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厚壳贻贝足丝黏附蛋白mfp-3重组表达及黏附功能分析 被引量:6

Recombinant Expression and Functional Analysis of Mytilus coruscus Foot Protein-3
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摘要 厚壳贻贝(Mytilus coruscus)中富含各种黏附蛋白分子,其中贻贝足丝蛋白3(mussel footprotein-3,mfp-3)是贻贝用以与外界基质进行黏附的主要蛋白分子.贻贝足丝中天然的mfp-3的含量低,水溶性差,因此纯化困难.本文以厚壳贻贝足丝蛋白mfp-3的cDNA序列为目的基因,用PCR法扩增Mfp-3基因,并成功构建含有多聚组氨酸标签的重组mfp-3原核表达载体pET-21a/Mfp-3.经IPTG(isopropylthio-β-D-galactoside)诱导表达出重组蛋白,利用亲和层析和反相高效液相色谱分离纯化,获得分子量为9.18 kD的重组蛋白.经酪氨酸酶催化、玻璃包被和石英晶体微天平(quartzcrystal microbalance,QCM)分析.结果表明,重组厚壳贻贝mfp-3蛋白经酪氨酸酶催化后,L-3,4-二羟基苯丙氨酸(即多巴,L-3,4-dihydroxyphenylalanine,DOPA)含量较高并且具有较好的黏附性能.上述研究为开发以mfp-3黏附蛋白为来源的生物粘合剂奠定了良好的基础. Mussels Mytilus coruscus can adhere to various solid surfaces in the presence of moisture.Mussel foot protein-3(mfp-3) has been suggested as the main adhesive protein in the plaques closest to the adhesion interface and also has been suggested as potential environmentally friendly adhesives for use in aqueous conditions and in medicine.To obtain enough M.coruscus mfp-3 for the further study,using E.coli expression system,recombinant mfp3 with a 6×His tag at C-termini was successfully expressed and purified by Ni-NTA affinity purification followed by reverse phase HPLC separation.The actual molecular mass of recombinant mfp3 was determined as 9.18 kD by MALDI-TOF,which is almost identical to the calculated mass of 9.15 kD and confirmed that recombinant mfp-3 had been successfully purified to a high level.Recombinant mfp3 was modified by tyrosinase and DOPA content assay was performed to detect the conversion efficiency of Tyr to DOPA.Adhesion ability tests such as coating assay and QCM revealed that recombinant mfp3 has significant adhesion ability especially after modified by tyrosinase.These assays revealed the correlation between DOPA content and adhesion ability,and that recombinant mfp3 has significant adhesion ability thus may be useful as a bioadhesive in medical or underwater environments.
出处 《中国生物化学与分子生物学报》 CAS CSCD 北大核心 2011年第9期851-857,共7页 Chinese Journal of Biochemistry and Molecular Biology
基金 浙江省科技厅面上项目(No.2008C22026) 浙江省大学生创新科技项目(新苗人才计划2011)~~
关键词 厚壳贻贝 足丝黏附蛋白 多巴 原核表达 石英晶体微天平 Mytilus coruscus mussel foot protein DOPA recombinant expression quartz crystal microbalance(QCM)
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  • 1孙敬锋,吴信忠.贝类血细胞及其免疫功能研究进展[J].水生生物学报,2006,30(5):601-607. 被引量:38
  • 2Brown C H. Some structural proteins of Mytilus edulis[J]. Q J Microsc Sei, 1952, 93(3): 487-502. 被引量:1
  • 3Waite J H. Reverse engineering of bioadhesion in marine mussels [J]. Ann N Y Acad Sci, 1999, 875:301-309. 被引量:1
  • 4Qin x x, Waite J H. A potential mediator of collagenous block copolymer gradients in mussel byssal threads[ J]. Proc Natl Acad Sci U S A, 1998, 95(18): 10517-10522. 被引量:1
  • 5Waite J H, Qin X X. Polyphosphoprotein from the adhesive pads of Mytilus edulis [ J ]. Biochemistry, 2001, 40 ( 9 ) : 2887-2893. 被引量:1
  • 6Silverman H G, Francisco F F. Understanding marine mussel adhesion[J]. Mar Biotechnol(NY), 2007, 9(6): 661-681. 被引量:1
  • 7Yu M, Hwang J Y, Deming T J. Role of L-3, 4- dlhydroxyphenylalanine in mussel adhesive proteins [ J ]. J Am Chem Soc, 1999, 121 : 5825-5826. 被引量:1
  • 8Benedict C V, Waite J H. Composition and uhrastrueture of the byssus of Mytilus edulis [ J ]. J Morphol, 1986, 189 (3) : 261- 270. 被引量:1
  • 9Yu M, Deming T J. Synthetic polypeptide mimics of marine adhesives [ J ]. Macromolecules, 1998, 31 ( 15 ) : 4739-4745. 被引量:1
  • 10Deming T J. Mussel byssus and biomolecular materials[ J]. Curr Opin Chem Biol, 1999, 3(1): 100-105. 被引量:1

共引文献9

同被引文献94

  • 1周小梅,李君剑,赵军良,梁爱华.抗生素对农杆菌的抑制和对油菜外植体分化的影响[J].西北植物学报,2005,25(1):52-56. 被引量:35
  • 2卫红飞,万敏,杨世杰,王燕媚,李大鹏,王爱丽,于永利,王丽颖.不同诱导剂对工程菌发酵及重组蛋白表达的影响[J].中国生物制品学杂志,2005,18(6):518-519. 被引量:10
  • 3朱红裕,李强.外源蛋白在大肠杆菌中的可溶性表达策略[J].过程工程学报,2006,6(1):150-155. 被引量:59
  • 4Bandara N, Zeng H B, WuJ P. Marine mussel adhesion: biochemistry, mechanisms, and biomimetics[J].] Adhes Sci Technol , 2013, 27( 18-19): 2139-2162. 被引量:1
  • 5WaiteJ H, Tanzer M L. Polyphenolic substance of Mytilus edulis , Novel Adhesive containing L-Dopa and hydroxyproline[J]. Science, 1981,212(4498): 1038-1040. 被引量:1
  • 6Lee B P, Messersmith P B, IsraelachviliJ N, et af. Mussel- inspired adhesives and coatings[J]. Annu Rev Mater Res, 2011 , 41: 99-132. 被引量:1
  • 7Banu A, Shyamasundari K, Hanumantha Rao K. Foot glands in Perna indica and Perna viridis (Pelecypoda: mytilidae) histology and histochemistry[J]. Folia Histochem Cytochem (Krakow) , 1979,17(4): 395-404. 被引量:1
  • 8Miki D, Takeuchi Y, Inoue K, et al. Expression sites of two hyssal protein genes of Mytilu, galloproeinciolis[J]. Biol Bull, 1996, 190(2) :213-217. 被引量:1
  • 9Vitarello Zuccarello L. Ultrastructural and cytochemical study on the enzyme gland of the foot of a mollusc[J]. Tissue Cell, 1981,13(4): 701-713. 被引量:1
  • 10WaiteJ H, Lichtenegger H C, Stuky G D, et al. Exploring molecular and mechanical gradients in structural bioscaffolds[J]. Biochemistry, 2004, 43 (24) : 7653-7662. 被引量:1

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