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Substrate-dependent effects of quaternary structure on RNase E activity.


ABSTRACT: RNase E is an essential, multifunctional ribonuclease encoded in E. coli by the rne gene. Structural analysis indicates that the ribonucleolytic activity of this enzyme is conferred by rne-encoded polypeptide chains that (1) dimerize to form a catalytic site at the protein-protein interface, and (2) multimerize further to generate a tetrameric quaternary structure consisting of two dimerized Rne-peptide chains. We identify here a mutation in the Rne protein's catalytic region (E429G), as well as a bacterial cell wall peptidoglycan hydrolase (Amidase C [AmiC]), that selectively affect the specific activity of the RNase E enzyme on long RNA substrates, but not on short synthetic oligonucleotides, by enhancing enzyme multimerization. Unlike the increase in specific activity that accompanies concentration-induced multimerization, enhanced multimerization associated with either the E429G mutation or interaction of the Rne protein with AmiC is independent of the substrate's 5' terminus phosphorylation state. Our findings reveal a previously unsuspected substrate length-dependent regulatory role for RNase E quaternary structure and identify cis-acting and trans-acting factors that mediate such regulation.

SUBMITTER: Moore CJ 

PROVIDER: S-EPMC7849360 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Substrate-dependent effects of quaternary structure on RNase E activity.

Moore Christopher J CJ   Go Hayoung H   Shin Eunkyoung E   Ha Hye-Jeong HJ   Song Saemee S   Ha Nam-Chul NC   Kim Yong-Hak YH   Cohen Stanley N SN   Lee Kangseok K  

Genes & development 20210114 3-4


RNase E is an essential, multifunctional ribonuclease encoded in <i>E. coli</i> by the <i>rne</i> gene. Structural analysis indicates that the ribonucleolytic activity of this enzyme is conferred by <i>rne</i>-encoded polypeptide chains that (1) dimerize to form a catalytic site at the protein-protein interface, and (2) multimerize further to generate a tetrameric quaternary structure consisting of two dimerized Rne-peptide chains. We identify here a mutation in the Rne protein's catalytic regio  ...[more]

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