Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2

Glutamine synthetase (GS) catalyzes the condensation of ammonia and glutamate, along with ATP, to form glutamine. Despite extensive studies on GSs from eukaryotes and prokaryotes, the roles of the N-terminus and other structural features in catalysis remain unclear. Here we report the decameric stru...

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Main Authors: Wen-Ting Chen, Hsin-Yu Yang, Chih-Yu Lin, Yi-Zong Lee, Szu-Chin Ma, Wei-Cheng Chen, Hsien-Sheng Yin
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Biomolecules
Subjects:
Online Access:https://www.mdpi.com/2218-273X/10/12/1671
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spelling doaj-e1971c8dde6745dfa6d173245acade5a2020-12-15T00:01:57ZengMDPI AGBiomolecules2218-273X2020-12-01101671167110.3390/biom10121671Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2Wen-Ting Chen0Hsin-Yu Yang1Chih-Yu Lin2Yi-Zong Lee3Szu-Chin Ma4Wei-Cheng Chen5Hsien-Sheng Yin6Institute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanInstitute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanInstitute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanInstitute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanInstitute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanInstitute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanInstitute of Bioinformatics and Structural Biology, and College of Life Sciences, National Tsing Hua University, No. 101, Section 2, Kuang-Fu Road, Hsinchu 30013, TaiwanGlutamine synthetase (GS) catalyzes the condensation of ammonia and glutamate, along with ATP, to form glutamine. Despite extensive studies on GSs from eukaryotes and prokaryotes, the roles of the N-terminus and other structural features in catalysis remain unclear. Here we report the decameric structure of <i>Drosophila melanogaster</i> GS 2 (DmGS2). The N-terminal short helices, α1 and α2, constitute a meander region, and form hydrogen bonds with residues 3–5 in the N-terminal loop, which are not present in the GSs of other species. Deletion of α1 or α1-α2 inactivates DmGS2. Notably, the Arg4 in each monomer of one pentamer forms hydrogen bonds with Glu7, and Asp8 in the adjacent monomer of the other pentamer. Replacement of Arg4 with Asp (R4D) abolishes activity. Analytical ultracentrifugation revealed that Arg4 is crucial for oligomerization. Circular dichroism spectra revealed that R4D may alter the secondary structure. We mutated key residues to identify the substrate-binding site. As Glu140 binds glutamate and Glu311 binds ammonia, mutants E140A and E311A have little activity. Conversely, mutant P214A (P contributes to ATP binding) has higher activity than wild-type DmGS2. These findings expand the understanding of the structural and functional features of the N-terminal meander region of DmGS2 and the residues important for catalytic efficiency.https://www.mdpi.com/2218-273X/10/12/1671glutamine synthetase<i>Drosophila melanogaster</i>enzyme kineticscrystal structurecircular dichroism
collection DOAJ
language English
format Article
sources DOAJ
author Wen-Ting Chen
Hsin-Yu Yang
Chih-Yu Lin
Yi-Zong Lee
Szu-Chin Ma
Wei-Cheng Chen
Hsien-Sheng Yin
spellingShingle Wen-Ting Chen
Hsin-Yu Yang
Chih-Yu Lin
Yi-Zong Lee
Szu-Chin Ma
Wei-Cheng Chen
Hsien-Sheng Yin
Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2
Biomolecules
glutamine synthetase
<i>Drosophila melanogaster</i>
enzyme kinetics
crystal structure
circular dichroism
author_facet Wen-Ting Chen
Hsin-Yu Yang
Chih-Yu Lin
Yi-Zong Lee
Szu-Chin Ma
Wei-Cheng Chen
Hsien-Sheng Yin
author_sort Wen-Ting Chen
title Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2
title_short Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2
title_full Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2
title_fullStr Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2
title_full_unstemmed Structural Insight into the Contributions of the N-Terminus and Key Active-Site Residues to the Catalytic Efficiency of Glutamine Synthetase 2
title_sort structural insight into the contributions of the n-terminus and key active-site residues to the catalytic efficiency of glutamine synthetase 2
publisher MDPI AG
series Biomolecules
issn 2218-273X
publishDate 2020-12-01
description Glutamine synthetase (GS) catalyzes the condensation of ammonia and glutamate, along with ATP, to form glutamine. Despite extensive studies on GSs from eukaryotes and prokaryotes, the roles of the N-terminus and other structural features in catalysis remain unclear. Here we report the decameric structure of <i>Drosophila melanogaster</i> GS 2 (DmGS2). The N-terminal short helices, α1 and α2, constitute a meander region, and form hydrogen bonds with residues 3–5 in the N-terminal loop, which are not present in the GSs of other species. Deletion of α1 or α1-α2 inactivates DmGS2. Notably, the Arg4 in each monomer of one pentamer forms hydrogen bonds with Glu7, and Asp8 in the adjacent monomer of the other pentamer. Replacement of Arg4 with Asp (R4D) abolishes activity. Analytical ultracentrifugation revealed that Arg4 is crucial for oligomerization. Circular dichroism spectra revealed that R4D may alter the secondary structure. We mutated key residues to identify the substrate-binding site. As Glu140 binds glutamate and Glu311 binds ammonia, mutants E140A and E311A have little activity. Conversely, mutant P214A (P contributes to ATP binding) has higher activity than wild-type DmGS2. These findings expand the understanding of the structural and functional features of the N-terminal meander region of DmGS2 and the residues important for catalytic efficiency.
topic glutamine synthetase
<i>Drosophila melanogaster</i>
enzyme kinetics
crystal structure
circular dichroism
url https://www.mdpi.com/2218-273X/10/12/1671
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