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1.
蛋白反式剪接是蛋白翻译后修饰的一种特殊机制,这一反应由断裂型内含肽自我催化完成,不需要酶和其他因子参与。与常规顺式的蛋白剪接不同的是,反式剪接是基于断裂型内含肽由N端和C端这两段多肽的高亲和力,精准地构建成一个具有剪接活性的内含肽蛋白质。反式剪接已被发展成新的生物技术应用于生产环化蛋白、构建蛋白定点与定时表达的载体和转基因植物,以及改造cDNA文库技术等。  相似文献   

2.
蛋白质剪接及其在蛋白质工程中的应用   总被引:2,自引:0,他引:2  
赫冬梅  钱凯先  沈桂芳 《遗传》2004,26(2):249-252
蛋白质剪接是蛋白质内含肽介导的,一种在蛋白质水平上翻译后的加工过程,它由一系列分子内的剪切-连接反应组成。蛋白质内含肽是一个蛋白质前体中的多肽序列,可以催化自身从蛋白质前体中断裂,使两侧的蛋白质外显肽连接成成熟的蛋白质。蛋白质内含肽的发现,不仅丰富了遗传信息翻译后加工的理论,在实践中也有广泛的应用前景。Abstract: Protein splicing , which is an intein mediated posttranslational processing, involves a series of intramolecular cleavage-ligation reactions. Intein is an intervening polypeptide which can catalytic self-cleavage from a pre-protein accompanied by the concomitant joining of the two flanking polypeptides (the extein) through a peptide bond. Protein splicing not only enriches genetic theory of posttranslational processing, but also have wide application prospect.  相似文献   

3.
内含肽是前体未成熟蛋白中的一段具有自我剪接功能的多肽链,在蛋白质纯化、蛋白质连接、环肽制备、蛋白标记以及生物传感器等方面广泛应用。本文综述了内含肽应用于蛋白质亲和纯化的发展历程,分别对层析型和非层析型内含肽纯化体系进行了分析和讨论,并总结了对控制内含肽断裂反应所进行的研究,为进一步改善内含肽介导蛋白质纯化提供依据和线索。  相似文献   

4.
内含肽介导的氯离子通道蛋白CFTR的反式剪接   总被引:3,自引:3,他引:0  
研究利用内含肽(intein)的蛋白质反式剪接功能在大肠杆菌中对囊性纤维化跨膜传导调节因子(cystic fibrosis transmembrane regulator, CFTR)的反式剪接作用.CFTR基因突变导致一种常染色体隐性遗传疾病囊性纤维化(cystic fibrosis, CF).将CFTR的cDNA于剪接反应所需的保守性氨基酸残基Ser-660前断裂为N端和C端,分别与split mini Ssp DnaB 内含肽的106个氨基酸残基的N端和48个氨基酸残基的C端编码序列融合,构建到原核表达载体pBV220 诱导表达后SDS-PAGE可见预期大小剪接形成的CFTR蛋白条带,Western印迹用CFTR特异性抗体进一步证明为剪接所产生的CFTR蛋白,表明内含肽可有效催化CFTR的反式剪接.  相似文献   

5.
凝血VⅢ因子(fVⅢ)蛋白的低效分泌以及基因过大是基于转fVⅢ基因的甲型血友病基因治疗的不利因素。本室前期用内含肽(intein)的蛋白质反式剪接实验证明,运用双载体共转fVⅢ基因,通过翻译后蛋白质剪接,轻链可顺式促进fVⅢ蛋白的分泌。本文用猪fVⅢ蛋白的A1和A3结构域替换人fVⅢ蛋白相应的结构,构建人/猪杂合fVⅢ(human/porcinehy-bridfVⅢ,HP-fVⅢ),研究基于内含肽的双载体转HP-fVⅢ基因后剪接HP-fVⅢ的分泌和活性。构建一对分别融合SspDnaB内含肽的HP-fVⅢ重链和轻链基因表达质粒,瞬时共转染COS-7细胞,用ELISA和Coatest法定量分析分泌至培养上清中HP-fVⅢ的剪接和生物活性,用Western blotting检测了细胞内HP-fVⅢ的剪接。结果显示,双载体转HP-fVⅢ基因细胞上清的剪接HP-fVⅢ蛋白量为(184±34)ng/mL,活性为(1.18±0.22)IU/mL,明显高于双载体转人fVⅢ基因[蛋白量为(48±12)ng/mL,活性为(0.31±0.10)IU/mL],提示猪fVⅢ的A1和A3结构域能显著促进内含肽剪接的HP-fVⅢ的分泌和活性;另外,还在混合培养的分别转内含肽融合HP-fVⅢ重链和轻链基因细胞上清中检测到剪接的HP-fVⅢ蛋白量为(27±5)ng/mL,活性为(0.19±0.07)IU/mL,提示内含肽对HP-fVⅢ的剪接可不依赖细胞机制,分泌出胞的前体蛋白仍可进行剪接反应;双载体转HP-fVⅢ基因细胞内检测到与转hfVⅢ基因阳性对照细胞内hfVⅢ条带大小接近的剪接HP-fVⅢ蛋白条带,进一步证实HP-fVⅢ的剪接。该结果为进一步在动物体内应用内含肽的双腺相关病毒载体转HP-fVⅢ基因奠定了实验基础。  相似文献   

6.
α-酰胺化是神经和内分泌系统中许多生物活性肽重要的翻译后加工过程,由酰胺化酶PAM催化完成.PAM是一个双功能酶,含有两个催化结构域:PHM和PAL,顺序催化酰胺化两步反应.PAM的mRNA和蛋白质具有多样性.作为活性肽生物合成途径中的限速酶,PAM的表达及活力水平具组织特异性,受激素及发育中的相关因素的调节.  相似文献   

7.
蛋白质内含肽是能够自我剪接的一段多肽链.它的发现不仅在理论上丰富了遗传信息翻译后加工的内容,而且在蛋白质纯化的实践方面有着广泛的应用前景.主要对蛋白质内含肽的剪接机制、结构特征、核酸内切酶活性以及应用方面的研究进展作一概述.  相似文献   

8.
蛋白质剪切是一种翻译后修饰事件 ,它将插入前体蛋白的中间的蛋白质肽段 (Intein ,internalproteinfrag ment)剪切出来 ,并用正常肽键将两侧蛋白质多肽链 (Extein ,flankingproteinfragments)连接起来。在此过程中不需要辅酶或辅助因子的作用 ,仅需四步分子内反应。Intein及其侧翼序列可以通过突变产生高度特异性的自我切割用于蛋白质纯化、蛋白质连接和蛋白质环化反应 ,在蛋白质工程方面有广泛的应用前景。  相似文献   

9.
白质剪切是一种翻译后修饰事件,它将插入前体蛋白的中间的蛋白质肽段(Intein, internal protein fragment)剪切出来,并用正常肽键将两侧蛋白质多肽链(Extein, flanking protein fragments)连接起来。在此过程中不需要辅酶或辅助因子的作用,仅需四步分子内反应。Intein及其侧翼序列可以通过突变产生高度特异性的自我切割用于蛋白质纯化、蛋白质连接和蛋白质环化反应,在蛋白质工程方面有广泛的应用前景。  相似文献   

10.
蛋白质内含肽是存在于前体蛋白质中的一段多肽,依靠蛋白质自剪接这一特殊机制从前体蛋白中释放出来,并且使两侧的蛋白质外显肽连接成为成熟的蛋白质。本文就内含肽在基因治疗方面的研究做一综述。  相似文献   

11.
Protein splicing     
Protein splicing is a posttranslational process that results in excision of an internal protein region (intein) and ligation of its flanking sequences (exteins). As distinguished from other variants of protein processing, protein splicing does not require cofactors of enzymes. Protein splicing is catalyzed by an internal domain (so-called Hint domain) of the intein itself. The review considers the main regularities and molecular mechanisms of the process, as well as the functions of Hint domains in other protein families (Hh proteins, bacterial BIL domains, etc.). Studies of protein splicing are of importance from both theoretical and applied viewpoints. For instance, comparisons of the inteins found in different domains of life illustrate the role of horizontal transfer in intein spreading. A possible role of inteins in regulating several cell processes is discussed on the basis of recent data.  相似文献   

12.
蛋白内含子与蛋白剪接   总被引:1,自引:0,他引:1  
蛋白内含子和蛋白剪接是蛋白质研究的前沿领域。重点介绍了蛋白内含子的结构和蛋白剪接机理的最新研究成果 ;蛋白内含子如同RNA剪接中的内含子 ,也是一类可移动的遗传元件 ;蛋白内含子目前研究的热点是蛋白内含子的功能研究及其在蛋白质工程和其它生物工程领域的用。  相似文献   

13.
Inteins possess two different enzymatic activities, self-catalyzed protein splicing and site-specific DNA cleavage. These endonucleases, which are classified as part of the homing endonuclease family, initiate the mobility of their genetic elements into homologous alleles. They recognize long asymmetric nucleotide sequences and cleave both DNA strands in a monomer form. We present here the 2.1 A crystal structure of the archaeal PI-PfuI intein from Pyroccocus furiosus. The structure reveals a unique domain, designated here as the Stirrup domain, which is inserted between the Hint domain and an endonuclease domain. The horseshoe-shaped Hint domain contains a catalytic center for protein splicing, which involves both N and C-terminal residues. The endonuclease domain, which is inserted into the Hint domain, consists of two copies of substructure related by an internal pseudo 2-fold axis. In contrast with the I-CreI homing endonuclease, PI-PfuI possibly has two asymmetric catalytic sites at the center of a putative DNA-binding cleft formed by a pair of four-stranded beta-sheets. DNase I footprinting experiments showed that PI-PfuI covers more than 30 bp of the substrate asymmetrically across the cleavage site. A docking model of the DNA-enzyme complex suggests that the endonuclease domain covers the 20 bp DNA duplex encompassing the cleavage site, whereas the Stirrup domain could make an additional contact with another upstream 10 bp region. For the double-strand break, the two strands in the DNA duplex were cleaved by PI-PfuI with different efficiencies. We suggest that the cleavage of each strand is catalyzed by each of the two non-equivalent active sites.  相似文献   

14.
Zhang A  Gonzalez SM  Cantor EJ  Chong S 《Gene》2001,275(2):241-252
Affinity purification of recombinant proteins has been facilitated by fusion to a modified protein splicing element (intein). The fusion protein expression can be further improved by fusion to a mini-intein, i.e. an intein that lacks an endonuclease domain. We synthesized three mini-inteins using overlapping oligonucleotides to incorporate Escherichia coli optimized codons and allow convenient insertion of an affinity tag between the intein (predicted) N- and C-terminal fragments. After examining the splicing and cleavage activities of the synthesized mini-inteins, we chose the mini-intein most efficient in thiol-induced N-terminal cleavage for constructing a novel intein fusion system. In this system, green fluorescent protein (GFP) was fused to the C-terminus of the affinity-tagged mini-intein whose N-terminus was fused to a target protein. The design of the system allowed easy monitoring of soluble fusion protein expression by following GFP fluorescence, and rapid purification of the target protein through the intein-mediated cleavage reaction. A total of 17 target proteins were tested in this intein-GFP fusion system. Our data demonstrated that the fluorescence of the induced cells could be used to measure soluble expression of the intein fusion proteins and efficient intein cleavage activity. The final yield of the target proteins exhibited a linear relationship with whole cell fluorescence. The intein-GFP system may provide a simple route for monitoring real time soluble protein expression, predicting final product yields, and screening the expression of a large number of recombinant proteins for rapid purification in high throughput applications.  相似文献   

15.
Protein-splicing inteins are widespread in nature and have found many applications in protein research and engineering. The mechanism of protein splicing typically requires a nucleophilic amino acid residue at both position 1 (first residue of intein) and position +1 (first residue after intein), however it was not clear whether or how the three different nucleophilic residues (Cys, Ser, and Thr) would work differently at these two positions. To use intein in a target protein of interest, one needs to choose an intein insertion site to have a nucleophilic residue at position +1, therefore it is desirable to know what nucleophilic residue(s) are preferred by different inteins. In this study we began with a statistical analysis of known inteins, which showed an unequal distribution of the three nucleophilic residues at positions 1 and +1, and then subjected six different mini-inteins to site-directed mutagenesis to systematically test the functionality of the three nucleophilic residues at the two positions. At position 1, most natural inteins had Cys and none had Thr. When the Cys at position 1 of the six inteins was mutated to Ser and Thr, the splicing activity was abolished in all except one case. At position +1, Cys and Ser were nearly equally abundant in natural inteins, and they were found to be functionally interchangeable in the six inteins of this study. When the two positions were studied as 1/+1 combination, the Cys/Ser combination was abundant in natural inteins, whereas the Ser/Cys combination was conspicuously absent. Similarly, all of the six inteins of this study spliced with the Cys/Ser combination, whereas none spliced with the Ser/Cys combination. These findings have interesting implications on the mechanism of splicing and the selection of intein insertion sites, and they also produced two rare mini-inteins that could splice with Thr at position +1.  相似文献   

16.
Protein splicing is a self-catalyzed process involving the excision of an intervening polypeptide sequence, the intein, and joining of the flanking polypeptide sequences, the extein, by a peptide bond. We have studied the in vitro splicing of erythropoietin (EPO) using a truncated form of the Mycobacterium tuberculosis RecA mini-intein in which the homing endonuclease domain was replaced with a hexahistidine sequence (His-tag). The intein was inserted adjacent to cysteine residues to assure that the spliced product had the natural amino acid sequence. When expressed in Escherichia coli, intein-containing EPO was found entirely as inclusion bodies but could be refolded in soluble form in the presence of 0.5 M arginine. Protein splicing of the refolded protein could be induced with a reducing agent such as DTT or tris(2-carboxyethyl)phosphine and led to the formation of EPO and mini-intein along with some cleavage products. Protein splicing mediated by the RecA intein requires the presence of a cysteine residue adjacent to the intein insertion site. We compared the efficiencies of protein splicing adjacent to three of the four cysteine residues of EPO (Cys29, Cys33 and Cys161) and found that insertion of intein adjacent to Cys29 allowed far more efficient protein splicing than insertion adjacent to Cys33 or Cys161. For ease of purification, our experiments involved a His-tagged EPO fusion protein and a His-tagged intein and the spliced products (25 kDa EPO and 24 kDa mini-intein) were identified by Western blotting using anti-EPO and anti-His-tag antibodies and by mass spectroscopy. The optimal splicing yield at Cys29 (40%) occurred at pH 7.0 after refolding at 4 degrees C and splicing for 18 h at 25 degrees C in the presence of 1 mM DTT.  相似文献   

17.
Protein splicing is a post-translational process by which an intervening polypeptide, the intein, excises itself from the flanking polypeptides, the exteins, coupled to ligation of the exteins. The lon protease of Pyrococcus abyssi (Pab) is interrupted by an intein. When over-expressed as a fusion protein in Escherichia coli, the Pab lon protease intein can promote efficient protein splicing. Mutations that block individual steps of splicing generally do not lead to unproductive side reactions, suggesting that the intein tightly coordinates the splicing process. The intein can splice, although it has Lys in place of the highly conserved penultimate His, and mutants of the intein in the C-terminal region lead to the accumulation of stable branched-ester intermediate.  相似文献   

18.
Protein splicing mediated by inteins is a self-processive reaction leading to the excision of the internal intein domain from a precursor protein and the concomitant ligation of the flanking sequences, the extein-N and extein-C parts, thereby reconstituting the host protein. Most inteins employ a splicing pathway in which the upstream scissile peptide bond is consecutively rearranged into two thioester or oxoester intermediates before intein excision and rearrangement into the new peptide bond occurs. The catalytically critical amino acids involved at the two splice junctions are cysteine, serine, or threonine. Notably, the only potential combination not observed so far in any of the known or engineered inteins corresponds to the transesterification from an oxoester to a thioester, which suggested that this formal uphill reaction with regard to the thermodynamic stability might be incompatible with intein-mediated catalysis. We show that corresponding mutations also led to inactive gp41-1 and AceL-TerL inteins. We report the novel GOS-TerL split intein identified from metagenomic databases as the first intein harboring the combination of Ser1 and Cys+1 residues. Mutational analysis showed that its efficient splicing reaction indeed follows the shift from oxoester to thioester and thus represents a rare diversion from the canonical pathway. Furthermore, the GOS-TerL intein has an atypical split site close to the N terminus. The IntN fragment could be shortened from 37 to 28 amino acids and exchanged with the 25-amino acid IntN fragment from the AceL-TerL intein, indicating a high degree of promiscuity of the IntC fragment of the GOS-TerL intein.  相似文献   

19.
Yang J  Meng Q  Liu XQ 《Molecular microbiology》2004,51(4):1185-1192
Protein splicing inteins can be small as approximately 130 aa or up to approximately 600 aa when harbouring an endonuclease domain. Here we report the identification and characterization of an unusually large intein, 1650 aa long and the largest of known inteins, encoded by the replicative DNA helicase gene dnaB of the oceanic N2-fixing cyanobacterium Trichodesmium erythraeum. This Ter DnaB-1 intein co-exists with a 177-aa mini-intein in the same host protein and harbours large tandem repeats in which an 84-aa sequence is repeated 16 times. Comparison between this tandem repeats and the recently reported tandem repeats of Ter DnaE-1 intein revealed differences and similarities. The two tandem repeats, residing in different inteins of different host proteins, differ by 50% in size and have little sequence similarity. Tandem repeats in the Ter DnaB-1 intein were required for the protein splicing activity when tested in Escherichia coli, in contrast to tandem repeats of the Ter DnaE-1 intein that inhibited protein splicing. On the other hand, tandem repeats of both inteins are located in the same corresponding region of the intein sequence and have the same number of repeating units. These suggest that the two tandem repeats could be related but have diverged greatly in size, sequence and effect on protein splicing. Alternatively, they could have independent origins but evolved certain similarities because of common constraints in structure and maintenance.  相似文献   

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