Literature DB >> 10759888

Bacterial cell death induced by human pro-apoptotic Bax is blocked by an RNase E mutant that functions in an anti-oxidant pathway.

R Nanbu-Wakao1, S Asoh, K Nishimaki, R Tanaka, S Ohta.   

Abstract

BACKGROUND: Bax is a member of the Bcl-2 family and induces apoptosis of mammalian cells. We have shown that a trace amount of human Bax induces the cell death of Escherichia coli, accompanied by damage to DNA, and that the region of Bax which is lethal to E. coli is also responsible for apoptosis-inducing activity in the mammalian cells.
RESULTS: We isolated a Bax-resistant mutant from E. coli cells that survive in the presence of paraquat, a generator of superoxide, by screening a library constructed from the random insertion of a transposon. Psb1 (paraquat-resistant, suppressor of Bax-1) mutant had a Tn 10 transposon inserted in the rne gene of E. coli, splitting the RNase E gene (rne) into N- and C-terminal halves. The introduction of the truncated 5' end of rne specifically enhanced resistance to paraquat, prevented cell death induced by Bax and decreased the intracellular H2O2 concentration. The region responsible for the paraquat- and Bax-resistance was not the catalytic site for the endoribonuclease activity of RNase E.
CONCLUSIONS: The N-terminal region of the RNase E protein inhibits bacterial death induced by human Bax as well as paraquat through a unique mechanism that is distinct from RNA digestion. This study implies that the protection of bacterial death induced by Bax is associated with an anti-oxidant pathway and that a mutant RNase E has a novel function as an anti-oxidant.

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Year:  2000        PMID: 10759888     DOI: 10.1046/j.1365-2443.2000.00316.x

Source DB:  PubMed          Journal:  Genes Cells        ISSN: 1356-9597            Impact factor:   1.891


  4 in total

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Review 2.  Bcl-2 family proteins as regulators of oxidative stress.

Authors:  Nathan Susnow; Liyun Zeng; Daciana Margineantu; David M Hockenbery
Journal:  Semin Cancer Biol       Date:  2008-12-24       Impact factor: 15.707

Review 3.  Battle against RNA oxidation: molecular mechanisms for reducing oxidized RNA to protect cells.

Authors:  Zhongwei Li; Sulochan Malla; Brian Shin; James M Li
Journal:  Wiley Interdiscip Rev RNA       Date:  2013-12-16       Impact factor: 9.957

Review 4.  Bacterial ribonucleases and their roles in RNA metabolism.

Authors:  David H Bechhofer; Murray P Deutscher
Journal:  Crit Rev Biochem Mol Biol       Date:  2019-06       Impact factor: 8.250

  4 in total

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