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1.
报道了一种新的PCR突变方法,它不需要纯化大引物或设计特别的旁侧引物.利用一个诱变引物和两个测序引物(Tm≤58℃)作为旁侧引物.第一轮PCR产物12.5 μl直接加入到50 μl的第二轮PCR反应体系作为模板和大引物,在开始第二轮PCR反应时,增加在68℃退火温度下进行10个循环的不对称PCR,这一步骤大大提高了通过600 bp或800 bp大引物所导致的突变效率.结果表明,该方法的产物能够达到高保真、97%~98%的突变效率和高产率.  相似文献   

2.
目的:利用单个突变引物,在含人呼吸道合胞病毒F蛋白基因编码序列的pcDNA3.1(+)-F质粒中,通过单次环形PCR在特定序列位置引入定点突变。 方法: 以双链环状的pcDNA3.1(+)-F质粒DNA为模板,设计分别含有三种目的突变N70Q, I431N, Q270T的三条单引物,分别进行单次PCR。用甲基化DNA特异的限制性内切酶Dpn I处理PCR产物后转化大肠杆菌DH5α,进行克隆筛选,酶切鉴定和测序分析。 结果: 酶切鉴定结果和测序结果均符合预期,利用单引物PCR法成功在含人呼吸道合胞病毒F蛋白基因编码序列的pcDNA3.1(+)-F质粒DNA 中引入了单碱基突变、两个间隔碱基突变及相邻三碱基突变三种目的突变。 结论: 单引物PCR法解决了常规定点突变方法中多个PCR反应,程序繁琐及突变效率低等问题,是一种简便、快速、有效的基因工程定点突变新方法。  相似文献   

3.
目的:利用单个突变引物,在含人呼吸道合胞病毒F蛋白基因编码序列的pc DNA3.1(+)-F质粒中,通过单次环形PCR在特定序列位置引入定点突变。方法:以双链环状的pc DNA3.1(+)-F质粒DNA为模板,设计分别含有三种目的突变N70Q,I431N,Q270T的三条单引物,分别进行单次PCR。用甲基化DNA特异的限制性内切酶Dpn I处理PCR产物后转化大肠杆菌DH5α,进行克隆筛选,酶切鉴定和测序分析。结果:酶切鉴定结果和测序结果均符合预期,利用单引物PCR法成功在含人呼吸道合胞病毒F蛋白基因编码序列的pc DNA3.1(+)-F质粒DNA中引入了单碱基突变、两个间隔碱基突变及相邻三碱基突变三种目的突变。结论:单引物PCR法解决了常规定点突变方法中多个PCR反应,程序繁琐及突变效率低等问题,是一种简便、快速、有效的基因工程定点突变新方法。  相似文献   

4.
管峰  杨利国  艾君涛  刘守仁  石国庆 《遗传》2005,27(4):579-583
四引物ARMS PCR是检测SNP有效、快速、简便的方法.绵羊BMPR-lB基因是控制Booroola绵羊多胎性状的主效基因,此研究目的在于建立一种对BMPR-IB基因四引物ARMS PCR检测方法.根据四引物ARMS PCR技术原理,在绵羊BMPR-IB基因突变位点(A746G)设计一对特异性引物,并在突变点两侧设计一对参照引物,用来扩增含有突变点的DNA片段,可在一步PCR反应中根据电泳图谱准确判断绵羊个体的BMPR-IB基因型,对比PCR-RFLP检测结果表明,所建立的方法简单,操作简便,大大提高了检测效率.  相似文献   

5.
亲和力是影响改型单链抗体应用于临床的重要因素之一.利用巨型引物PCR定点诱变方法,设计并化学合成出两组含多个突变位点的简并引物,在第一轮PCR中使用简并引物分别扩增出含突变碱基的两条特异性的DNA片段,即巨型引物,将其经琼脂糖凝胶电泳分离纯化后,作为3′和5′的两端引物应用于第二轮PCR反应中.通过改变标准PCR反应条件,调整引物与模板的浓度,扩增出特异性较强的目的DNA条带.PCR产物经回收后,进行DNA测序.测序结果表明利用该方法扩增得到特异的抗CD3改型单链抗体的突变体库.  相似文献   

6.
基于PCR的实验策略在生物工程研究中具有广泛应用,如定点突变(site-directed mutagenesis,SDM),DNA拼接和载体构建。引物设计是这类实验技术中的关键一环,因其直接影响扩增效率和PCR产物的拼合。在嵌合式引物设计方法(一对突变引物在5'端具有互补序列)的基础上,开发了一个在线工具Primer Spanner(PS),可简单高效获得设计定点突变引物。PS可应用于单碱基或连续多碱基替换、插入、敲除等突变形式。通过大量突变实验与测序验证,结果表明该工具设计的引物进行的定点突变效果良好1)。  相似文献   

7.
多重PCR技术广泛应用于多个研究领域,其中引物设计及扩增条件是提高多重PCR实验效率的关键因素.为探讨优化多重PCR实验的方法,以小鼠5个看家基因为研究对象,使用实验室新近开发的MPprimer程序设计多重PCR引物,并通过改变多种反应条件来优化多重PCR实验.结果表明,MPprimer程序能够设计出理想的多重PCR引物,并且通过对退火温度及延伸时间进行优化,可显著提高多重PCR实验效率,对于提高基因表达的规模化检测能力具有积极的促进作用.  相似文献   

8.
报道了一种新的组合多位点突变策略,通过单管中三阶段聚合酶链式反应(PCR)得以实现。在第一阶段,PCR扩增出多位点突变大引物,然后在第二阶段延伸大引物,在第三阶段获得全长突变基因序列。基于退火温度与热循环参数的组合大引物反应的优化,三个阶段中退火温度差异小(低于10°C),成功扩增出多位点突变基因序列和比邻突变序列。是一种简单、高效的多位点突变方法。  相似文献   

9.
定点诱变(site-directedmutagenesis,SDM)就是指在基因的特定位点引入突变,已广泛应用于基因表达调控、基因结构与功能以及蛋白质性质等诸多研究领域。产生SDM的方法很多,传统的方法一般要求制备单链环状DNA和复杂的亚克隆步骤。然而,运用PCR技术在克隆化基因中导入序列突变则更为方便,已有多种基于PCR的SDM技术,较常采用的主要有四引物和三引物介导的两次PCR方法。一、四引物PCR介导的SDM较早应用于SDM的是四引物PCR,常见的有两种方式[1,2]。最初的方法要求两个侧翼的通用引物和两个反向部分重叠的突变引物[1]。首…  相似文献   

10.
为在研究工作中提高制作目标基因多位点突变体的效率,对常规重叠延伸PCR进行适当改进:对于相距较近的两个突变位点,只需设计一对突变引物各自涵盖其中一个位点即可一次突变;对于相距较远的两个位点,可以采用三片段重叠延伸PCR的办法解决;两者结合则可一次性突变多个位点。以制作RBCT的6位点突变体PSM6为例,利用上述策略,设计两对突变引物;采用OE-PCR法,第一轮PCR扩增出三个片段,第二轮PCR同时利用三片段重叠延伸产物作为模板扩增出目标基因突变体,再按常规分子克隆方法将其连入质粒载体。经测序检测,发现得到了预期的目标基因多位点突变体。因此,采用灵活的引物设计策略,结合多片段重叠延伸PCR即可一次性制作基因的多位点突变体,此方案可解决研究工作中大多数多位点突变问题。  相似文献   

11.
基因突变对生命的进化具有重要意义,针对质粒的DNA定点诱变技术也是基因工程、蛋白质工程研究中的重要手段之一。为了提高质粒定点诱变的效率,本研究利用引物部分重叠的设计方案,使用Tm值相对固定的引物设计模式,将同一引物分为重叠区(Tm=50±2℃)和非重叠区(Tm=60±2℃),并在严格控制模板用量(2 pg/kb)的基础上,通过20个PCR循环对目标质粒进行定点诱变扩增,随后取0.5 μL产物直接用于转化。在FastPfu Fly酶系中,利用此法构建了6个含碱基替换、缺失和插入的质粒,均获得成功,突变效率可达96%以上,阳性克隆获得数达70个以上。此外,利用4种不同PCR酶系对该法的适用性进行了评价,结果表明突变效率均可达93%以上,阳性克隆获得数均在10个以上。通过适当增加PCR模板用量(10 pg/kb)并使用纯化后的PCR产物进行转化,该法可适用于转化效率大于106(cfu/μg)的任意感受态细胞,对应的突变效率可大于91%,阳性克隆获得数大于20。根据本法的作用原理,该方案适合质粒中10~20 bp(因重叠区GC含量及碱基序列的不同而改变)以内的任意碱基替换和插入,以及任意长度的DNA片段缺失。且具有通用性强、耗时少、诱变成功率高、成本低、对感受态及转化效率无特殊要求等优点,适合各实验室的日常研究使用。  相似文献   

12.
The QuikChangeTM site-directed mutagenesis method is popular but imperfect. An improvement by using partially overlapping primers has been reported several times; however, it is incompatible with the proposed mechanism. The QuikChangeTM method using complementary primers is proposed to linearly amplify a target plasmid with the products annealing to produce double-stranded DNA molecules with 5′-overhangs. The overhang annealing is supposed to form circular plasmids with staggered breaks, which can be repaired in Escherichia coli after transformation. Here, we demonstrated that the PCR enzyme fills the 5′-overhangs in the early cycles, and the product is then used as the template for exponential amplification. The linear DNA molecules with homologous ends are joined to generate the plasmid with the desired mutations through homologous recombination in E. coli. The correct understanding is important to method improvements, guiding us to use partially overlapping primers and Phusion DNA polymerase for site-directed mutagenesis. Phusion did not amplify a plasmid with complementary primers but used partially overlapping primers to amplify the plasmid, producing linear DNA molecules with homologous ends for site-directed mutagenesis.  相似文献   

13.
Site-directed mutagenesis is a powerful tool to explore the structure-function relationship of proteins, but most traditional methods rely on the mutation of only one site at a time and efficiencies drop drastically when more than three sites are targeted simultaneously. Many applications in functional proteomics and genetic engineering, including codon optimization for heterologous expression, generation of cysteine-less proteins, and alanine-scanning mutagenesis, would greatly benefit from a multiple-site mutagenesis method with high efficiency. Here we describe the development of a simple and rapid method for site-directed mutagenesis of more than 10 sites simultaneously with up to 100% efficiency. The method uses two terminal tailed primers with a unique 25-nucleotide tail each that are simultaneously annealed to template DNA together with the set of mutagenic primers in between. Following synthesis of the mutant strand by primer extension and ligation with T4 DNA polymerase and ligase, the unique mutant strand-specific tails of the terminal primers are used as anchors to specifically amplify the mutant strand by high-fidelity polymerase chain reaction. We have employed this novel method to mutate simultaneously all 9 and 11 CUG leucine codons of the Hyg and Neo resistance genes, respectively, to the Candida albicans-friendly UUG leucine codon at 100% efficiency.  相似文献   

14.
PCR-based mutagenesis is a cornerstone of molecular biology and protein engineering studies. Herein we describe a rapid and highly efficient mutagenesis method using type IIs restriction enzymes. A template gene is amplified into two separate PCR fragments using two pairs of anchor and mutagenic primers. Mutated sequences are located near the recognition site of a type IIs restriction enzyme. After digestion of two fragments with a type IIs enzyme, exposed cohesive ends that are complementary to each other are then ligated together to generate a mutated gene. We applied this method to introduce multiple site-directed mutations in EGFP and Bcl-2 family genes and observed perfect mutagenesis efficiency at the desired sites. This efficient and cost-effective mutagenesis method can be applied to a wide variety of structural and functional studies in cell physiology. Type IIs restriction enzyme; enhanced green fluorescent protein; Bcl-2  相似文献   

15.
Site-specific mutagenesis and directional subcloning were accomplished by using the polymerase chain reaction to generate products that can recombine to form circular DNA. This DNA was transfected into E. coli without phosphorylation of primers, restriction enzyme digestion or ligation. Specifically, the polymerase chain reaction was used to generate products that when combined, denatured and reannealed, form double-stranded DNA with discrete, cohesive single-stranded ends. The generation of these cohesive ends of DNA permits the formation of precise, directional DNA joints without dependence on enzyme restriction sites. The primers were designed such that these cohesive single-stranded ends annealed to form circular DNA. The recombinant of interest was generated following only 14 amplification cycles. These recombinant circles of DNA were directly transfected into E. coli. In the mutagenesis protocol, the desired mutant was obtained at 83%-100% efficiency. Unwanted mutations were not detected, indicating a less than 0.025% nucleotide misincorporation frequency. In the directional subcloning protocol, inserts were positioned precisely in the recipient plasmid and were in the correct orientation. One unwanted mutation was detected after sequencing 900 bases, indicating a 0.11% nucleotide misincorporation frequency. Each manipulation, from setting up for the DNA amplification to transfection into E. coli. can easily be accomplished in one day.  相似文献   

16.
A rapid and efficient method to perform site-directed mutagenesis based on an improved version of overlap extension by polymerase chain reaction (OE-PCR) is demonstrated in this paper. For this method, which we name modified (M)OE-PCR, there are five steps: (1) synthesis of individual DNA fragments of interest (with average 20-bp overlap between adjacent fragments) by PCR with high-fidelity pfu DNA polymerase, (2) double-mixing (every two adjacent fragments are mixed to implement OE-PCR without primers), (3) pre-extension (the teams above are mixed to obtain full-length reassembled DNA by OE-PCR without primers), (4) synthesis of the entire DNA of interest by PCR with outermost primers and template DNA from step 3, (5) post-extension (ten cycles of PCR at 72°C for annealing and extension are implemented). The method is rapid, simple and error-free. It provides an efficient choice, especially for multiple-site mutagenesis of DNAs; and it can theoretically be applied to the modification of any DNA fragment. Using the MOE-PCR method, we have successfully obtained a modified sam1 gene with eight rare codons optimized simultaneously. Electronic Supplementary Material Supplementary material is available for this article at .  相似文献   

17.
Overlap extension represents a new approach to genetic engineering. Complementary oligodeoxyribonucleotide (oligo) primers and the polymerase chain reaction are used to generate two DNA fragments having overlapping ends. These fragments are combined in a subsequent 'fusion' reaction in which the overlapping ends anneal, allowing the 3' overlap of each strand to serve as a primer for the 3' extension of the complementary strand. The resulting fusion product is amplified further by PCR. Specific alterations in the nucleotide (nt) sequence can be introduced by incorporating nucleotide changes into the overlapping oligo primers. Using this technique of site-directed mutagenesis, three variants of a mouse major histocompatibility complex class-I gene have been generated, cloned and analyzed. Screening of mutant clones revealed at least a 98% efficiency of mutagenesis. All clones sequenced contained the desired mutations, and a low frequency of random substitution estimated to occur at approx. 1 in 4000 nt was detected. This method represents a significant improvement over standard methods of site-directed mutagenesis because it is much faster, simpler and approaches 100% efficiency in the generation of mutant product.  相似文献   

18.
H Pues  B Holz    E Weinhold 《Nucleic acids research》1997,25(6):1303-1304
A quick in vitro mutagenesis method for the construction of nested deletion libraries was developed. Many deletions can be obtained in a single inverse PCR (IPCR) by replacing one of the two primers with a mixture of 5'-truncated oligodeoxynucleotides. Since chemical DNA synthesis proceeds from the 3'to the 5'end, such a mixture of 5'-truncated oligodeoxynucleotides can easily be obtained in a single automated DNA synthesis under reduced coupling efficiency. This deletion mutagenesis method yields many different deletions in a defined short DNA segment and is, therefore, best suited for a deletion analysis at base pair level. Applications might include functional analysis of regulatory DNA segments and protein engineering work that requires libraries for the expression of N-terminal, C-terminal or internal truncated proteins as well as fusion proteins having different splice sites.  相似文献   

19.
Site-directed mutagenesis is a very important technique in molecular biological researches. We have developed a new method for long distance multiple-site plasmid mutation by one-step PCR using non-overlap primers. These primers were carefully designed and contained desired mutations in the middle of the primers flanked with 18–25 bp of correct sequence. One pair of the primers was able to generate a short megaprimer. Decreases in the concentrations of these primers increased efficiency of the multiple-site plasmid mutation. All of the mutant PCRs were performed at a common annealing temperature at 55 °C. This method could be widely used in all multiple-site plasmid mutations.  相似文献   

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