,在腺嘌呤缺乏期间转录速率没有变化,phr与lacZ的基因融合也显示出翻译水平几乎恒定。免疫印迹分析表明,在酶扩增过程中光解酶蛋白的总量保持恒定。另一方面,在腺嘌呤缺乏期间用氯霉素处理细胞可阻止任何增加。phr编码序列上游1.3至4.2 kb的DNA区域是这种扩增发生所必需的,并且为此目的可在反式中起作用。这些结果表明,腺嘌呤缺乏导致翻译后变化,涉及phr上游序列编码的蛋白质合成,从而增加光解酶活性。发现活性的扩增是可逆的,因为当恢复腺嘌呤时,光解酶活性在细胞生长恢复之前下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4133/210807/8ed35801a292/jbacter00166-0290-a.jpg

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