Molecular cloning and functional characterization of two squalene synthase genes in Atractylodes lancea

被引:8
|
作者
Wu, Junxian [1 ]
Xu, Rui [1 ]
Lu, Jimei [1 ]
Liu, Weiwei [1 ]
Yu, Hanwen [1 ]
Liu, Mengli [1 ]
Li, Jing [1 ]
Yin, Minzhen [1 ]
Peng, Huasheng [1 ,2 ,3 ]
Zha, Liangping [1 ,4 ,5 ]
机构
[1] Anhui Univ Chinese Med, Coll Pharm, Hefei 230012, Peoples R China
[2] China Acad Chinese Med Sci, Natl Resource Ctr Chinese Mat Med, State Key Lab Dao Di Herbs, Beijing 100700, Peoples R China
[3] Chinese Acad Med Sci, China Acad Chinese Med Sci, Natl Resource Ctr Chinese Mat Med, Res Unit 2019RU057, Beijing 100700, Peoples R China
[4] Anhui Acad Chinese Med, Inst Conservat & Dev Tradit Chinese Med Resources, Hefei 230012, Peoples R China
[5] Anhui Prov Key Lab Res & Dev Chinese Med, Hefei 230012, Peoples R China
基金
中国国家自然科学基金;
关键词
Squalene synthase; Atractylodes lancea; Functional characterization; Terpenoids; Biosynthesis pathways; BIOSYNTHESIS; ISOPRENOIDS; EXPRESSION; TRITERPENE; ENZYME; PLANTS;
D O I
10.1007/s00425-021-03797-9
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Main conclusion Two squalene synthase genes AlSQS1 and AlSQS2 were isolated fromAtractylodes lanceaand functionally characterized using in vitro enzymatic reactions. Atractylodes lancea is a traditional herb used for the treatment of rheumatic diseases, gastric disorders, and influenza. Its major active ingredients include sesquiterpenoids and triterpenes. Squalene synthase (SQS; EC 2.5.1.21) catalyzes the first enzymatic step in the central isoprenoid pathway towards sterol and triterpenoid biosynthesis. In this study, we aimed to investigate two SQSs from A. lancea using cloning and in vitro enzymatic characterization. Bioinformatics and phylogenetic analyses revealed that the AlSQSs exhibited high homology with other plant SQSs. Furthermore, AlSQS1 was observed to be localized in both the nucleus and cytoplasm, whereas AlSQS2 was localized in the cytoplasm and endoplasmic reticulum. To obtain soluble recombinant enzymes, AlSQS1 and AlSQS2 were successfully expressed as glutathione S-transferase (GST)-tagged fusion proteins in Escherichia coli Transetta (DE3). Approximately 68 kDa recombinant proteins were obtained using GST-tag affinity chromatography and Western blot analysis. Results of the in vitro enzymatic reactions established that both AlSQS1 and AlSQS2 were functional, which verifies their catalytic ability in converting two farnesyl pyrophosphates to squalene. The expression patterns of AlSQS and selected terpenoid genes were also investigated in two A. lancea chemotypes using available RNA sequencing data. AlSQS1 and AlSQS2, which showed relatively similar expression in the three tissues, were more highly expressed in the stems than in the leaves and rhizomes. Methyl jasmonate (MeJA) was used as an elicitor to analyze the expression profiles of AlSQSs. The results of qRT-PCR analysis revealed that the gene expression of AlSQS1 and AlSQS2 plummeted at lowest value at 12 h and reached its peak at 24 h. This study is the first report on the cloning, characterization, and expression of SQSs in A. lancea. Therefore, our findings contribute novel insights that may be useful for future studies regarding terpenoid biosynthesis in A. lancea.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Molecular cloning and characterization of three isoprenyl diphosphate synthase genes from alfalfa
    Yan Sun
    Ruicai Long
    Junmei Kang
    Tiejun Zhang
    Ze Zhang
    He Zhou
    Qingchuan Yang
    Molecular Biology Reports, 2013, 40 : 2035 - 2044
  • [42] Molecular cloning and expression characterization of flavonol synthase genes in peanut (Arachis hypogaea)
    Hou, Mingyu
    Zhang, Yongjiang
    Mu, Guojun
    Cui, Shunli
    Yang, Xinlei
    Liu, Lifeng
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [43] Cloning, prokaryotic expression and functional analysis of squalene synthase (SQS) in Magnolia officinalis
    Zha, Liangping
    Liu, Shuang
    Su, Ping
    Yuan, Yuan
    Huang, Luqi
    PROTEIN EXPRESSION AND PURIFICATION, 2016, 120 : 28 - 34
  • [44] Molecular Cloning, Expression and Characterization of a Squalene Synthase Gene from Grain Amaranth (Amaranthus cruentus L.)
    Park, Young-Jun
    Nemoto, Kazuhiro
    Minami, Mineo
    Matsushima, Kenichi
    Nomura, Tomohide
    Kinoshita, Jun-ichi
    Nishikawa, Tomotaro
    JARQ-JAPAN AGRICULTURAL RESEARCH QUARTERLY, 2016, 50 (04): : 307 - 317
  • [45] Structural characterization and immunoregulatory activity of two polysaccharides from the rhizomes of Atractylodes lancea (Thunb.) DC
    Qin, Jing
    Wang, Hui-yang
    Zhuang, Dan
    Meng, Fan-cheng
    Zhang, Xing
    Huang, He
    Lv, Guang-ping
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 136 : 341 - 351
  • [46] MOLECULAR-CLONING, PROMOTER FUNCTION AND REGULATION OF THE HUMAN SQUALENE SYNTHASE GENE
    SHECHTER, I
    GUAN, GM
    JIANG, GJ
    FASEB JOURNAL, 1995, 9 (06): : A1329 - A1329
  • [47] MOLECULAR-CLONING AND CHARACTERIZATION OF THE YEAST GENE FOR SQUALENE SYNTHETASE
    JENNINGS, SM
    TSAY, YH
    FISCH, TM
    ROBINSON, GW
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (14) : 6038 - 6042
  • [48] CLONING, EXPRESSION, AND CHARACTERIZATION OF CDNAS ENCODING ARABIDOPSIS-THALIANA SQUALENE SYNTHASE
    NAKASHIMA, T
    INOUE, T
    OKA, A
    NISHINO, T
    OSUMI, T
    HATA, S
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (06) : 2328 - 2332
  • [49] Molecular cloning and functional characterization of porcine cyclic GMP-AMP synthase
    Wang, Jiang
    Chu, Beibei
    Du, Lili
    Han, Yingqian
    Zhang, Xuemei
    Fan, Shuangshuang
    Wang, Yueying
    Yang, Guoyu
    MOLECULAR IMMUNOLOGY, 2015, 65 (02) : 436 - 445
  • [50] Molecular and biochemical characterization of squalene synthase from Siraitia grosvenorii
    Heling Su
    Yongming Liu
    Yalun Xiao
    Yanlian Tan
    Yunyan Gu
    Bin Liang
    Hongli Huang
    Yaosheng Wu
    Biotechnology Letters, 2017, 39 : 1009 - 1018