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1.
用Red/ET重组酶构建基因打靶载体   总被引:6,自引:0,他引:6  
基因敲除的小鼠模型是研究基因功能的一种重要资源。采用常规分子克隆的方法建立基因敲除的打靶载体存在构建效率低和难以获得长片段同源臂的缺点。因此快速高效地构建打靶载体,已成为获得特定基因敲除动物模型的关键环节。为研究Resp18未知功能分泌肽基因,应用一种新的DNA工程平台——Red/ET同源重组技术来构建其打靶载体,并比较了这一方法在构建不同长度同源臂中的效率。研究表明,Red/ET重组方法构建打靶载体具有很高的效率,可以获得较长的同源臂,并且不会引入突变,有助于获得更高的打靶效率。因此Red/ET重组为构建打靶载体提供了一种新的可靠的方法。  相似文献   

2.
利用Red重组系统快速构建基因打靶载体   总被引:1,自引:0,他引:1  
基因敲除小鼠模型是在哺乳动物体内研究基因功能最可靠的方法之一。利用常规的分子克隆的方法构建基因打靶载体往往工作周期长,对于难度特别大的基因有时甚至无法完成打靶载体的构建。通过合理应用Red重组系统和低拷贝中间载体,利用50bp的同源重组序列直接从BAC载体中克隆了长片段的小鼠基因组序列;将得到的基因组序列再次通过重组和改造,构建了Gpr56等基因的完全敲除并带有报告基因的打靶载体,实现了打靶载体的快速构建。  相似文献   

3.
目的:用缺口修复等技术构建Myostatin(肌肉生长抑制素,MSTN)基因打靶载体,并对大白猪胎儿成纤维体细胞进行转染,获得基因敲除细胞。方法与结果:首先构建用于MSTN基因同源长臂(LA)的抓捕载体,然后在大肠杆菌内利用Red同源重组系统介导的缺口修复,从含大白猪MSTN基因座的细菌人工染色体上亚克隆9.9 kb的LA到抓捕载体上,经过部分序列测定,同源性为100%;通过PCR获得1.4 kb的同源短臂(SA);将LA和SA连入载体pLOXP,构建含有neo和tk正负筛选标记基因的MSTN基因打靶载体pLOXP-MSTN-KO;将线性化的pLOXP-MSTN-KO通过电转染整合到大白猪胎儿成纤维细胞基因组中,利用G418和丙氧鸟苷进行药物筛选,获得抗性细胞克隆890个,通过PCR和DNA测序鉴定获得基因敲除的细胞克隆4个。结论:构建了有效的MSTN基因打靶载体,通过转染获得基因敲除细胞,为利用体细胞核移植制备MSTN基因敲除猪奠定了基础。  相似文献   

4.
利用Red系统快速敲除家蚕核型多角体病毒orf60基因   总被引:1,自引:0,他引:1       下载免费PDF全文
用Red重组系统和最近构建的家蚕核型多角体病毒(BmNPV)bacmid在大肠杆菌BW25113中快速地敲除BmNPVorf60基因。从大肠杆菌BmDH10Bac中提取BmNPVbacmid,将其电转化到含有质粒pKD46(能表达Red重组酶)的大肠杆菌菌株BW25113中,获得了可用于BmNPV基因打靶的菌株BW25113-Bac。设计一对长63bp的引物(5′端为orf60基因的左右同源臂,长45bp;3′端长18bp,为氯霉素抗性基因(cat)的首尾序列),以pKD3质粒(含cat)为模板,PCR扩增携带orf60左右同源臂的cat,即打靶线性化片段。将该线性化片段电转入BW25113-Bac菌株,在Red重组酶的作用下,线性化片段与BmNPVbacmid中的orf60基因发生同源重组。设计3对特异引物,用PCR方法证明cat成功地替换了BmNPVorf60基因。重组bacmid DNA转染BmN细胞后,Western blot分析未检测到orf60基因的表达。  相似文献   

5.
BAI1(脑血管生成抑制因子1)因其具有抑制血管生成的作用而得名,研究表明肿瘤的发生可能与BAI1的低表达有关.为了进一步探索BAI1的作用机制,运用改良的Red重组系统和低拷贝中间载体,利用50 bp的同源重组序列直接从BAC载体中克隆长片段的小鼠基因组序列;将得到的基因组序列再次通过重组和改造,构建了BAI1基因的完全敲除并带有报告基因的打靶载体,为后续的构建BAI1基因敲除小鼠模型、在动物体内研究基因功能奠定了基础.  相似文献   

6.
利用EL350基因工程菌进行同源重组,成功进行基因敲除已有报道,但利用该系统进行兔次黄嘌呤-鸟嘌呤磷酸核糖转移酶(Hypoxanthine guanine phosphoribosyl transferase,HPRT)基因突变和基因打靶方面的研究还没有报道。本实验首先在已经筛选到含有兔全长HPRT基因BAC克隆(LBNL1-304M19)的基础上,利用Red重组系统,通过Gap-Repair方式从此克隆上将一段47Kb无启动子的HPRT基因组片段(不含有第1个外显子)克隆到pBACLinkSp质粒上,产生pBACLinkSp-rHPRT质粒。然后基于pBACLinkSp-rHPRT质粒,设计不同的同源臂,从而删除了HPRT基因的不同编码区,成功构建了三个不同的HPRT基因打靶载体。同时对利用同源重组技术敲除不同大小的DNA片段的效率进行了研究。基于本实验所构建的三个不同的兔HPRT基因打靶载体,为探索兔成纤维细胞和胚胎干细胞基因打靶的适宜条件,及进一步获得兔HPRT基因敲除动物疾病模型奠定了基础。  相似文献   

7.
Red/ET重组及其在生物医学中的应用   总被引:3,自引:2,他引:1  
王军平  张友明   《生物工程学报》2005,21(3):502-506
通过应用Rac噬菌体的RecE RecT和λ噬菌体的RedαRedβ系统而建立的DNA工程平台———Red ET重组,是一种不依赖于限制性内切酶的分子克隆新技术。运用该技术能够介导PCR产物或寡核苷酸对目标基因进行剪切、插入、融合及突变等多种操作,在生物医学领域里具有广阔的应用前景,尤其在基因组功能研究中对BACs、PACs和细菌染色体的打靶修饰以及基因敲除动物DNA靶分子的快速构建等方面最有效。随着Red ET重组的推广与应用,该技术本身也在不断被改进,在工作效率得到显著提高的同时,其操作也变得更加简单、省时、省力。结合自身的一些研究结果,对Red ET重组的技术特点、发展现状和在生物医学中的应用进行了详细阐述。  相似文献   

8.
利用λRed重组系统敲除伤寒沙门氏菌rfaH基因   总被引:1,自引:0,他引:1  
目的:利用λRed重组系统敲除伤寒沙门氏菌的rfaH基因。方法:以伤寒沙门氏菌(Salmonella typhi Ty2,S.ty2)基因组为模板扩增得到的同源臂,与两端带有FRT位点的卡那霉素抗性基因片段共同构建同源重组载体;以重组载体为模板扩增打靶片段,将其转化S.ty2;在抗生素压力和λRed重组系统帮助下,打靶片段和菌体基因组发生同源重组,通过卡那抗性筛选得到带有抗性标记的重组菌;转入重组酶表达质粒pCP20以去除抗性标记,得到保留单一FRT位点的突变菌株;通过PCR鉴定重组菌,并经透射电子显微镜分析表型。结果:在S.ty2中敲除了rfaH基因,经PCR扩增和序列测定正确;初步的表型分析表明突变体的鞭毛合成显著减少。结论:获得了S.ty2突变株,为将沙门氏菌进一步减毒成为疫苗表达载体奠定了基础。  相似文献   

9.
重组工程系统研究进展   总被引:2,自引:0,他引:2  
大肠杆菌的同源重组依靠内源性的RecA蛋白。RecBCD降解双链线性DNA分子,因此必须构建环状质粒打靶载体才能完成体内重组,操作过程繁琐,所需同源臂长。最近建立起的依赖于Rac噬菌体的ET重组系统和基于入噬菌体的Red重组系统,可有效利用线性DNA片段作为打靶分子,对大肠杆菌染色体DNA和BAC、PAC载体中包含的真核细胞基因组DNA进行基因敲除、敲入、替换、单碱基突变及体内基因克隆等修饰。这2种系统重组效率高,用PCR方法便可合成双链线性DNA打靶分子,不需要限制酶和连接酶,操作过程简单、精确、快速、经济,大大缩短了构建打靶载体的时间,成为功能基因组研究的有力工具。  相似文献   

10.
利用λRed重组系统和pBAD原核表达载体构建鼠伤寒沙门菌spvBC质粒毒力基因修饰菌株,为深入探究沙门菌毒力基因spv的功能和致病机制及宿主抗感染免疫提供工具菌。以pKD4为模板,PCR扩增含spvBC同源臂的卡那霉素抗性基因以构建同源打靶片段,再将其电转入含有质粒pKD46的鼠伤寒沙门菌中进行同源重组,随后将质粒pCP20电转导入阳性转化子,消除卡那霉素抗性基因,PCR鉴定敲除株的构建。PCR扩增含酶切位点的spvBC基因片段,扩增产物与原核表达载体pBAD/gⅢ分别双酶切后连接构建pBAD-spvBC重组质粒,PCR筛选阳性菌落并测序鉴定。将构建成功的pBAD-spvBC重组质粒电转导入spvBC敲除株中,Western blot测定不同浓度L-阿拉伯糖诱导SpvB和SpvC蛋白表达情况。PCR结果表明鼠伤寒沙门菌spvBC基因敲除成功;PCR及测序结果表明pBAD-spvBC重组质粒构建成功,Western blot结果表明13 mmol/L L-阿拉伯糖可诱导SpvB和SpvC蛋白正常表达。λRed重组系统可用于沙门菌质粒上大片段基因的敲除,pBAD原核表达载体可用于沙门菌质粒上大片段基因的回补,丰富了细菌质粒的基因修饰和编辑策略。  相似文献   

11.
The study of the function of novel human genes has become an increasingly active academic field with the gene-knockout (KO) mouse model forming the basis of this study. Because of the low efficiency of recombination of targeting vector constructed using the traditional method, the KO mouse model has become the key step in the construction of a targeting vectors, both economically and efficiently. To study the function of a novel gene (Resp18), a novel DNA engineering platform, Red/ET recombination, was introduced to construct the Resp18 targeting vector. Red/ET recombineering differs from the conventional methods of vector construction (e.g., PCR, restriction enzyme digestion, and ligation), and genetic modification is accomplished by acquisition, insertion, fusion, or replacement of the target gene through small fragments-mediated homologous recombination. At present, Resp18 targeting vectors constructed using three strategies mentioned above were successfully released through two homologous recombination processes of retrieval and neo-targeting. Red/ET recombination has the advantage of producing genes with longer homology regions without mutation.  相似文献   

12.
Aims: In this study, we explored the possibility of construction of a ‘universal targeting vector’ by Red/ET recombination to inactivate L gene encoding 3‐amino‐5‐hydroxybenzoic acid (AHBA)‐oxidoreductase in AHBA biosynthetic gene cluster to facilitate the detection of ansamycins production in actinomycetes. Methods and Results: Based on the conserved regions of linked AHBA synthase (K), oxidoreductase (L) and phosphatase (M) gene clusters, degenerate primers were designed and PCR was performed to detect KLM gene clusters within 33 AHBA synthase gene‐positive actinomycetes strains. Among them, 22 KLM gene cluster‐positive strains were identified. A ‘universal targeting vector’ was further constructed using the 50‐nt homologous sequences chosen from four strains internal L gene in KLM gene clusters through Red/ET recombination. The L gene from nine of the KLM gene cluster‐positive actinomycetes strains was inactivated by insertion of a kanamycin (Km) resistance marker into its internal region from the ‘universal targeting vector’. By comparison of the metabolites produced in parent strains with those in L gene‐inactivated mutants, we demonstrated the possible ansamycins production produced by these strains. One strain (4089) was proved to be a geldanamycin producer. Three strains (3‐20, 7‐32 and 8‐32) were identified as potential triene‐ansamycins producers. Another strain (3‐27) was possible to be a streptovaricin C producer. Strains 24‐100 and 4‐124 might be served as ansamitocin‐like producers. Conclusions: The results confirmed the feasibility that a ‘universal targeting vector’ could be constructed through Red/ET recombination using the conserved regions of KLM gene clusters to detect ansamycins production in actinomycetes. Significance and Impact of the Study: The ‘universal targeting vector’ provides a rapid approach in certain degree to detect the potential ansamycin producers from the 22 KLM gene cluster‐positive actinomycetes strains.  相似文献   

13.
根据重组工程原理,建立了一种用于构建重组质粒的“neo/E”(抗生素/单酶切位点)选择与反选择新方法。首先采用PCR方法扩增出线性打靶分子:然后进行两步体内同源重组,(1)neo/E基因敲入,重组子呈现neo抗性表型;(2)目的基因替换M/E基因。用限制酶E消化时,发生第二步重组的DNA分子不能被消化,能够转化大肠杆菌受体菌DH5α。应用该方法构建了重组质粒pGL3-Basic PC1900T。PCR及测序鉴定证明:外源片段重组率为20%,所建立的重组工程选择与反选择新技术为质粒构建提供了新的解决方案。  相似文献   

14.
Gene targeting into mammalian genomes by means of homologous recombination is a powerful technique for analyzing gene function through generation of transgenic animals. Hundreds of mouse strains carrying targeted alleles have already been created and recent modifications of the technology, in particular generation of conditional alleles, have extended the usefulness of the methodology for a variety of special purposes. Even though the standard protocols, including the construction of gene-targeting vector plasmids, are relatively straightforward, they typically involve time-consuming and laborious gene mapping and/or sequencing steps. To produce various types of gene-targeting constructions rapidly and with minimum effort, we developed a strategy, that utilizes a highly efficient in vitro transposition reaction of phage Mu, and tested it in a targeting of the mouse Kcc2 gene locus. A vast number and different types of targeting constructions can be generated simultaneously with little or no prior sequence knowledge of the gene locus of interest. This quick and efficient general strategy will facilitate easy generation of null, potentially hypomorphic, and conditional alleles. Especially useful it will be in the cases when effects of several exons within a given gene are to be studied, a task that necessarily will involve generation of multiple constructions. The strategy extends the use of diverse recombination reactions for advanced genome engineering and complements existing recombination-based approaches for generation of gene-targeting constructions.  相似文献   

15.
薛可  李峰  罗光彬  黄玮玮  陈学进 《遗传》2007,29(5):570-574
利用EL350基因工程菌进行同源重组, 成功进行基因敲除已有报道, 但利用该系统进行乳腺生物反应器质粒构建的研究却未见报道。实验采用含有完整的牛b 酪蛋白基因的CSN2质粒作为基因打靶的载体, 设计不同的同源臂, 成功地敲除了b 酪蛋白基因的编码区。并且同时利用同源重组技术对敲除不同大小的DNA片段的效率进行了研究。为进一步利用CSN2质粒两端的调控序列, 插入新的基因, 研究其表达功能, 或者进行乳腺生物反应器的研究奠定了基础。  相似文献   

16.
重组工程是近年来建立的一种基于高效率体内同源重组的新型遗传工程技术,可应用于靶DNA序列的敲入、敲除和基因克隆等。在应用重组工程技术进行基因亚克隆时发现,体外重叠PCR法难以获得高质量的目的DNA打靶片段,严重影响重组效率。为了解决上述问题,根据Red重组酶介导的体内同源重组工作原理进行了技术改进。先用PCR方法合成egfp和kan两条末端互补的线性DNA片段,然后将其电击共转化进入携带Red重组酶和pcDNA3.1载体DNA的大肠杆菌DY331菌株内,经体内同源重组直接产生的pcDNA3.1—egfp-kan环状重组质粒DNA分子可通过抗生素标记筛选获得,阳性率可达到45%。瞬时转染pcDNA3.1-egfp-kan可获得绿色荧光蛋白在293细胞中的表达。  相似文献   

17.
Vectors used for gene targeting experiments usually consist of a selectable marker flanked by two regions of homology to the targeted gene. In a homologous recombination event, the selectable marker replaces an essential element of the target gene rendering it inactive. Other applications of gene targeting technology include gene replacement (knockins) and conditional vectors which allow for the generation of inducible or tissue-specific gene-targeting events. The assembly of gene-targeting vectors is generally a laborious process requiring considerable technical skill. The procedures presented here report the application of transposons as tools for the construction of targeting vectors. Two mini-Mu transposons were sequentially inserted by in vitro transposition at each side of the region targeted for deletion. One such transposon carries an antibiotic resistance marker suitable for selection in mammalian cells. A deletion is then generated between the two transposons either by LoxP-induced recombination or by restriction digestion followed by ligation. This deletion removes part of both transposons plus the targeted region in between, leaving a transposon carrying the selectable marker flanked by two arms which are homologous to the targeted gene. Targeting vectors constructed using these transposons were electroporated into embryonic stem cells and shown to be effective in gene-targeting events.  相似文献   

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