期刊文献+

地衣芽孢杆菌MY75菌株几丁质酶基因的异源表达及特性 被引量:5

Heterogeneous expression of chitinase gene from Bacillus licheniformis MY75 and the characterization of expressed ChiMY
原文传递
导出
摘要 【目的】地衣芽孢杆菌MY75菌株的几丁质酶基因的异源表达,并对表达蛋白的特性进行研究。【方法】制备MY75菌株培养上清粗蛋白,利用酶谱分析确定具有几丁质酶活的蛋白分子量。将该蛋白进行飞行时间质谱分析,确定其部分氨基酸序列,设计PCR引物对MY75菌株的几丁质酶基因进行克隆及异源表达。对表达蛋白的最适反应温度及pH,温度耐受性及金属离子对酶活力的影响等特性进行了研究,并测定了表达蛋白对真菌孢子萌发的抑制活性和对甜菜夜蛾幼虫的杀虫增效作用。【结果】酶谱分析证明MY75菌株培养上清液中仅含有一种55kDa的几丁质酶。将该编码基因chiMY克隆及序列分析后发现,基因长度为1797bp,编码599个氨基酸。在大肠杆菌中异源表达的几丁质酶ChiMY蛋白的分子量为67kDa。质谱分析证明,55kDa蛋白与67kDa蛋白序列相同。ChiMY最适pH和最适温度分别为7.0和50°C,为中性几丁质酶。Li+,Na+,和Mg2+离子对表达蛋白的酶活力具有促进作用,Mn2+,Cr3+,Zn2+和Ag+离子则能显著抑制酶活力,Cu2+和Fe3+离子完全抑制酶活性。生物测定的结果显示,异源表达的MY75几丁质酶能够抑制小麦赤霉及黑曲霉的孢子萌发,并且对苏云金芽孢杆菌的杀虫活力具有增效作用。【结论】地衣芽孢杆菌MY75菌株中仅有一种55kDa几丁质酶,其编码基因能够在大肠杆菌中大量表达,表达蛋白分子量与野生型蛋白之间有显著差异,由此证明MY75菌株中存在着几丁质酶的剪切加工过程。明确了地衣芽孢杆菌几丁质酶ChiMY具有抑制真菌活性及杀虫增效作用。上述全部研究结论在国内首次报道。 [Objective]To heterogeneously express the chitinase gene of Bacillus licheniformis strain MY75 in E. coli,and to characterize the recombinant chitinase ChiMY. [Methods]The extracelluar crude protein from B. licheniformis MY75 was analyzed by zymogram analysis. The partial amino acid sequence of the protein owned chitinase activity was given by time-of-flight mass spectrometry ( TOF-MS). Then the corresponding chitinase gene chiMY was cloned and heterogeneously expressed in E. coli. The optimum temperature and pH of the ChiMY,and the effect of various metal ions on chitinase activity were studied. The antifungal activity and the synergistic effect on insecticidal activity were demonstrated by bioassays. [Results] A 55 kDa extracelluar protein produced by B. licheniformis MY75 exhibited chitinase activity in zymogram analysis. The chiMY gene was 1797 bp long and encoded a 599 amino acid protein. The molecular weight of the recombinant protein ChiMY over-expressed in E. coli was 67 kDa. The amino acid sequence of the 55 kDa extracelluar protein was proved identical to the 67 kDa ChiMY by the TOF-MS. The optimum temperature and pH were 50 °C and 7. 0,respectively. The enzyme activity was improved by Li^ + ,Na ^+ and Mg^2 + and inhibited by Mn^2 + ,Cr^3 + ,Zn^2 + ,and Ag ^+. Cu^2 + and Fe^3 + can inactivate the enzyme. The bioassays demonstrated the heterogeneously expressed ChiMY could inhibit the sporangia germination of G. saubinetii and A. niger. and reduce the LC50 (50% lethal concentration) of the crystal protein of Bacillus thuringiensis against S. exigua by approximately 27%. [Conclusions] The B. licheniformis MY75 could produce a 55 kDa chitinase. The corresponding chitinase gene was over-expressed in E. coli. The molecular weight of heterogeneously expressed ChiMY showed significant different to the wild-type chitinase protein. This implicated the the protein processing of chitinase in the B. licheniformis MY75. The ChiMY also owned the antifungal activity and could improve the insecticidal activity of the Bacillus thuringiensis crystal protein against S. exigua. This is the first report about the chitinase from B. licheniformis in China.
出处 《微生物学报》 CAS CSCD 北大核心 2010年第6期749-754,共6页 Acta Microbiologica Sinica
基金 国家自然科学基金(30971957,30600015)~~
关键词 地衣芽孢杆菌 几丁质酶 质谱 特性 抑真菌 杀虫增效 Bacillus licheniformis chitinase characteristics mass spectrometry antifungal activity synergistic effect
  • 相关文献

参考文献15

  • 1Dahiya N, Tewari R, Hoondal GS. Biotechnological aspects of chitinolytic enzymes: a review. Applied Microbiology and Biotechnology, 2006, 71 (6) : 773 - 782.
  • 2Patil RS, Ghormade V, Deshpande MV. Chitinolytic enzymes: an exploration. Enzyme and Microbial Technology, 2000, 26 ( 7 ) :473 - 483.
  • 3Toharisman A, Suhartono MT, Spindler-Barth M, Hwang JK, Pyun YR. Purification and characterization of a thermostable chitinase from Bacillus licheniformis Mb-2. World Journal of Microbiology &Biotechnology, 2005, 5 (21): 735-738.
  • 4Shah MD, Asraful I, Kye MC, Sun JH, Renukaradhya KM, Jong MK, Myoung GY, Ji JC, Jae YH, Young HL, Hoon K, Han DY. Chitinase of Bacillus licheniformis from oyster shell as a probe to detect chitin in marine shells. Applied Microbiology and Biotechnology, 2009, DOI 10. 1007/s00253-009-2215-1.
  • 5Mostafa SA, Mahmoud MS, Mohamed ZK, Enan MR. Cloning and molecular characterization of chitinase from Bacillus licheniformis MS-3. Journal of General and Applied Microbiology, 2009, 55 (3): 241 -246.
  • 6齐东梅,梁启美,惠明,牛天贵.棉花枯萎、黄萎病拮抗芽孢杆菌的抗菌蛋白特性[J].微生物学通报,2005,32(4):42-46. 被引量:44
  • 7Xiao L, Xie CC, Cai J, Lin Z J, Chen YH. Identification and characterization of a chitinase-produced bacillus showing significant antifungal activity. Current Microbiology, 2009,58 (5) : 528 - 533.
  • 8刘东,陈月华,蔡峻,肖亮,刘传.苏云金芽胞杆菌几丁质酶B特性及其杀虫抑真菌的作用[J].微生物学报,2009,49(2):180-185. 被引量:16
  • 9Driss F, Kallassy-Awad M, Zouari N, Jaoua S. Molecular characterization of a novel chitinase from Bacillus thuringiensis subsp, kurstaki. Journal of Microbiological Methods, 2005, 99(4): 945- 953.
  • 10Laemmli UK. Cleavage of structural proteins during the assembly of the head of the bacteriophage T4. Nature, 1970, 227 (5259):680-685.

二级参考文献27

  • 1石磊岩.中国棉花枯、黄萎病病原菌研究[J].棉花学报,1996,8(6):292-294. 被引量:20
  • 2Shaun MB, Stephen JF, The structure and synthesis of the fungal cell wall. Bioessays, 2006, 26 : 799 - 808
  • 3Lertcanawanichakul M, Wiwat C, Bhumiratana A, et al. Expression of chitinase-encoding gene in Bacillus thuringiensis and toxicity of engineered B. thuringiensis subsp, aizawai toward Lymantria dispar larvae. Current Microbiology, 2004, 48: 175- 181.
  • 4Thamthiankul S, Moar WJ, Miller ME, et al. hnproving the insecticidal activity of B. thuringiensis subsp, aizawai against spodoptera exigua by chromosomal expression of a chitinase gene. Applied Microbiology and Biotechnology, 2004, 65: 183- 192.
  • 5Mark NS, Graham WG. Involvement of chitinases of Bacillus thuringiensis during pathogenesis in insects. Microbiolgy, 1998, 144 (8) : 2189 - 2194.
  • 6Wiwat C, Thaithanun S, Pantuwatana S, et al, Toxicity of Chitinase-Producing Bacillus thuringiensis subsp, kurstaki HD-1 (G) toward Plutella xylostella. Journal of Invertebrate Pathology, 2000, 76 : 270 - 277.
  • 7Sampson MN, Gooday GW, Involvement of chitinases of Bacillus thuringiensis during pathogenesis in insects. Microbiology, 1998, 144: 2189-2194.
  • 8Arora N, Ahmad T, Rajagopal R, et al. A congstitutively expressed 36kDa exochitinase from B. thuringiensis HD-1. Biochemical and Biophysical Research Communications, 2003, 307: 620- 625.
  • 9Moar WJ, Antifungal Bacillus thuringiensis Strain US 6280722, 2001 - 8 - 28.
  • 10Driss F, Kallassy-Awad M, Zouari N, et al. Molecular characterization of a novel chitinase from Bacillus thuringiensis subsp. Kurstaki. Journal of Microbiological Methods, 2005, 99 : 945 - 953.

共引文献58

同被引文献79

引证文献5

二级引证文献32

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部