Bauer C, Buggy J, Mosley C
Department of Biology, Indiana University, Bloomington 47405.
Trends Genet. 1993 Feb;9(2):56-60. doi: 10.1016/0168-9525(93)90188-N.
Two environmental factors, oxygen and high light intensity, are known to repress synthesis of the Rhodobacter capsulatus photosystem. One level of regulation is the control of light harvesting and reaction centre gene expression at the point of transcription initiation. This has recently been shown to involve transcriptional activators which exhibit sequence similarity to members of the 'two-component' class of prokaryotic regulators. An additional level of regulation involves the formation of 'superoperons' that transcriptionally link pigment biosynthesis operons with operons that code for the light harvesting and reaction centre structural genes. A final level of regulation involves the selective degradation of reaction centre mRNA transcripts which influence the stoichiometric synthesis of the light harvesting and reaction centre complexes.
已知有两个环境因素,即氧气和高光强度,会抑制荚膜红细菌光合系统的合成。一种调控水平是在转录起始点对光捕获和反应中心基因表达进行控制。最近已表明,这涉及到转录激活因子,它们与原核生物调控因子的“双组分”类成员具有序列相似性。另一种调控水平涉及“超级操纵子”的形成,这些“超级操纵子”将色素生物合成操纵子与编码光捕获和反应中心结构基因的操纵子转录连接起来。最后一种调控水平涉及反应中心mRNA转录本的选择性降解,这会影响光捕获和反应中心复合物的化学计量合成。