NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B

The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across the membrane sector (AO) to synthesize ATP in the A3B3 domain of the A1 sector. The energy coupling between the two active domains occurs via the so-called stalk part(s), to which the 12 kDa subunit F...

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Main Authors: Gayen, Shovanlal, Vivekanandan, Subramanian, Biuković, Goran, Grüber, Gerhard, Yoon, Ho Sup
Other Authors: School of Biological Sciences
Format: Article
Language:English
Published: 2012
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Online Access:https://hdl.handle.net/10356/93989
http://hdl.handle.net/10220/7475
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-939892020-03-07T12:18:16Z NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B Gayen, Shovanlal Vivekanandan, Subramanian Biuković, Goran Grüber, Gerhard Yoon, Ho Sup School of Biological Sciences DRNTU::Science::Biological sciences The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across the membrane sector (AO) to synthesize ATP in the A3B3 domain of the A1 sector. The energy coupling between the two active domains occurs via the so-called stalk part(s), to which the 12 kDa subunit F does belong. Here, we present the solution structure of the F subunit of the A1AO ATP synthase from Methanosarcina mazei Gö1. Subunit F exhibits a distinct two-domain structure, with the N-terminal having 78 residues and residues 79−101 forming the flexible C-terminal part. The well-ordered N-terminal domain is composed of a four-stranded parallel β-sheet structure and three α-helices placed alternately. The two domains are loosely associated with more flexibility relative to each other. The flexibility of the C-terminal domain is further confirmed by dynamics studies. In addition, the affinity of binding of mutant subunit F, with a substitution of Trp100 against Tyr and Ile at the very C-terminal end, to the nucleotide-binding subunit B was determined quantitatively using the fluorescence signals of natural subunit B (Trp430). Finally, the arrangement of subunit F within the complex is presented. 2012-01-26T01:17:06Z 2019-12-06T18:48:47Z 2012-01-26T01:17:06Z 2019-12-06T18:48:47Z 2007 2007 Journal Article Gayen, S., Vivekanandan, S., Biuković, G., Grüber, G., & Yoon, H. S. (2007). NMR Solution Structure of Subunit F of the Methanogenic A1AO Adenosine Triphosphate Synthase and Its Interaction with the Nucleotide-Binding Subunit B. Biochemistry, 46(42), 11684-11694. https://hdl.handle.net/10356/93989 http://hdl.handle.net/10220/7475 10.1021/bi701102n en Biochemistry © 2007 American Chemical Society.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Science::Biological sciences
spellingShingle DRNTU::Science::Biological sciences
Gayen, Shovanlal
Vivekanandan, Subramanian
Biuković, Goran
Grüber, Gerhard
Yoon, Ho Sup
NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B
description The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across the membrane sector (AO) to synthesize ATP in the A3B3 domain of the A1 sector. The energy coupling between the two active domains occurs via the so-called stalk part(s), to which the 12 kDa subunit F does belong. Here, we present the solution structure of the F subunit of the A1AO ATP synthase from Methanosarcina mazei Gö1. Subunit F exhibits a distinct two-domain structure, with the N-terminal having 78 residues and residues 79−101 forming the flexible C-terminal part. The well-ordered N-terminal domain is composed of a four-stranded parallel β-sheet structure and three α-helices placed alternately. The two domains are loosely associated with more flexibility relative to each other. The flexibility of the C-terminal domain is further confirmed by dynamics studies. In addition, the affinity of binding of mutant subunit F, with a substitution of Trp100 against Tyr and Ile at the very C-terminal end, to the nucleotide-binding subunit B was determined quantitatively using the fluorescence signals of natural subunit B (Trp430). Finally, the arrangement of subunit F within the complex is presented.
author2 School of Biological Sciences
author_facet School of Biological Sciences
Gayen, Shovanlal
Vivekanandan, Subramanian
Biuković, Goran
Grüber, Gerhard
Yoon, Ho Sup
format Article
author Gayen, Shovanlal
Vivekanandan, Subramanian
Biuković, Goran
Grüber, Gerhard
Yoon, Ho Sup
author_sort Gayen, Shovanlal
title NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B
title_short NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B
title_full NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B
title_fullStr NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B
title_full_unstemmed NMR solution structure of subunit F of the methanogenic A1AO adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit B
title_sort nmr solution structure of subunit f of the methanogenic a1ao adenosine triphosphate synthase and its interaction with the nucleotide-binding subunit b
publishDate 2012
url https://hdl.handle.net/10356/93989
http://hdl.handle.net/10220/7475
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