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Updated: Aug 18, 2026

Overexpressing and Purifying a Toxic Nuclease from Escherichia coli
Published on: August 29, 2025
RNase/anti-RNase activities of the bacterial parD toxin-antitoxin system
Ana J Muñoz-Gómez1, Marc Lemonnier, Sandra Santos-Sierra
1Department of Molecular Microbiology, Centro de Investigaciones Biológicas, CSIC, Ramiro de Maeztu 9, E-28040 Madrid, Spain.
Insights
The bacterial Kid toxin degrades RNA and inhibits protein synthesis, with its activity counteracted by the Kis antitoxin. This toxin also cleaves the RNA II primer, inhibiting ColE1 plasmid replication.
Area of Science:
- Molecular Biology
- Bacteriology
Background:
- The parD toxin-antitoxin system from plasmid R1 involves the Kid toxin and Kis antitoxin.
- Kid is known to inhibit protein synthesis and cell growth in Escherichia coli.
Purpose of the Study:
- To investigate the in vitro activities of the Kid toxin, including its RNA degradation and DNA replication inhibition.
- To determine the correlation between Kid's endoribonuclease activity and its cytotoxic effects.
Main Methods:
- In vitro assays using rabbit reticulocyte lysates to assess protein synthesis inhibition.
- RNA cleavage assays with single- and double-stranded RNA, including the ColE1 RNA II primer.
- Comparison of wild-type Kid with the non-toxic KidR85W variant.
Main Results:
- Kid promotes RNA degradation and inhibits protein synthesis in vitro, activities blocked by Kis.
- Kid cleaves RNA II, inhibiting ColE1 plasmid replication in vitro.
- The KidR85W variant showed reduced double-stranded RNA cleavage and did not inhibit RNA II stability or ColE1 replication.
Conclusions:
- Kid's endoribonuclease activity is tightly correlated with its cytotoxic and DNA replication-inhibitory functions.
- The Kid toxin's action spectrum extends to controlling various RNA-regulated cellular processes beyond protein synthesis.
Abstract:
The bacterial parD toxin-antitoxin system of plasmid R1 encodes two proteins, the Kid toxin and its cognate antitoxin, Kis. Kid cleaves RNA and inhibits protein synthesis and cell growth in Escherichia coli. Here, we show that Kid promotes RNA degradation and inhibition of protein synthesis in rabbit reticulocyte lysates. These new activities of the Kid toxin were counteracted by the Kis antitoxin and were not displayed by the KidR85W variant, which is nontoxic in E. coli. Moreover, while Kid cleaved single- and double-stranded RNA with a preference for UAA or UAC triplets, KidR85W maintained this sequence preference but hardly cleaved double-stranded RNA. Kid was formerly shown to inhibit DNA replication of the ColE1 plasmid. Here we provide in vitro evidence that Kid cleaves the ColE1 RNA II primer, which is required for the initiation of ColE1 replication. In contrast, KidR85W did not affect the stability of RNA II, nor did it inhibit the in vitro replication of ColE1. Thus, the endoribonuclease and the cytotoxic and DNA replication-inhibitory activities of Kid seem tightly correlated. We propose that the spectrum of action of this toxin extends beyond the sole inhibition of protein synthesis to control a broad range of RNA-regulated cellular processes.
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