Crystal structure and functional analysis of human C1ORF123

Proteins of the DUF866 superfamily are exclusively found in eukaryotic cells. A member of the DUF866 superfamily, C1ORF123, is a human protein found in the open reading frame 123 of chromosome 1. The physiological role of C1ORF123 is yet to be determined. The only available protein structure of the...

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Main Authors: A. Rahaman, Siti Nurulnabila, Mat Yusop, Jastina, Mohamed Hussein, Zeti Azura, Wan Kamaruddin, Wan Mohd Aizat, Ho, Kok Lian, Teh, Aik Hong, Waterman, Jitka, Tan, Boon Keat, Tan, Hwei Ling, Li, Adelicia Yongling, Chen, Ee Sin, Ng, Chyan Leong
Format: Article
Language:English
Published: PeerJ 2018
Online Access:http://psasir.upm.edu.my/id/eprint/72149/1/Crystal%20structure%20and%20functional%20analysis.pdf
http://psasir.upm.edu.my/id/eprint/72149/
https://peerj.com/articles/5377/#
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spelling my.upm.eprints.721492020-03-04T07:45:43Z http://psasir.upm.edu.my/id/eprint/72149/ Crystal structure and functional analysis of human C1ORF123 A. Rahaman, Siti Nurulnabila Mat Yusop, Jastina Mohamed Hussein, Zeti Azura Wan Kamaruddin, Wan Mohd Aizat Ho, Kok Lian Teh, Aik Hong Waterman, Jitka Tan, Boon Keat Tan, Hwei Ling Li, Adelicia Yongling Chen, Ee Sin Ng, Chyan Leong Proteins of the DUF866 superfamily are exclusively found in eukaryotic cells. A member of the DUF866 superfamily, C1ORF123, is a human protein found in the open reading frame 123 of chromosome 1. The physiological role of C1ORF123 is yet to be determined. The only available protein structure of the DUF866 family shares just 26% sequence similarity and does not contain a zinc binding motif. Here, we present the crystal structure of the recombinant human C1ORF123 protein (rC1ORF123). The structure has a 2-fold internal symmetry dividing the monomeric protein into two mirrored halves that comprise of distinct electrostatic potential. The N-terminal half of rC1ORF123 includes a zinc-binding domain interacting with a zinc ion near to a potential ligand binding cavity. Functional studies of human C1ORF123 and its homologue in the fission yeast Schizosaccharomyces pombe (SpEss1) point to a role of DUF866 protein in mitochondrial oxidative phosphorylation. PeerJ 2018 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/72149/1/Crystal%20structure%20and%20functional%20analysis.pdf A. Rahaman, Siti Nurulnabila and Mat Yusop, Jastina and Mohamed Hussein, Zeti Azura and Wan Kamaruddin, Wan Mohd Aizat and Ho, Kok Lian and Teh, Aik Hong and Waterman, Jitka and Tan, Boon Keat and Tan, Hwei Ling and Li, Adelicia Yongling and Chen, Ee Sin and Ng, Chyan Leong (2018) Crystal structure and functional analysis of human C1ORF123. PeerJ, 6. pp. 1-25. ISSN 2167-8359 https://peerj.com/articles/5377/# 10.7717/peerj.5377
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Proteins of the DUF866 superfamily are exclusively found in eukaryotic cells. A member of the DUF866 superfamily, C1ORF123, is a human protein found in the open reading frame 123 of chromosome 1. The physiological role of C1ORF123 is yet to be determined. The only available protein structure of the DUF866 family shares just 26% sequence similarity and does not contain a zinc binding motif. Here, we present the crystal structure of the recombinant human C1ORF123 protein (rC1ORF123). The structure has a 2-fold internal symmetry dividing the monomeric protein into two mirrored halves that comprise of distinct electrostatic potential. The N-terminal half of rC1ORF123 includes a zinc-binding domain interacting with a zinc ion near to a potential ligand binding cavity. Functional studies of human C1ORF123 and its homologue in the fission yeast Schizosaccharomyces pombe (SpEss1) point to a role of DUF866 protein in mitochondrial oxidative phosphorylation.
format Article
author A. Rahaman, Siti Nurulnabila
Mat Yusop, Jastina
Mohamed Hussein, Zeti Azura
Wan Kamaruddin, Wan Mohd Aizat
Ho, Kok Lian
Teh, Aik Hong
Waterman, Jitka
Tan, Boon Keat
Tan, Hwei Ling
Li, Adelicia Yongling
Chen, Ee Sin
Ng, Chyan Leong
spellingShingle A. Rahaman, Siti Nurulnabila
Mat Yusop, Jastina
Mohamed Hussein, Zeti Azura
Wan Kamaruddin, Wan Mohd Aizat
Ho, Kok Lian
Teh, Aik Hong
Waterman, Jitka
Tan, Boon Keat
Tan, Hwei Ling
Li, Adelicia Yongling
Chen, Ee Sin
Ng, Chyan Leong
Crystal structure and functional analysis of human C1ORF123
author_facet A. Rahaman, Siti Nurulnabila
Mat Yusop, Jastina
Mohamed Hussein, Zeti Azura
Wan Kamaruddin, Wan Mohd Aizat
Ho, Kok Lian
Teh, Aik Hong
Waterman, Jitka
Tan, Boon Keat
Tan, Hwei Ling
Li, Adelicia Yongling
Chen, Ee Sin
Ng, Chyan Leong
author_sort A. Rahaman, Siti Nurulnabila
title Crystal structure and functional analysis of human C1ORF123
title_short Crystal structure and functional analysis of human C1ORF123
title_full Crystal structure and functional analysis of human C1ORF123
title_fullStr Crystal structure and functional analysis of human C1ORF123
title_full_unstemmed Crystal structure and functional analysis of human C1ORF123
title_sort crystal structure and functional analysis of human c1orf123
publisher PeerJ
publishDate 2018
url http://psasir.upm.edu.my/id/eprint/72149/1/Crystal%20structure%20and%20functional%20analysis.pdf
http://psasir.upm.edu.my/id/eprint/72149/
https://peerj.com/articles/5377/#
_version_ 1662756480924778496
score 13.211869