Tributyltin-resistant Methanothermobacter thermautotrophicus mutant with mutational substitutions in the A₁A₀-ATP synthase operon

A spontaneous mutant of Methanothermobacter thermautotrophicus resistant to tributyltin chloride (TBT) was isolated. TBT, the inhibitor of the A₀ domain of A₁A₀-ATP synthase, inhibits methanogenesis in the wild-type cells; however, the TBT-resistant mutant exhibited methanogenesis even in the presen...

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Veröffentlicht in:FEMS microbiology letters 2009-09, Vol.298 (2), p.255-259
Hauptverfasser: Nováková, Zuzana, Bobálová, Janette, Vidová, Monika, Hapala, Ivan, Šmigáň, Peter
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Sprache:eng
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Zusammenfassung:A spontaneous mutant of Methanothermobacter thermautotrophicus resistant to tributyltin chloride (TBT) was isolated. TBT, the inhibitor of the A₀ domain of A₁A₀-ATP synthase, inhibits methanogenesis in the wild-type cells; however, the TBT-resistant mutant exhibited methanogenesis even in the presence of 800 μM TBT. ATP synthesis driven by methanogenic electron transport was markedly diminished in the mutant strain. While TBT profoundly inhibited ATP synthesis driven by methanogenic electron transport in the wild type, only a slight inhibition was observed in the mutant strain. These results suggested a modification in the ATP-synthesizing system of the mutant strain. The sequence of the complete A₁A₀-ATP synthase operon (Mth952-Mth961) in the wild-type and mutant strains was determined and compared. Three mutations leading to amino acid substitutions in two A₁A₀-ATP synthase subunits were identified - Val₃₃₈Ala in subunit A and Leu₂₅₂Ile and Ser₂₉₃Ala in subunit B. Moreover, this study revealed the differential expression of several proteins that may contribute to TBT resistance. The results imply that change of TBT sensitivities of TBT-resistant mutant is due to mutational substitutions in the A₁A₀-ATP synthase operon.
ISSN:0378-1097
1574-6968
DOI:10.1111/j.1574-6968.2009.01725.x