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Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils

Cellulose represents the most abundant biopolymer in nature and has great economic importance. Cellulose chains pack laterally into crystalline forms, stacking into a complicated crystallographic structure. However, the mechanism of cellulose crystallization is poorly understood. Here, via functiona...

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Autores principales: Liu, Lifeng, Shang-Guan, Keke, Zhang, Baocai, Liu, Xiangling, Yan, Meixian, Zhang, Lanjun, Shi, Yanyun, Zhang, Mu, Qian, Qian, Li, Jiayang, Zhou, Yihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749933/
https://www.ncbi.nlm.nih.gov/pubmed/23990797
http://dx.doi.org/10.1371/journal.pgen.1003704
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author Liu, Lifeng
Shang-Guan, Keke
Zhang, Baocai
Liu, Xiangling
Yan, Meixian
Zhang, Lanjun
Shi, Yanyun
Zhang, Mu
Qian, Qian
Li, Jiayang
Zhou, Yihua
author_facet Liu, Lifeng
Shang-Guan, Keke
Zhang, Baocai
Liu, Xiangling
Yan, Meixian
Zhang, Lanjun
Shi, Yanyun
Zhang, Mu
Qian, Qian
Li, Jiayang
Zhou, Yihua
author_sort Liu, Lifeng
collection PubMed
description Cellulose represents the most abundant biopolymer in nature and has great economic importance. Cellulose chains pack laterally into crystalline forms, stacking into a complicated crystallographic structure. However, the mechanism of cellulose crystallization is poorly understood. Here, via functional characterization, we report that Brittle Culm1 (BC1), a COBRA-like protein in rice, modifies cellulose crystallinity. BC1 was demonstrated to be a glycosylphosphatidylinositol (GPI) anchored protein and can be released into cell walls by removal of the GPI anchor. BC1 possesses a carbohydrate-binding module (CBM) at its N-terminus. In vitro binding assays showed that this CBM interacts specifically with crystalline cellulose, and several aromatic residues in this domain are essential for binding. It was further demonstrated that cell wall-localized BC1 via the CBM and GPI anchor is one functional form of BC1. X-ray diffraction (XRD) assays revealed that mutations in BC1 and knockdown of BC1 expression decrease the crystallite width of cellulose; overexpression of BC1 and the CBM-mutated BC1s caused varied crystallinity with results that were consistent with the in vitro binding assay. Moreover, interaction between the CBM and cellulose microfibrils was largely repressed when the cell wall residues were pre-stained with two cellulose dyes. Treating wild-type and bc1 seedlings with the dyes resulted in insensitive root growth responses in bc1 plants. Combined with the evidence that BC1 and three secondary wall cellulose synthases (CESAs) function in different steps of cellulose production as revealed by genetic analysis, we conclude that BC1 modulates cellulose assembly by interacting with cellulose and affecting microfibril crystallinity.
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spelling pubmed-37499332013-08-29 Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils Liu, Lifeng Shang-Guan, Keke Zhang, Baocai Liu, Xiangling Yan, Meixian Zhang, Lanjun Shi, Yanyun Zhang, Mu Qian, Qian Li, Jiayang Zhou, Yihua PLoS Genet Research Article Cellulose represents the most abundant biopolymer in nature and has great economic importance. Cellulose chains pack laterally into crystalline forms, stacking into a complicated crystallographic structure. However, the mechanism of cellulose crystallization is poorly understood. Here, via functional characterization, we report that Brittle Culm1 (BC1), a COBRA-like protein in rice, modifies cellulose crystallinity. BC1 was demonstrated to be a glycosylphosphatidylinositol (GPI) anchored protein and can be released into cell walls by removal of the GPI anchor. BC1 possesses a carbohydrate-binding module (CBM) at its N-terminus. In vitro binding assays showed that this CBM interacts specifically with crystalline cellulose, and several aromatic residues in this domain are essential for binding. It was further demonstrated that cell wall-localized BC1 via the CBM and GPI anchor is one functional form of BC1. X-ray diffraction (XRD) assays revealed that mutations in BC1 and knockdown of BC1 expression decrease the crystallite width of cellulose; overexpression of BC1 and the CBM-mutated BC1s caused varied crystallinity with results that were consistent with the in vitro binding assay. Moreover, interaction between the CBM and cellulose microfibrils was largely repressed when the cell wall residues were pre-stained with two cellulose dyes. Treating wild-type and bc1 seedlings with the dyes resulted in insensitive root growth responses in bc1 plants. Combined with the evidence that BC1 and three secondary wall cellulose synthases (CESAs) function in different steps of cellulose production as revealed by genetic analysis, we conclude that BC1 modulates cellulose assembly by interacting with cellulose and affecting microfibril crystallinity. Public Library of Science 2013-08-22 /pmc/articles/PMC3749933/ /pubmed/23990797 http://dx.doi.org/10.1371/journal.pgen.1003704 Text en © 2013 Liu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Lifeng
Shang-Guan, Keke
Zhang, Baocai
Liu, Xiangling
Yan, Meixian
Zhang, Lanjun
Shi, Yanyun
Zhang, Mu
Qian, Qian
Li, Jiayang
Zhou, Yihua
Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils
title Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils
title_full Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils
title_fullStr Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils
title_full_unstemmed Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils
title_short Brittle Culm1, a COBRA-Like Protein, Functions in Cellulose Assembly through Binding Cellulose Microfibrils
title_sort brittle culm1, a cobra-like protein, functions in cellulose assembly through binding cellulose microfibrils
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749933/
https://www.ncbi.nlm.nih.gov/pubmed/23990797
http://dx.doi.org/10.1371/journal.pgen.1003704
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