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1.
张瑾 《生物学通报》2013,(11):29-31
试将“聚合酶链反应(PCR)技术”选修内容,移到必修的“DNA的复制”之后,引导学生由DNA体内扩增类比推理DNA体外扩增,构建单元知识结构框架。运用科学史料,引导学生体验PCR原理和技术的形成过程,认同从科学灵感到技术实践是科学家的智慧结晶。  相似文献   

2.
古DNA实时荧光定量PCR实验中标准品的制备   总被引:1,自引:0,他引:1  
实时荧光定量PCR技术通过对PCR每一循环扩增产物的实时检测,可对模板的精确拷贝数进行绝对定量,从而用于古DNA实验中提取和扩增条件的比较和优化.本研究采用异硫氰酸胍碱裂解-SiO2吸附的方法,从采自黑龙江省的晚更新世斑鬣狗化石材料中提取得到了斑鬣狗线粒体基因组古DNA.经常规PCR扩增后,将纯化的扩增产物克隆到微生物体内使其大量复制,再用M13通用引物扩增出含少量外源DNA的古DNA目标片段,从而建立了适用于古DNA荧光定量PCR扩增的标准品的制备方法.经检测分析,运用该方法制备的标准品性质稳定,能够准确地指示反应体系中较为精确的古DNA模板拷贝数,从而反映古DNA的提取和扩增效率,用于比较并优化古DNA提取和扩增条件.  相似文献   

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<正>多聚酶链反应(PCR)类似体内DNA复制过程,在待扩增的“靶”或“模板”DNA双链分子的的两端各接一个引物,经一次循环后,可得到两个相同的双链靶DNA分子。DNA分子数随循环次数呈几何级数增长,30次循环后,靶DNA被放大2~(30)倍,其拷贝数可达10~9以上,在100ul PCB反应混合物中约产生2~3μ DNA。扩增的靶DNA分子长达10~18kb,但4kb抗更短的靶DNA最适宜PCR扩增,PCR能测出10~6基因组中的一个DNA拷贝。  相似文献   

4.
(一)复制、转录和翻译水平上蛋白质与核酸的相互作用蛋白质和核酸是组成生物体的两大重要物质。蛋白质是基因表达的产物,基因的表达离不开蛋白质。它们相互依存,彼此制约。蛋白质与核酸的相互作用存在于生物体内基因表达的各个水平之中。在DNA复制过程中,链的引发、延伸、终止所涉及的反应都由相应的酶催化,还需要许多具有调节功能的蛋白质对DNA复制进行调节。在大肠杆菌中,复制过程就需要三十多种蛋白质的协同作用。研究DNA聚合酶、拓扑异构酶、解链酶、解旋酶、连结酶等与复制有关的  相似文献   

5.
本文报告了Ⅱ型拓扑异构酶抑制剂——新生霉素对多瘤病毒DNA合成的抑制作用,发现新生霉素对细胞和病毒DNA的体外合成具有不同的抑制曲线。新生霉素在复制过程中抑制复制中间物转变成成熟的病毒DNA分子的过程,同时影响病毒DNA分子的负超螺旋密度。本文结果提示Ⅱ型拓扑异构酶是病毒DNA复制末期所必须的酶。  相似文献   

6.
摘要:【目的】揭示腾冲嗜热菌中两个单链DNA结合蛋白SSB2和SSB3的全新的底物结合功能及其不同的体内表达模式。【方法】利用腾冲嗜热菌复制起始位点附近的长度较短的单链DNA为底物,采用非变性聚丙烯酰胺凝胶电泳及western blot方法,研究SSB2和SSB3体外单链DNA结合特征和体内表达模式。【结果】SSB2 与35nt的复制起始区单链DNA(ssDNA)结合, 形成单个SSB2-DNA复合物;当与59 nt ssDNA结合时,可以随着蛋白浓度的递增形成一个或两个SSB2-DNA复合物;而与70n  相似文献   

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DNA聚合酶在DNA合成过程中需要的引物包括RNA引物、DNA自我引物和蛋白质引物3种类型。新DNA链(如冈崎片段)的复制多是在DNA模板上合成一段RNA引物,细小病毒利用其基因组末端的反向末端重复序列(ITRs)自我折叠成DNA引物,而一些DNA、RNA病毒及真菌质粒起始复制反应的引物则是蛋白质。以感染原核生物的噬菌体Phi29和真核DNA病毒腺病毒为例,从复制过程所涉及的蛋白质、对复制原点的识别、复制起始反应、新链的延伸、复制终止过程等方面详细阐述DNA病毒由蛋白质引发的复制机制,并对已商品化的Phi29 DNA聚合酶产品多重置换扩增及单细胞测序等的应用以及基于噬菌体Phi29蛋白质起始的最小复制系统体外扩增异源DNA等最新的应用研究作相关总结介绍。  相似文献   

9.
目的运用水压法复制HBV小鼠急性模型,用于研究双表达siRNA在小鼠体内对HBV复制的抑制作用。方法使用HBV质粒DNA对BALB/c小鼠进行尾静脉大剂量快速推注,获得急性HBV体内表达模型。同时使用相同方法对推注后的小鼠进行RNAi干预。对不同处理组动物的HBsAg、HBeAg、HBcAg和HBV DNA进行ELISA、免疫组织化学和实时定量RT-PCR检测。结果水压法复制HBV小鼠急性模型与HBV DNA感染剂量无明显相关。与单表达siRNA相比较,双表达siRNA对HBV抗原表达抑制较为明显。结论双表达siRNA不失为一种体内抑制HBV感染的一种策略。  相似文献   

10.
目的探讨乙型肝炎病毒感染者外周血PBMC中TLR mRNA与乙肝病毒复制的相关性。方法采用逆转录PCR检测外周血单个核细胞(PBMC)中TLR4 mRNA的含量,实时荧光定量Real Time PCR的方法检测HBV DNA,进行相关性分析。结果不同病毒载量组(〈1×103copies/μg DNA,1×103copies/μg DNA〈且〈1×105copies/μg DNA,〉1×105copies/μg DNA)TLR4 mRNA水平差异具有显著性(P〈0.01),HBV病毒载量的对数值与TLR4 mRNA的含量存在负相关(r=-0.537,P〈0.01)。TLR4 mRNA的相对表达量与患者的ALT、AST呈正相关(r=0.608、r=0.659,P〈0.01)。结论HBV在患者体内复制活跃、病毒载量增高与外周血单个核细胞TLR4mRNA的表达下调有关。  相似文献   

11.
Eukaryotic DNA polymerases in DNA replication and DNA repair   总被引:16,自引:0,他引:16  
DNA polymerases carry out a large variety of synthetic transactions during DNA replication, DNA recombination and DNA repair. Substrates for DNA polymerases vary from single nucleotide gaps to kilobase size gaps and from relatively simple gapped structures to complex replication forks in which two strands need to be replicated simultaneously. Consequently, one would expect the cell to have developed a well-defined set of DNA polymerases with each one uniquely adapted for a specific pathway. And to some degree this turns out to be the case. However, in addition we seem to find a large degree of cross-functionality of DNA polymerases in these different pathways. DNA polymerase α is almost exclusively required for the initiation of DNA replication and the priming of Okazaki fragments during elongation. In most organisms no specific repair role beyond that of checkpoint control has been assigned to this enzyme. DNA polymerase δ functions as a dimer and, therefore, may be responsible for both leading and lagging strand DNA replication. In addition, this enzyme is required for mismatch repair and, together with DNA polymerase ζ, for mutagenesis. The function of DNA polymerase ɛ in DNA replication may be restricted to that of Okazaki fragment maturation. In contrast, either polymerase δ or ɛ suffices for the repair of UV-induced damage. The role of DNA polymerase β in base-excision repair is well established for mammalian systems, but in yeast, DNA polymerase δ appears to fullfill that function. Received: 20 April 1998 / Accepted: 8 May 1998  相似文献   

12.
Accuracy of DNA polymerase-alpha in copying natural DNA   总被引:11,自引:1,他引:10       下载免费PDF全文
The fidelity of DNA polymerase-alpha from calf thymus (9S enzyme) in copying bacteriophage phi174am16 DNA in vitro has been determined from the frequency of production of different revertants. In the self-priming reaction we were able to measure the frequencies of base pairing mismatches during the course of replication on biasing the ratios of deoxynucleoside triphosphates. The frequency of dGTP:T, dGTP:G and dATP:G mismatches were 7.6 x 10(-5), 4.4 x 10(-5) and 2.8 x 10(-5), respectively, at equal concentrations of the deoxynucleoside triphosphates. dCTP:A, dGTP:A, dCTP:T and dTTP:T mismatches were below the limit of detection (<5 x 10(-6)). A synthetic dodecamer primer with a 3' end covering the first two bases of the amber codon was used to determine the misinsertion frequency of the first nucleotide incorporated. This gave a misinsertion frequency of 1.5 x 10(-4) for the dGTP:T mismatch, which is slightly higher than that observed from the pool bias studies. Further, it showed no sensitivity to biasing the nucleotide pool, suggesting a different mechanism for the incorporation of the first nucleotide. These data do not support 'energy-relay'-like models for achieving high accuracy in eukaryotes. The observed misinsertion frequencies were corrected for mismatch repair of the heteroduplexes during the transfection experiments by parallel experiments using a mismatched primer. This was synthesized to have the same G:T mismatch as produced in the preceding experiment.  相似文献   

13.
Taxol is a valuable plant-derived drug showing activity against various cancer types. Worldwide efforts had been made to overcome the supply problem, because the supply by isolation from the bark of the slow-growing yew trees is limited. Plant cell cultures as well as chemical and biotechnological semisynthesis are processes, which are intensively investigated for the production of taxanes paclitaxel (Taxol) and docetaxel (Taxotere) in the last few years. This article provides a comparison of the current research on taxane biosynthesis and production in yew cell cultures.  相似文献   

14.
Function of DNA Polymerase III in DNA Replication   总被引:30,自引:0,他引:30  
RECENTLY an in vitro system for DNA replication has been described. This system could be divided into two fractions (A and B) both of which are necessary for proper DNA replication1. Fraction A, the “soluble” fraction, contains those proteins which do not tightly bind to membranes or native DNA. Fraction B, the “insoluble” fraction, consists of DNA and membranous structures and proteins which are bound to either of them. It was shown that the soluble fraction contains at least one component which is needed at about in vivo concentration1. Studies of one such component are described in the following.  相似文献   

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DNA ligases in the repair and replication of DNA   总被引:1,自引:0,他引:1  
DNA ligases are critical enzymes of DNA metabolism. The reaction they catalyse (the joining of nicked DNA) is required in DNA replication and in DNA repair pathways that require the re-synthesis of DNA.Most organisms express DNA ligases powered by ATP, but eubacteria appear to be unique in having ligases driven by NAD(+). Interestingly, despite protein sequence and biochemical differences between the two classes of ligase, the structure of the adenylation domain is remarkably similar. Higher organisms express a variety of different ligases, which appear to be targetted to specific functions. DNA ligase I is required for Okazaki fragment joining and some repair pathways; DNA ligase II appears to be a degradation product of ligase III; DNA ligase III has several isoforms, which are involved in repair and recombination and DNA ligase IV is necessary for V(D)J recombination and non-homologous end-joining. Sequence and structural analysis of DNA ligases has shown that these enzymes are built around a common catalytic core, which is likely to be similar in three-dimensional structure to that of T7-bacteriophage ligase. The differences between the various ligases are likely to be mediated by regions outside of this common core, the structures of which are not known. Therefore, the determination of these structures, along with the structures of ligases bound to substrate DNAs and partner proteins ought to be seen as a priority.  相似文献   

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Present-day contamination can lead to false conclusions in ancient DNA studies. A number of methods are available to estimate contamination, which use a variety of signals and are appropriate for different types of data. Here an overview of currently available methods highlighting their strengths and weaknesses is provided, and a classification based on the signals used to estimate contamination is proposed. This overview aims at enabling researchers to choose the most appropriate methods for their dataset. Based on this classification, potential avenues for the further development of methods are discussed.  相似文献   

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元基因组测序方法为微生物研究提供了有力的工具。但其中的DNA提取过程,会不可避免地混入实验室中的空气微生物。这些微生物DNA,是否会对一些极微量的元基因组检测 (如皮肤样本等) 结果造成影响,有多大影响,仍没有明确结论。本研究首先收集了实验室空气样品,用16S rRNA引物建立了基于qPCR的标准曲线,并检测了在开放环境下提取DNA过程中可掺杂的环境微生物DNA量。然后在开放环境下提取纯水DNA样品并进行元基因组分析,以确定掺杂环境微生物的种类。最后分别在生物安全柜和实验室开放环境下提取皮肤样本,并用鸟枪测序方法对样本的微生物组成进行分析,以评估掺杂环境微生物对元基因组检测结果的影响。结果显示,在实验室开放环境的DNA提取过程中,环境微生物的DNA残留可达28.9 pg,可达某些极微量样本DNA总量的30%。元基因组分析显示,样品中掺杂的环境微生物主要是痤疮杆菌Cutibacterium acnes、大肠杆菌Escherichia coli等皮肤常见细菌。与洁净皮肤样本的信息相比,开放环境下提取掺杂了数十种环境微生物,并导致主要菌种的丰度大幅降低,从而影响结果的真实性。因此,微量样品的DNA提取应在洁净环境下执行。  相似文献   

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