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Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize

Starch phosphorylase (PHO) is a multimeric enzyme with two distinct isoforms: plastidial starch phosphorylase (PHO1) and cytosolic starch phosphorylase (PHO2). PHO1 specifically resides in the plastid, while PHO2 is found in the cytosol. Both play a critical role in the synthesis and degradation of...

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Autores principales: Yu, Guowu, Shoaib, Noman, Xie, Ying, Liu, Lun, Mughal, Nishbah, Li, Yangping, Huang, Huanhuan, Zhang, Na, Zhang, Junjie, Liu, Yinghong, Hu, Yufeng, Liu, Hanmei, Huang, Yubi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104829/
https://www.ncbi.nlm.nih.gov/pubmed/35562912
http://dx.doi.org/10.3390/ijms23094518
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author Yu, Guowu
Shoaib, Noman
Xie, Ying
Liu, Lun
Mughal, Nishbah
Li, Yangping
Huang, Huanhuan
Zhang, Na
Zhang, Junjie
Liu, Yinghong
Hu, Yufeng
Liu, Hanmei
Huang, Yubi
author_facet Yu, Guowu
Shoaib, Noman
Xie, Ying
Liu, Lun
Mughal, Nishbah
Li, Yangping
Huang, Huanhuan
Zhang, Na
Zhang, Junjie
Liu, Yinghong
Hu, Yufeng
Liu, Hanmei
Huang, Yubi
author_sort Yu, Guowu
collection PubMed
description Starch phosphorylase (PHO) is a multimeric enzyme with two distinct isoforms: plastidial starch phosphorylase (PHO1) and cytosolic starch phosphorylase (PHO2). PHO1 specifically resides in the plastid, while PHO2 is found in the cytosol. Both play a critical role in the synthesis and degradation of starch. This study aimed to report the detailed structure, function, and evolution of genes encoding PHO1 and PHO2 and their protein ligand-binding sites in eight monocots and four dicots. “True” orthologs of PHO1 and PHO2 of Oryza sativa were identified, and the structure of the enzyme at the protein level was studied. The genes controlling PHO2 were found to be more conserved than those controlling PHO1; the variations were mainly due to the variable sequence and length of introns. Cis-regulatory elements in the promoter region of both genes were identified, and the expression pattern was analyzed. The real-time quantitative polymerase chain reaction indicated that PHO2 was expressed in all tissues with a uniform pattern of transcripts, and the expression pattern of PHO1 indicates that it probably contributes to the starch biosynthesis during seed development in Zea mays. Under abscisic acid (ABA) treatment, PHO1 was found to be downregulated in Arabidopsis and Hordeum vulgare. However, we found that ABA could up-regulate the expression of both PHO1 and PHO2 within 12 h in Zea mays. In all monocots and dicots, the 3D structures were highly similar, and the ligand-binding sites were common yet fluctuating in the position of aa residues.
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spelling pubmed-91048292022-05-14 Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize Yu, Guowu Shoaib, Noman Xie, Ying Liu, Lun Mughal, Nishbah Li, Yangping Huang, Huanhuan Zhang, Na Zhang, Junjie Liu, Yinghong Hu, Yufeng Liu, Hanmei Huang, Yubi Int J Mol Sci Article Starch phosphorylase (PHO) is a multimeric enzyme with two distinct isoforms: plastidial starch phosphorylase (PHO1) and cytosolic starch phosphorylase (PHO2). PHO1 specifically resides in the plastid, while PHO2 is found in the cytosol. Both play a critical role in the synthesis and degradation of starch. This study aimed to report the detailed structure, function, and evolution of genes encoding PHO1 and PHO2 and their protein ligand-binding sites in eight monocots and four dicots. “True” orthologs of PHO1 and PHO2 of Oryza sativa were identified, and the structure of the enzyme at the protein level was studied. The genes controlling PHO2 were found to be more conserved than those controlling PHO1; the variations were mainly due to the variable sequence and length of introns. Cis-regulatory elements in the promoter region of both genes were identified, and the expression pattern was analyzed. The real-time quantitative polymerase chain reaction indicated that PHO2 was expressed in all tissues with a uniform pattern of transcripts, and the expression pattern of PHO1 indicates that it probably contributes to the starch biosynthesis during seed development in Zea mays. Under abscisic acid (ABA) treatment, PHO1 was found to be downregulated in Arabidopsis and Hordeum vulgare. However, we found that ABA could up-regulate the expression of both PHO1 and PHO2 within 12 h in Zea mays. In all monocots and dicots, the 3D structures were highly similar, and the ligand-binding sites were common yet fluctuating in the position of aa residues. MDPI 2022-04-20 /pmc/articles/PMC9104829/ /pubmed/35562912 http://dx.doi.org/10.3390/ijms23094518 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yu, Guowu
Shoaib, Noman
Xie, Ying
Liu, Lun
Mughal, Nishbah
Li, Yangping
Huang, Huanhuan
Zhang, Na
Zhang, Junjie
Liu, Yinghong
Hu, Yufeng
Liu, Hanmei
Huang, Yubi
Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize
title Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize
title_full Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize
title_fullStr Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize
title_full_unstemmed Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize
title_short Comparative Study of Starch Phosphorylase Genes and Encoded Proteins in Various Monocots and Dicots with Emphasis on Maize
title_sort comparative study of starch phosphorylase genes and encoded proteins in various monocots and dicots with emphasis on maize
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104829/
https://www.ncbi.nlm.nih.gov/pubmed/35562912
http://dx.doi.org/10.3390/ijms23094518
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