The In Silico Characterization of Monocotyledonous α-l-Arabinofuranosidases on the Example of Maize

被引:0
|
作者
Nazipova, Alsu [1 ]
Makshakova, Olga [2 ]
Kozlova, Liudmila [1 ]
机构
[1] RAS, Kazan Inst Biochem & Biophys FRC, Kazan Sci Ctr, Lab Plant Cell Growth Mech, Lobachevsky Str 2-31, Kazan 420111, Russia
[2] RAS, Kazan Inst Biochem & Biophys, FRC Kazan Sci Ctr, Lab Biophys Chem Nanosyst, Lobachevsky Str 2-31, Kazan 420111, Russia
来源
LIFE-BASEL | 2023年 / 13卷 / 02期
基金
俄罗斯科学基金会;
关键词
alpha-l-arabinofuranosidase; arabinoxylan; maize; homology modeling; molecular docking; CARBOHYDRATE-BINDING MODULES; CELL-WALL POLYSACCHARIDES; D-XYLOSIDASE; SUBSTRATE RECOGNITION; GLYCOSIDE HYDROLASES; ARABIDOPSIS-THALIANA; CRYSTAL-STRUCTURES; FAMILY; IDENTIFICATION; BARLEY;
D O I
10.3390/life13020266
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Plant alpha-l-arabinofuranosidases remove terminal arabinose from arabinose-containing substrates such as plant cell wall polysaccharides, including arabinoxylans, arabinogalactans, and arabinans. In plants, de-arabinosylation of cell wall polysaccharides accompanies different physiological processes such as fruit ripening and elongation growth. In this report, we address the diversity of plant alpha-l-arabinofuranosidases of the glycoside hydrolase (GH) family 51 through their phylogenetic analysis as well as their structural features. The CBM4-like domain at N-terminus was found to exist only in GH51 family proteins and was detected in almost 90% of plant sequences. This domain is similar to bacterial CBM4, but due to substitutions of key amino acid residues, it does not appear to be able to bind carbohydrates. Despite isoenzymes of GH51 being abundant, in particular in cereals, almost half of the GH51 proteins in Poales have a mutation of the acid/base residue in the catalytic site, making them potentially inactive. Open-source data on the transcription and translation of GH51 isoforms in maize were analyzed to discuss possible functions of individual isoenzymes. The results of homology modeling and molecular docking showed that the substrate binding site can accurately accommodate terminal arabinofuranose and that arabinoxylan is a more favorable ligand for all maize GH51 enzymes than arabinan.
引用
收藏
页数:23
相关论文
共 50 条
  • [1] α-L-Arabinofuranosidases:: the potential applications in biotechnology
    Numan, MT
    Bhosle, NB
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2006, 33 (04) : 247 - 260
  • [2] α-L-Arabinofuranosidases from tomato fruit
    Miyohashi, Fumika
    Matsuno, Jyunko
    Kamiyoshihara, Yusuke
    Tateishi, Akira
    Inoue, Hiroaki
    PLANT AND CELL PHYSIOLOGY, 2007, 48 : S109 - S109
  • [3] Purification and characterization of α-L-arabinofuranosidases from Geobacillus stearothermophilus strain 12
    Elif Sevim
    Kadriye Inan Bektas
    Ali Sevim
    Sabriye Canakci
    Iclal Sahin
    Ali Osman Belduz
    Biologia, 2017, 72 : 831 - 839
  • [4] Purification and characterization of α-L-arabinofuranosidases from Geobacillus stearothermophilus strain 12
    Sevim, Elif
    Bektas, Kadriye Inan
    Sevim, Ali
    Canakci, Sabriye
    Sahin, Iclal
    Belduz, Ali Osman
    BIOLOGIA, 2017, 72 (08) : 831 - 839
  • [5] Differential expression of α-l-arabinofuranosidases during maize (Zea mays L.) root elongation
    Liudmila V. Kozlova
    Oleg V. Gorshkov
    Natalia E. Mokshina
    Tatyana A. Gorshkova
    Planta, 2015, 241 : 1159 - 1172
  • [6] Microbial α-L-arabinofuranosidases: diversity, properties, and biotechnological applications
    Liangkun Long
    Qunying Lin
    Jing Wang
    Shaojun Ding
    World Journal of Microbiology and Biotechnology, 2024, 40
  • [7] Induction, purification, and characterization of two extracellular α-L-arabinofuranosidases from Fusarium oxysporum
    Panagiotou, G
    Topakas, E
    Economou, L
    Kekos, D
    Macris, BJ
    Christakopoulos, P
    CANADIAN JOURNAL OF MICROBIOLOGY, 2003, 49 (10) : 639 - 644
  • [8] α-L-arabinofuranosidases:: biochemistry, molecular biology and application in biotechnology
    Saha, BC
    BIOTECHNOLOGY ADVANCES, 2000, 18 (05) : 403 - 423
  • [9] Microbial α-L-arabinofuranosidases: diversity, properties, and biotechnological applications
    Long, Liangkun
    Lin, Qunying
    Wang, Jing
    Ding, Shaojun
    WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 2024, 40 (03):
  • [10] β-Xylosidases and α-L-arabinofuranosidases: Accessory enzymes for arabinoxylan degradation
    Lagaert, Stijn
    Pollet, Annick
    Courtin, Christophe M.
    Volckaert, Guido
    BIOTECHNOLOGY ADVANCES, 2014, 32 (02) : 316 - 332