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1.
包涵体蛋白体外复性的研究进展   总被引:39,自引:1,他引:38  
方敏  黄华樑   《生物工程学报》2001,17(6):608-612
外源基因在大肠杆菌中高水平表达时 ,通常会形成无活性的蛋白聚集体即包涵体。包涵体富含表达的重组蛋白 ,经分离、变性溶解后须再经过一个合适的复性过程实现变性蛋白的重折叠 ,才能够得到生物活性蛋白。近年来 ,发展了许多特异的策略和方法来从包涵体中复性重组蛋白。最近的进展包括固定化复性以及用一些低分子量的添加剂等来减少复性过程中蛋白质的聚集 ,提高活性蛋白的产率。  相似文献   

2.
包涵体蛋白复性的几种方法   总被引:6,自引:0,他引:6  
外源基因在大肠杆菌中高水平表达时,通常会形成无活性的蛋白聚集体即包涵体。包涵体富含表达的重组蛋白,经分离、变性溶解后须再经过一个合适的复性过程实现变性蛋白的重折叠,才能够得到生物活性蛋白。  相似文献   

3.
重组蛋白包涵体的复性研究   总被引:21,自引:0,他引:21  
重组蛋白在大肠杆菌中的高表达往往形成不可溶、无生物活性的包涵体,需经过变性溶解后,在适当条件下复性形成天然的构象,才可恢复其生物活性.变复性实验是建立在对蛋白质体外折叠机制的了解的基础上.根据近年来对蛋白质折叠机制的认识和重组蛋白包涵体在复性方面的主要进展,论述以下3个方面的内容:1)蛋白质在细胞内的折叠机制;2)蛋白质体外折叠机制;3)蛋白质复性的策略和方法.  相似文献   

4.
功能性包涵体的研究进展   总被引:1,自引:0,他引:1  
利用原核系统表达外源重组蛋白的一个特点是表达蛋白多以包涵体形式存在。在过去人们一直认为包涵体是错误折叠、无生物活性的蛋白,需要经过变复性的过程重新获得有生物活性、可溶的蛋白,因而变复性条件的摸索迄今仍然是该领域的难点。但近几年的研究表明包涵体并非都是无生物活性的,功能性包涵体(或者称为非传统意义包涵体) 概念的提出是该领域的一个重大研究进展。由于功能性包涵体本身具有生物活性,可在非变性条件下提取,目前已经在生命科学的基础研究、生物制药、生物材料、生物催化等领域展现出良好的应用前景。重点从功能性包涵体的定义、形成机理、提取条件等近期研究进展进行综述,以期为原核细胞表达和工业生产重组蛋白药物提供新的思路。  相似文献   

5.
将含有前导肽的人神经生长因子基因(proNGF)克隆在原核表达载体pET15b中, 转化大肠杆菌BL21(DE3)pLysS, 经IPTG诱导实现了目标融合蛋白的高效表达。SDS-PAGE分析表明表达蛋白占全菌总蛋白的20%左右, 表达蛋白主要以包涵体的形式存在。用6 mol/L的盐酸胍溶解包涵体后, 通过Ni2+-NTA柱纯化, 获得纯化的目标融合蛋白, 电泳谱带扫描分析表明蛋白纯度可达90%以上。Western blotting检测显示, 表达产物有较强的免疫学活性。经肠激酶作用后得到proNGF非融合蛋白, 分子量为27 kD, 100 mL表达菌液可获得13.1 mg proNGF蛋白。用透析复性的方法将目的蛋白重折叠, 复性率为18%, 在重折叠过程中前导肽发挥了一定的积极作用。用PC12细胞进行生物活性鉴定, 结果显示复性后的proNGF蛋白具有良好的生物活性。  相似文献   

6.
将含有前导肽的人神经生长因子基因(proNGF)克隆在原核表达载体pET15b中, 转化大肠杆菌BL21(DE3)pLysS, 经IPTG诱导实现了目标融合蛋白的高效表达。SDS-PAGE分析表明表达蛋白占全菌总蛋白的20%左右, 表达蛋白主要以包涵体的形式存在。用6 mol/L的盐酸胍溶解包涵体后, 通过Ni2+-NTA柱纯化, 获得纯化的目标融合蛋白, 电泳谱带扫描分析表明蛋白纯度可达90%以上。Western blotting检测显示, 表达产物有较强的免疫学活性。经肠激酶作用后得到proNGF非融合蛋白, 分子量为27 kD, 100 mL表达菌液可获得13.1 mg proNGF蛋白。用透析复性的方法将目的蛋白重折叠, 复性率为18%, 在重折叠过程中前导肽发挥了一定的积极作用。用PC12细胞进行生物活性鉴定, 结果显示复性后的proNGF蛋白具有良好的生物活性。  相似文献   

7.
重组包涵体蛋白质的折叠复性   总被引:49,自引:1,他引:48  
综述了减少包涵体形成、包涵体分离和溶解以及包涵体折叠复性的策略及其最新进展 .详细讨论了包涵体蛋白质折叠复性的基本原则、包涵体折叠复性促进剂和包涵体折叠复性方法  相似文献   

8.
人血小板衍生生长因子BB亚型包涵体复性与纯化   总被引:1,自引:0,他引:1  
目的:优化人血小板衍生生长因子BB亚型(PGDF-BB)包涵体复性方法与纯化条件,获得具有较好生物活性的重组PGDF-BB蛋白。方法:对PGDF-BB包涵体以梯度尿素进行变性,选择最佳包涵体变性浓度;比较不同复性条件下的复性率,稳定PGDF-BB包涵体复性方法;参照该蛋白的理化性质,选择适合PGDF-BB重组蛋白的纯化方法。结果:原核系统内实现了PGDF-BB的高表达;通过优化包涵体复性方法,重组蛋白的包涵体复性率可达40%以上;经过多个纯化方法相结合,PGDF-BB的纯度达到95%。结论:通过实验条件的优化,提高了PGDF-BB包涵体复性率,获得高纯度、高生物活性的重组PGDF-BB蛋白。  相似文献   

9.
目的:在原核系统内获得高表达的人血小板衍生生长因子BB(PGDF-BB),并对形成的包涵体进行复性。方法:对PGDF-BB核酸编码序列进行优化,构建pET-22b-PGDF-BB表达载体,以提高PCDF-BB的表达量;优化PGDF-BB包涵体复性条件,提高蛋白复性率和生物活性。结果:构建了pET-22b-PGDF-BB高效表达载体,原核表达的重组人PGDF-BB占细菌总蛋白的25%,PGDF-BB包涵体复性率达到15%。结论:对表达序列的优化设计可显著提高蛋白的表达量,复性方法的改良提高了蛋白的复性率和生物活性。  相似文献   

10.
李烈军  王捷 《生物技术》2005,15(3):85-87
外源基因在大肠杆菌中高水平表达时,通常会形成不溶性、无活性的蛋白聚集体即包含体。包含体富含表达的重组蛋白,经分离、变性溶解后须再经过一个合适的复性过程实现变性蛋白的重折叠,才能够得到生物活性蛋白。近年来,发展了许多特异的策略和方法来从包含体中复性重组蛋白。介绍稀释法、透析及分子排阻、固定化金属离子亲和层析、疏水层析复性等策略和进展;物理化学因素、前导肽协助蛋白折叠;人工分子伴侣辅助蛋白折叠及反胶束、多聚物用于蛋白复性。  相似文献   

11.
Practical considerations in refolding proteins from inclusion bodies   总被引:13,自引:0,他引:13  
Refolding of proteins from inclusion bodies is affected by several factors, including solubilization of inclusion bodies by denaturants, removal of the denaturant, and assistance of refolding by small molecule additives. We will review key parameters associated with (1) conformation of the protein solubilized from inclusion bodies, (2) change in conformation and flexibility or solubility of proteins during refolding upon reduction of denaturant concentration, and (3) the effect of small molecule additives on refolding and aggregation of the proteins.  相似文献   

12.
蛋白质的排阻色谱复性的新进展   总被引:3,自引:0,他引:3  
外源蛋白在大肠杆菌中高效表达时 ,常常形成不溶的、无活性的包涵体 ,包涵体蛋白的复性是重组蛋白生产过程中的一个技术难题。排阻色谱 (sizeexclusionchromatography ,SEC)用于蛋白复性是一种较新的、适用于任何一种蛋白的方法 ,与常用的稀释复性法相比 ,它能在高的起始蛋白浓度下对蛋白进行复性 ,活性回收率较高 ,同时又能使目标蛋白得到一定程度的纯化。对使用SEC复性的进展进行了评述 ,其内容包括SEC复性的原理及其复性过程中的影响因素 ,并对其未来发展进行了展望。  相似文献   

13.
Many recombinant eukaryotic proteins tend to form insoluble aggregates called inclusion bodies, especially when expressed in Escherichia coli. We report the first application of the technique of three-phase partitioning (TPP) to obtain correctly refolded active proteins from solubilized inclusion bodies. TPP was used for refolding 12 different proteins overexpressed in E. coli. In each case, the protein refolded by TPP gave either higher refolding yield than the earlier reported method or succeeded where earlier efforts have failed. TPP-refolded proteins were characterized and compared to conventionally purified proteins in terms of their spectral characteristics and/or biological activity. The methodology is scaleable and parallelizable and does not require subsequent concentration steps. This approach may serve as a useful complement to existing refolding strategies of diverse proteins from inclusion bodies.  相似文献   

14.
The recombinant production of proteins leads to inclusion bodies which contain aggregated proteins in active, partially active, and inactive conformational states. These aggregated proteins must be extracted from the inclusion bodies, unfolded, and carefully refolded to the active and the stable conformational state. Mechanistic models for protein refolding are briefly presented. Different strategies and protocols are presented that lead to the active and stable protein conformational state. The techniques presented include chaperonin-assisted refolding, amino acid substitution, polyethylene glycolassisted refolding, protein refolding in reverse micelles, and antibody-assisted refolding of proteins. The techniques presented together provide a reasonable framework of the state-of-the-art and may be carefully applied to the bioseparation of other proteins and biological macromolecules of interest. (c) 1995 John Wiley & Sons, Inc.  相似文献   

15.
Over-expression of heterologous proteins in Escherichia coli is commonly hindered by the formation of inclusion bodies. Nevertheless, refolding of proteins in vitro has become an essential requirement in the development of structural genomics (proteomics) and as a means of recovering functional proteins from inclusion bodies. Many distinct methods for protein refolding are now in use. However, regardless of method used, developing a reliable protein refolding protocol still requires significant optimization through trial and error. Many proteins fall into the category of "Challenging" or "Difficult to Express" and are problematic to refold using traditional chaotrope-based refolding techniques. This review discusses new methods for improving protein refolding, such as implementing high hydrostatic pressure, using small molecule additives to enhance traditional protein refolding strategies, as well as developing practical methods for performing refolding studies to maximize their reliability and utility. The strategies examined here focus on high-throughput, automated refolding screens, which can be applied to structural genomic projects.  相似文献   

16.
Yang Z  Zhang L  Zhang Y  Zhang T  Feng Y  Lu X  Lan W  Wang J  Wu H  Cao C  Wang X 《PloS one》2011,6(7):e22981
The production of recombinant proteins in a large scale is important for protein functional and structural studies, particularly by using Escherichia coli over-expression systems; however, approximate 70% of recombinant proteins are over-expressed as insoluble inclusion bodies. Here we presented an efficient method for generating soluble proteins from inclusion bodies by using two steps of denaturation and one step of refolding. We first demonstrated the advantages of this method over a conventional procedure with one denaturation step and one refolding step using three proteins with different folding properties. The refolded proteins were found to be active using in vitro tests and a bioassay. We then tested the general applicability of this method by analyzing 88 proteins from human and other organisms, all of which were expressed as inclusion bodies. We found that about 76% of these proteins were refolded with an average of >75% yield of soluble proteins. This "two-step-denaturing and refolding" (2DR) method is simple, highly efficient and generally applicable; it can be utilized to obtain active recombinant proteins for both basic research and industrial purposes.  相似文献   

17.
Eukaryotic proteins expressed inEscherichia coli often accumulate within the cell as insoluble protein aggregates or inclusion bodies. The recovery of structure and activity from inclusion bodies is a complex process, there are no general rules for efficient renaturation. Research into understanding how proteins fold in vivo is giving rise to potentially new refolding methods, for example, using molecular chaperones. In this article we review what is understood about the main three classes of chaperone: the Stress 60, Stress 70, and Stress 90 proteins. We also give an overview of current process strategies for renaturing inclusion bodies, and report the use of novel developments that have enhanced refolding yields.  相似文献   

18.
包含体蛋白质的复性研究进展   总被引:20,自引:0,他引:20  
包含体的形成是异源蛋白质在大肠杆菌中高效表达的必然结果,也是目前产生重组蛋白质最有效的方法之一。不可溶、无生物活性的包含体必须经过变性、复性才能获得天然结构,完整特定的生物学功能。聚集是造成重组蛋白质复性产率低下的主要因素,因此理解蛋白质聚集机制,减少和防止聚集的发生是建立高效、高产率复性方法的关键。分子伴侣、低分子量添加物等在复性过程中的应用及新的复性方法的建立都大大提高了重组蛋白质复性产率。  相似文献   

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