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Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster

The bacterial protein WhiD belongs to the Wbl family of iron-sulfur [Fe-S] proteins present only in the actinomycetes. In Streptomyces coelicolor, it is required for the late stages of sporulation, but precisely how it functions is unknown. Here, we report results from in vitro and in vivo experimen...

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Autores principales: Stewart, Melissa Y. Y., Bush, Matthew J., Crack, Jason C., Buttner, Mark J., Le Brun, Nick E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7363131/
https://www.ncbi.nlm.nih.gov/pubmed/32303639
http://dx.doi.org/10.1074/jbc.RA120.012708
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author Stewart, Melissa Y. Y.
Bush, Matthew J.
Crack, Jason C.
Buttner, Mark J.
Le Brun, Nick E.
author_facet Stewart, Melissa Y. Y.
Bush, Matthew J.
Crack, Jason C.
Buttner, Mark J.
Le Brun, Nick E.
author_sort Stewart, Melissa Y. Y.
collection PubMed
description The bacterial protein WhiD belongs to the Wbl family of iron-sulfur [Fe-S] proteins present only in the actinomycetes. In Streptomyces coelicolor, it is required for the late stages of sporulation, but precisely how it functions is unknown. Here, we report results from in vitro and in vivo experiments with WhiD from Streptomyces venezuelae (SvWhiD), which differs from S. coelicolor WhiD (ScWhiD) only at the C terminus. We observed that, like ScWhiD and other Wbl proteins, SvWhiD binds a [4Fe-4S] cluster that is moderately sensitive to O(2) and highly sensitive to nitric oxide (NO). However, although all previous studies have reported that Wbl proteins are monomers, we found that SvWhiD exists in a monomer-dimer equilibrium associated with its unusual C-terminal extension. Several Wbl proteins of Mycobacterium tuberculosis are known to interact with its principal sigma factor SigA. Using bacterial two-hybrid, gel filtration, and MS analyses, we demonstrate that SvWhiD interacts with domain 4 of the principal sigma factor of Streptomyces, σ(HrdB) (σ(HrdB)(4)). Using MS, we determined the dissociation constant (K(d)) for the SvWhiD-σ(HrdB)(4) complex as ∼0.7 μm, consistent with a relatively tight binding interaction. We found that complex formation was cluster dependent and that a reaction with NO, which was complete at 8–10 NO molecules per cluster, resulted in dissociation into the separate proteins. The SvWhiD [4Fe-4S] cluster was significantly less sensitive to reaction with O(2) and NO when SvWhiD was bound to σ(HrdB)(4), consistent with protection of the cluster in the complex.
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spelling pubmed-73631312020-07-23 Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster Stewart, Melissa Y. Y. Bush, Matthew J. Crack, Jason C. Buttner, Mark J. Le Brun, Nick E. J Biol Chem Gene Regulation The bacterial protein WhiD belongs to the Wbl family of iron-sulfur [Fe-S] proteins present only in the actinomycetes. In Streptomyces coelicolor, it is required for the late stages of sporulation, but precisely how it functions is unknown. Here, we report results from in vitro and in vivo experiments with WhiD from Streptomyces venezuelae (SvWhiD), which differs from S. coelicolor WhiD (ScWhiD) only at the C terminus. We observed that, like ScWhiD and other Wbl proteins, SvWhiD binds a [4Fe-4S] cluster that is moderately sensitive to O(2) and highly sensitive to nitric oxide (NO). However, although all previous studies have reported that Wbl proteins are monomers, we found that SvWhiD exists in a monomer-dimer equilibrium associated with its unusual C-terminal extension. Several Wbl proteins of Mycobacterium tuberculosis are known to interact with its principal sigma factor SigA. Using bacterial two-hybrid, gel filtration, and MS analyses, we demonstrate that SvWhiD interacts with domain 4 of the principal sigma factor of Streptomyces, σ(HrdB) (σ(HrdB)(4)). Using MS, we determined the dissociation constant (K(d)) for the SvWhiD-σ(HrdB)(4) complex as ∼0.7 μm, consistent with a relatively tight binding interaction. We found that complex formation was cluster dependent and that a reaction with NO, which was complete at 8–10 NO molecules per cluster, resulted in dissociation into the separate proteins. The SvWhiD [4Fe-4S] cluster was significantly less sensitive to reaction with O(2) and NO when SvWhiD was bound to σ(HrdB)(4), consistent with protection of the cluster in the complex. American Society for Biochemistry and Molecular Biology 2020-07-10 2020-04-17 /pmc/articles/PMC7363131/ /pubmed/32303639 http://dx.doi.org/10.1074/jbc.RA120.012708 Text en © 2020 Stewart et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Gene Regulation
Stewart, Melissa Y. Y.
Bush, Matthew J.
Crack, Jason C.
Buttner, Mark J.
Le Brun, Nick E.
Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster
title Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster
title_full Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster
title_fullStr Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster
title_full_unstemmed Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster
title_short Interaction of the Streptomyces Wbl protein WhiD with the principal sigma factor σ(HrdB) depends on the WhiD [4Fe-4S] cluster
title_sort interaction of the streptomyces wbl protein whid with the principal sigma factor σ(hrdb) depends on the whid [4fe-4s] cluster
topic Gene Regulation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7363131/
https://www.ncbi.nlm.nih.gov/pubmed/32303639
http://dx.doi.org/10.1074/jbc.RA120.012708
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