A SAM-I riboswitch with the ability to sense and respond to uncharged initiator tRNA

Author:

Tang Dong-JieORCID,Du Xinyu,Shi Qiang,Zhang Jian-LingORCID,He Yuan-PingORCID,Chen Yan-MiaoORCID,Ming Zhenhua,Wang DanORCID,Zhong Wan-YingORCID,Liang Yu-Wei,Liu Jin-YangORCID,Huang Jian-Ming,Zhong Yun-Shi,An Shi-Qi,Gu HongzhouORCID,Tang Ji-LiangORCID

Abstract

AbstractAll known riboswitches use their aptamer to senese one metabolite signal and their expression platform to regulate gene expression. Here, we characterize a SAM-I riboswitch (SAM-IXcc) from the Xanthomonas campestris that regulates methionine synthesis via the met operon. In vitro and in vivo experiments show that SAM-IXcc controls the met operon primarily at the translational level in response to cellular S-adenosylmethionine (SAM) levels. Biochemical and genetic data demonstrate that SAM-IXcc expression platform not only can repress gene expression in response to SAM binding to SAM-IXcc aptamer but also can sense and bind uncharged initiator Met tRNA, resulting in the sequestering of the anti-Shine-Dalgarno (SD) sequence and freeing the SD for translation initiation. These findings identify a SAM-I riboswitch with a dual functioning expression platform that regulates methionine synthesis through a previously unrecognized mechanism and discover a natural tRNA-sensing RNA element. This SAM-I riboswitch appears to be highly conserved in Xanthomonas species.

Funder

the National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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