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The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding

A key step in bacteriochlorophyll biosynthesis is the reduction of protochlorophyllide to chlorophyllide, catalyzed by dark-operative protochlorophyllide oxidoreductase. Dark-operative protochlorophyllide oxidoreductase contains two [4Fe-4S]–containing component proteins (BchL and BchNB) that assemb...

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Autores principales: Corless, Elliot I., Saad Imran, Syed Muhammad, Watkins, Maxwell B., Bacik, John-Paul, Mattice, Jenna R., Patterson, Angela, Danyal, Karamatullah, Soffe, Mark, Kitelinger, Robert, Seefeldt, Lance C., Origanti, Sofia, Bennett, Brian, Bothner, Brian, Ando, Nozomi, Antony, Edwin
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/PMC7948495/
https://www.ncbi.nlm.nih.gov/pubmed/33219127
http://dx.doi.org/10.1074/jbc.RA120.016278
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author Corless, Elliot I.
Saad Imran, Syed Muhammad
Watkins, Maxwell B.
Bacik, John-Paul
Mattice, Jenna R.
Patterson, Angela
Danyal, Karamatullah
Soffe, Mark
Kitelinger, Robert
Seefeldt, Lance C.
Origanti, Sofia
Bennett, Brian
Bothner, Brian
Ando, Nozomi
Antony, Edwin
author_facet Corless, Elliot I.
Saad Imran, Syed Muhammad
Watkins, Maxwell B.
Bacik, John-Paul
Mattice, Jenna R.
Patterson, Angela
Danyal, Karamatullah
Soffe, Mark
Kitelinger, Robert
Seefeldt, Lance C.
Origanti, Sofia
Bennett, Brian
Bothner, Brian
Ando, Nozomi
Antony, Edwin
author_sort Corless, Elliot I.
collection PubMed
description A key step in bacteriochlorophyll biosynthesis is the reduction of protochlorophyllide to chlorophyllide, catalyzed by dark-operative protochlorophyllide oxidoreductase. Dark-operative protochlorophyllide oxidoreductase contains two [4Fe-4S]–containing component proteins (BchL and BchNB) that assemble upon ATP binding to BchL to coordinate electron transfer and protochlorophyllide reduction. But the precise nature of the ATP-induced conformational changes is poorly understood. We present a crystal structure of BchL in the nucleotide-free form where a conserved, flexible region in the N-terminus masks the [4Fe-4S] cluster at the docking interface between BchL and BchNB. Amino acid substitutions in this region produce a hyperactive enzyme complex, suggesting a role for the N-terminus in autoinhibition. Hydrogen–deuterium exchange mass spectrometry shows that ATP binding to BchL produces specific conformational changes leading to release of the flexible N-terminus from the docking interface. The release also promotes changes within the local environment surrounding the [4Fe-4S] cluster and promotes BchL-complex formation with BchNB. A key patch of amino acids, Asp-Phe-Asp (the ‘DFD patch’), situated at the mouth of the BchL ATP-binding pocket promotes intersubunit cross stabilization of the two subunits. A linked BchL dimer with one defective ATP-binding site does not support protochlorophyllide reduction, illustrating nucleotide binding to both subunits as a prerequisite for the intersubunit cross stabilization. The masking of the [4Fe-4S] cluster by the flexible N-terminal region and the associated inhibition of the activity is a novel mechanism of regulation in metalloproteins. Such mechanisms are possibly an adaptation to the anaerobic nature of eubacterial cells with poor tolerance for oxygen.
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spelling pubmed-79484952021-03-19 The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding Corless, Elliot I. Saad Imran, Syed Muhammad Watkins, Maxwell B. Bacik, John-Paul Mattice, Jenna R. Patterson, Angela Danyal, Karamatullah Soffe, Mark Kitelinger, Robert Seefeldt, Lance C. Origanti, Sofia Bennett, Brian Bothner, Brian Ando, Nozomi Antony, Edwin J Biol Chem Research Article A key step in bacteriochlorophyll biosynthesis is the reduction of protochlorophyllide to chlorophyllide, catalyzed by dark-operative protochlorophyllide oxidoreductase. Dark-operative protochlorophyllide oxidoreductase contains two [4Fe-4S]–containing component proteins (BchL and BchNB) that assemble upon ATP binding to BchL to coordinate electron transfer and protochlorophyllide reduction. But the precise nature of the ATP-induced conformational changes is poorly understood. We present a crystal structure of BchL in the nucleotide-free form where a conserved, flexible region in the N-terminus masks the [4Fe-4S] cluster at the docking interface between BchL and BchNB. Amino acid substitutions in this region produce a hyperactive enzyme complex, suggesting a role for the N-terminus in autoinhibition. Hydrogen–deuterium exchange mass spectrometry shows that ATP binding to BchL produces specific conformational changes leading to release of the flexible N-terminus from the docking interface. The release also promotes changes within the local environment surrounding the [4Fe-4S] cluster and promotes BchL-complex formation with BchNB. A key patch of amino acids, Asp-Phe-Asp (the ‘DFD patch’), situated at the mouth of the BchL ATP-binding pocket promotes intersubunit cross stabilization of the two subunits. A linked BchL dimer with one defective ATP-binding site does not support protochlorophyllide reduction, illustrating nucleotide binding to both subunits as a prerequisite for the intersubunit cross stabilization. The masking of the [4Fe-4S] cluster by the flexible N-terminal region and the associated inhibition of the activity is a novel mechanism of regulation in metalloproteins. Such mechanisms are possibly an adaptation to the anaerobic nature of eubacterial cells with poor tolerance for oxygen. American Society for Biochemistry and Molecular Biology 2020-12-03 /pmc/articles/PMC7948495/ /pubmed/33219127 http://dx.doi.org/10.1074/jbc.RA120.016278 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Corless, Elliot I.
Saad Imran, Syed Muhammad
Watkins, Maxwell B.
Bacik, John-Paul
Mattice, Jenna R.
Patterson, Angela
Danyal, Karamatullah
Soffe, Mark
Kitelinger, Robert
Seefeldt, Lance C.
Origanti, Sofia
Bennett, Brian
Bothner, Brian
Ando, Nozomi
Antony, Edwin
The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding
title The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding
title_full The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding
title_fullStr The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding
title_full_unstemmed The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding
title_short The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding
title_sort flexible n-terminus of bchl autoinhibits activity through interaction with its [4fe-4s] cluster and released upon atp binding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948495/
https://www.ncbi.nlm.nih.gov/pubmed/33219127
http://dx.doi.org/10.1074/jbc.RA120.016278
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