protein engineering

英 [ˈprəʊtiːn ˌendʒɪˈnɪərɪŋ] 美 [ˈproʊtiːn ˌendʒɪˈnɪrɪŋ]

网络  蛋白质工程; 蛋白质工程手段; 蛋白工程; 蛋白质工程学

化学



双语例句

  1. State Key Laboratory of Protein Engineering and Plant Genetic Engineering
    蛋白质工程及植物基因工程国家重点实验室
  2. The genetic engineering technology ( including protein engineering) has given a new revolution of Food Industry.
    基因工程(包括蛋白质工程)技术给食品工业带来新的革命。
  3. Biological industry includes the industry of biopharmaceutical, processing of agricultural products, microbial fermentation, protein engineering, Enzyme reaction engineering, tissue engineering, etc.
    生物科技成果的产业包含生物制药、农产品加工、基因工程、微生物发酵、蛋白质工程、酶反应工程、细胞组织工程等行业。
  4. Protein engineering and site directed mutagenesis have been used to change the active site and alter the substrate specificity of various hydroxynitrile lyases.
    研究人员已经利用蛋白质工程和定点突变技术来改变各种醇腈酶的活性位点和底物特异性等。
  5. Alteration of Substrate Specificity of Thermophilic Esterase by Protein Engineering
    应用蛋白质工程技术改变嗜热酯酶的底物选择性
  6. At the present, the institute majors in4 research fields: molecular immunology, molecular Enzymology, biochemistry and protein engineering, pharmaceutical biochemistry and molecular biology.
    生化与分子生物学研究所的主要研究方向有:分子免疫学、分子酶学、生化和蛋白质工程、药物生化与分子生物学。
  7. Application of Yeast Cell-surface Display for Protein Engineering
    酵母表面展示技术在蛋白质工程中的应用
  8. Changing the Optimum pH and Temperature of Glucose Isomerase by Means of Protein Engineering
    用蛋白质工程方法改变葡萄糖异构酶最适pH和最适温度
  9. With the development of molecular biology, genetic engineering and protein engineering, genetically engineered antibody is a new way for diagnosis and treatment to tumors. Above all, the application of single chain Fv is a hot point in immunogenetic therapy.
    随着现代分子生物学,基因工程技术和蛋白质工程技术的发展,基因工程抗体的诞生为肿瘤的诊断和治疗带来了希望,尤其是单链抗体的应用成为免疫基因治疗的热点。
  10. Design and reform of industrial enzymes by protein engineering
    用蛋白质工程方法设计和改造工业用酶
  11. This thesis includes three parts: ( 1) protein engineering of GL-7-ACA acylase CA130;
    本论文包括三部分内容:(1)GL-7-ACA酰化酶CA130的蛋白质工程改造;
  12. The application, problem and development trend of biotechnology such as gene engineering, cell engineering, protein engineering, enzyme engineering, fermentation engineering in the fields of food industry are discussed in the paper.
    简要综述了基因工程、细胞工程、蛋白质工程、酶工程、发酵工程等生物技术在食品领域的应用及其存在问题和发展趋势。
  13. The 38kD protein engineering bacteria and the technique concerned is good foundation for clinical diagnosis research of TB.
    本研究获得了能够表达结核菌38kD蛋白的重组工程菌株,摸索出蛋白表达的合适条件,初步证实重组38kD蛋白具有良好的免疫反应性,为结核病的免疫学诊断打下了基础。
  14. With the development of genetic engineering and protein engineering, lots of proteins can be got easily.
    近年来,由于基因工程和蛋白质工程的快速发展,使蛋白质类产品基本实现了产业化。
  15. Recent developments on detergent enzymes. Application of biotechnology ( genetic engineering, protein engineering, directed molecular evolution) for the development of new and improved enzymes.
    论述了洗涤剂酶的发展趋向,生物工程、基因工程、蛋白质工程及定向分子演变在酶的新品开发和性能改进方面的应用。
  16. Protein Splicing and Its Application in Protein Engineering
    蛋白质剪接及在蛋白质工程中的应用
  17. Recent progress in gene engineering and related fields such as gene diagnosis, therapy, bioreactor, protein engineering, metabolism engineering, human genome project, bioinformatics is reviewed.
    介绍了基因工程及其在基因检测与基因治疗、生物反应器工程、蛋白质工程与代谢工程,基因组计划与生物信息学等相关领域的进展。
  18. In recent years, a lot of new high-throughput screening methods have emerged and are increasingly being used to explore challenging issues in protein engineering.
    近年来报道了许多新的高通量筛选方法,这些方法已经越来越多地用于蛋白质工程的研究,并且解决了此领域中一些具有争论性的前沿问题。
  19. This paper briefly introduces the origin of the protein engineering and the target of carrying out this engineering, discusses on several research progresses obtained, and looks forward the future development of the protein engineering.
    简介了蛋白质工程的由来和实施工程的目标,论述了蛋白质工程取得的若干研究进展,并展望了其未来发展趋势。
  20. Progresses in the Study on insulin Protein Engineering
    胰岛素蛋白质工程研究进展
  21. Common strategies and examples of protein engineering in improving protein solubility, homogeneity, and crystallizability are presented.
    近年来分子生物学尤其是蛋白质工程的应用有效地提高蛋白质的溶解度、均一性及可结晶性等内在特性,促进蛋白质的结晶,成为提高蛋白质结晶能力和蛋白质晶体分辨率的有效途径。
  22. Research on Protein Engineering
    蛋白质工程的研究
  23. Therefore, protein engineering is an effective way to design and reconstruct the natural enzyme, and it provides a new method to improve the yield and thermostability of phytase.
    目前,蛋白质工程技术已成为修饰和改造天然酶的有效手段,为植酸酶产量的提高和热稳定性的改善开辟了新的途径。
  24. Along with the profound development of gene and protein engineering technique, and clinical studies of monoclonal antibody, monoclonal antibody will play more and more important roles in the diagnosis and treatment of prostate cancer.
    随着基因工程、蛋白质工程技术的发展及单克隆抗体在临床研究的不断深入,单克隆抗体将在前列腺癌的诊断和治疗中发挥重要的作用。
  25. Strategies for protein engineering and using them to reforming basic properties of industrial enzyme including stability, activity, selectivity, surface properties are summarized. In addition, an application and prospects of industrial enzyme for protein engineering are discussed.
    文章概述了蛋白质工程常用策略和用这些策略来改造工业用酶的基本特性(包括稳定性、活性、选择性和表面特性)及其在工业用酶中的应用,并对其发展做了展望。
  26. With the development of protein engineering, more and more enzymes are applied in industry.
    随着蛋白质工程的发展,越来越多的酶类应用到工业生产中。
  27. One of the fundamental purposes in protein engineering is to develop stable and catalytic enzymes for industrial applications.
    蛋白质工程的终极目标之一就是设计出兼具稳定与催化活性的新蛋白酶,从而将其应用在化工或制药等工业领域。
  28. Over the last three decades, directed evolution has emerged as a powerful technology platform in protein engineering.
    在过去的几十年中,定向进化作为一种强大的技术平台强有力的托起了蛋白质改造这一伟大工程。
  29. The design, improvement and application of the specific recognition are well concerned in protein engineering and synthetic biology.
    蛋白质和底物分子识别特异性的设计、改进和综合应用在蛋白质工程和合成生物学中备受关注。
  30. With the development and application of the new technologies, such as molecular biology, structural biology and protein engineering, many progresses have been made in the research of structures and functions of xylanase.
    随着分子生物学、结构生物学的发展及蛋白质工程的应用,对木聚糖酶结构和功能的研究不断深入。