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Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava

Hexokinase (HXK) proteins play important roles in catalyzing hexose phosphorylation and sugar sensing and signaling. To investigate the roles of HXKs in cassava tuber root development, seven HXK genes (MeHXK1–7) were isolated and analyzed. A phylogenetic analysis revealed that the MeHXK family can b...

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Autores principales: Geng, Meng-Ting, Yao, Yuan, Wang, Yun-Lin, Wu, Xiao-Hui, Sun, Chong, Li, Rui-Mei, Fu, Shao-Ping, Duan, Rui-Jun, Liu, Jiao, Hu, Xin-Wen, Guo, Jian-Chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5454953/
https://www.ncbi.nlm.nih.gov/pubmed/28498327
http://dx.doi.org/10.3390/ijms18051041
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author Geng, Meng-Ting
Yao, Yuan
Wang, Yun-Lin
Wu, Xiao-Hui
Sun, Chong
Li, Rui-Mei
Fu, Shao-Ping
Duan, Rui-Jun
Liu, Jiao
Hu, Xin-Wen
Guo, Jian-Chun
author_facet Geng, Meng-Ting
Yao, Yuan
Wang, Yun-Lin
Wu, Xiao-Hui
Sun, Chong
Li, Rui-Mei
Fu, Shao-Ping
Duan, Rui-Jun
Liu, Jiao
Hu, Xin-Wen
Guo, Jian-Chun
author_sort Geng, Meng-Ting
collection PubMed
description Hexokinase (HXK) proteins play important roles in catalyzing hexose phosphorylation and sugar sensing and signaling. To investigate the roles of HXKs in cassava tuber root development, seven HXK genes (MeHXK1–7) were isolated and analyzed. A phylogenetic analysis revealed that the MeHXK family can be divided into five subfamilies of plant HXKs. MeHXKs were clearly divided into type A (MeHXK1) and type B (MeHXK2–7) based on their N-terminal sequences. MeHXK1–5 all had typical conserved regions and similar protein structures to the HXKs of other plants; while MeHXK6–7 lacked some of the conserved regions. An expression analysis of the MeHXK genes in cassava organs or tissues demonstrated that MeHXK2 is the dominant HXK in all the examined tissues (leaves, stems, fruits, tuber phloems, and tuber xylems). Notably, the expression of MeHXK2 and the enzymatic activity of HXK were higher at the initial and expanding tuber stages, and lower at the mature tuber stage. Furthermore, the HXK activity of MeHXK2 was identified by functional complementation of the HXK-deficient yeast strain YSH7.4-3C (hxk1, hxk2, glk1). The gene expression and enzymatic activity of MeHXK2 suggest that it might be the main enzyme for hexose phosphorylation during cassava tuber root development, which is involved in sucrose metabolism to regulate the accumulation of starch.
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spelling pubmed-54549532017-06-08 Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava Geng, Meng-Ting Yao, Yuan Wang, Yun-Lin Wu, Xiao-Hui Sun, Chong Li, Rui-Mei Fu, Shao-Ping Duan, Rui-Jun Liu, Jiao Hu, Xin-Wen Guo, Jian-Chun Int J Mol Sci Article Hexokinase (HXK) proteins play important roles in catalyzing hexose phosphorylation and sugar sensing and signaling. To investigate the roles of HXKs in cassava tuber root development, seven HXK genes (MeHXK1–7) were isolated and analyzed. A phylogenetic analysis revealed that the MeHXK family can be divided into five subfamilies of plant HXKs. MeHXKs were clearly divided into type A (MeHXK1) and type B (MeHXK2–7) based on their N-terminal sequences. MeHXK1–5 all had typical conserved regions and similar protein structures to the HXKs of other plants; while MeHXK6–7 lacked some of the conserved regions. An expression analysis of the MeHXK genes in cassava organs or tissues demonstrated that MeHXK2 is the dominant HXK in all the examined tissues (leaves, stems, fruits, tuber phloems, and tuber xylems). Notably, the expression of MeHXK2 and the enzymatic activity of HXK were higher at the initial and expanding tuber stages, and lower at the mature tuber stage. Furthermore, the HXK activity of MeHXK2 was identified by functional complementation of the HXK-deficient yeast strain YSH7.4-3C (hxk1, hxk2, glk1). The gene expression and enzymatic activity of MeHXK2 suggest that it might be the main enzyme for hexose phosphorylation during cassava tuber root development, which is involved in sucrose metabolism to regulate the accumulation of starch. MDPI 2017-05-12 /pmc/articles/PMC5454953/ /pubmed/28498327 http://dx.doi.org/10.3390/ijms18051041 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Geng, Meng-Ting
Yao, Yuan
Wang, Yun-Lin
Wu, Xiao-Hui
Sun, Chong
Li, Rui-Mei
Fu, Shao-Ping
Duan, Rui-Jun
Liu, Jiao
Hu, Xin-Wen
Guo, Jian-Chun
Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava
title Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava
title_full Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava
title_fullStr Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava
title_full_unstemmed Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava
title_short Structure, Expression, and Functional Analysis of the Hexokinase Gene Family in Cassava
title_sort structure, expression, and functional analysis of the hexokinase gene family in cassava
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5454953/
https://www.ncbi.nlm.nih.gov/pubmed/28498327
http://dx.doi.org/10.3390/ijms18051041
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