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New RNA motifs suggest an expanded scope for riboswitches in bacterial genetic control

机译:新的RNA基序提示细菌遗传控制中核糖开关的范围扩大

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摘要

The expression of certain genes involved in fundamental metabolism is regulated by metabolite-binding "riboswitch" elements embedded within their corresponding mRNAs. We have identified at least six additional elements within the Bacillus subtilis genome that exhibit characteristics of riboswitch function (glmS, gcvT, ydaO/yuaA, ykkC/yxkD, ykoK, and yybP/ykoY). These motifs exhibit extensive sequence and secondary-structure conservation among many bacterial species and occur upstream of related genes. The element located upstream of the glmS gene in Gram-positive organisms functions as a metabolite-dependent ribozyme that responds to glucosamine-6-phosphate. Other motifs form complex folded structures when transcribed as RNA molecules and carry intrinsic terminator structures. These findings indicate that riboswitches serve as a major genetic regulatory mechanism for the control of metabolic genes in many microbial species.
机译:参与基本代谢的某些基因的表达受嵌入其相应mRNA中的代谢物结合“核糖开关”元件调控。我们已经在枯草芽孢杆菌基因组中确定了至少六个其他元素,这些元素表现出核糖开关功能的特征(glmS,gcvT,ydaO / yuaA,ykkC / yxkD,ykoK和yybP / ykoY)。这些基序在许多细菌物种中表现出广泛的序列和二级结构保守性,并出现在相关基因的上游。在革兰氏阳性生物中,位于glmS基因上游的元素起着依赖于代谢物的核酶的作用,对6磷酸氨基葡萄糖有反应。当转录为RNA分子并带有内在的终止子结构时,其他基序会形成复杂的折叠结构。这些发现表明,核糖开关是控制许多微生物物种中代谢基因的主要遗传调节机制。

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