Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis

Abstract Background The production of methane by methanogens is dependent on numerous iron-sulfur (Fe-S) cluster proteins; yet, the machinery involved in Fe-S cluster biogenesis in methanogens remains largely unknown. Methanogen genomes encode uncharacterized homologs of the core components of the I...

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Main Authors: Thomas M. Deere, Divya Prakash, Faith H. Lessner, Evert C. Duin, Daniel J. Lessner
Format: Article
Language:English
Published: BMC 2020-10-01
Series:BMC Microbiology
Online Access:http://link.springer.com/article/10.1186/s12866-020-02014-z
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spelling doaj-ccedc92bd4584154975087fbd8309cd72020-11-25T03:10:06ZengBMCBMC Microbiology1471-21802020-10-0120111610.1186/s12866-020-02014-zMethanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesisThomas M. Deere0Divya Prakash1Faith H. Lessner2Evert C. Duin3Daniel J. Lessner4Department of Biological Sciences, University of Arkansas-FayettevilleDepartment of Biochemistry and Molecular Biology, The Pennsylvania State UniversityDepartment of Biological Sciences, University of Arkansas-FayettevilleDepartment of Chemistry and Biochemistry, Auburn UniversityDepartment of Biological Sciences, University of Arkansas-FayettevilleAbstract Background The production of methane by methanogens is dependent on numerous iron-sulfur (Fe-S) cluster proteins; yet, the machinery involved in Fe-S cluster biogenesis in methanogens remains largely unknown. Methanogen genomes encode uncharacterized homologs of the core components of the ISC (IscS and IscU) and SUF (SufBC) Fe-S cluster biogenesis systems found in bacteria and eukaryotes. Methanosarcina acetivorans contains three iscSU and two sufCB gene clusters. Here, we report genetic and biochemical characterization of M. acetivorans iscSU2. Results Purified IscS2 exhibited pyridoxal 5′- phosphate-dependent release of sulfur from L-cysteine. Incubation of purified IscU2 with IscS2, cysteine, and iron (Fe2+) resulted in the formation of [4Fe-4S] clusters in IscU2. IscU2 transferred a [4Fe-4S] cluster to purified M. acetivorans apo-aconitase. IscU2 also restored the aconitase activity in air-exposed M. acetivorans cell lysate. These biochemical results demonstrate that IscS2 is a cysteine desulfurase and that IscU2 is a Fe-S cluster scaffold. M. acetivorans strain DJL60 deleted of iscSU2 was generated to ascertain the in vivo importance of IscSU2. Strain DJL60 had Fe-S cluster content and growth similar to the parent strain but lower cysteine desulfurase activity. Strain DJL60 also had lower intracellular persulfide content compared to the parent strain when cysteine was an exogenous sulfur source, linking IscSU2 to sulfur metabolism. Conclusions This study establishes that M. acetivorans contains functional IscS and IscU, the core components of the ISC Fe-S cluster biogenesis system and provides the first evidence that ISC operates in methanogens.http://link.springer.com/article/10.1186/s12866-020-02014-z
collection DOAJ
language English
format Article
sources DOAJ
author Thomas M. Deere
Divya Prakash
Faith H. Lessner
Evert C. Duin
Daniel J. Lessner
spellingShingle Thomas M. Deere
Divya Prakash
Faith H. Lessner
Evert C. Duin
Daniel J. Lessner
Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis
BMC Microbiology
author_facet Thomas M. Deere
Divya Prakash
Faith H. Lessner
Evert C. Duin
Daniel J. Lessner
author_sort Thomas M. Deere
title Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis
title_short Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis
title_full Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis
title_fullStr Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis
title_full_unstemmed Methanosarcina acetivorans contains a functional ISC system for iron-sulfur cluster biogenesis
title_sort methanosarcina acetivorans contains a functional isc system for iron-sulfur cluster biogenesis
publisher BMC
series BMC Microbiology
issn 1471-2180
publishDate 2020-10-01
description Abstract Background The production of methane by methanogens is dependent on numerous iron-sulfur (Fe-S) cluster proteins; yet, the machinery involved in Fe-S cluster biogenesis in methanogens remains largely unknown. Methanogen genomes encode uncharacterized homologs of the core components of the ISC (IscS and IscU) and SUF (SufBC) Fe-S cluster biogenesis systems found in bacteria and eukaryotes. Methanosarcina acetivorans contains three iscSU and two sufCB gene clusters. Here, we report genetic and biochemical characterization of M. acetivorans iscSU2. Results Purified IscS2 exhibited pyridoxal 5′- phosphate-dependent release of sulfur from L-cysteine. Incubation of purified IscU2 with IscS2, cysteine, and iron (Fe2+) resulted in the formation of [4Fe-4S] clusters in IscU2. IscU2 transferred a [4Fe-4S] cluster to purified M. acetivorans apo-aconitase. IscU2 also restored the aconitase activity in air-exposed M. acetivorans cell lysate. These biochemical results demonstrate that IscS2 is a cysteine desulfurase and that IscU2 is a Fe-S cluster scaffold. M. acetivorans strain DJL60 deleted of iscSU2 was generated to ascertain the in vivo importance of IscSU2. Strain DJL60 had Fe-S cluster content and growth similar to the parent strain but lower cysteine desulfurase activity. Strain DJL60 also had lower intracellular persulfide content compared to the parent strain when cysteine was an exogenous sulfur source, linking IscSU2 to sulfur metabolism. Conclusions This study establishes that M. acetivorans contains functional IscS and IscU, the core components of the ISC Fe-S cluster biogenesis system and provides the first evidence that ISC operates in methanogens.
url http://link.springer.com/article/10.1186/s12866-020-02014-z
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