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随机引物PCR扩增鸡胚致死孤儿病毒DNA的研究   总被引:8,自引:0,他引:8  
在电镜下观察鸭病毒性肝炎病毒鸡胚尿囊液种毒时,另看到一大小为70~80nm,无囊膜,20面体对称的病毒颗粒.为了解该污染病毒,作者挑选了4条随机引物对此未知病毒分别进行反转录PCR和直接PCR扩增,结果共扩增出3条基因片段,经测序(一个反应)后分析与禽腺病毒1型--鸡胚致死孤儿病毒基因组部分序列同源性分别高达99.5%、99.6%和99.5%.从而得知鸭病毒性肝炎病毒鸡胚尿囊液种毒受到了鸡胚致死孤儿病毒的严重污染.  相似文献   

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DNA polymerase activities in brain of chick embryo   总被引:2,自引:0,他引:2  
Soriano L 《FEBS letters》1972,22(3):310-314
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The high fidelity of chick embryo DNA polymerase-gamma (pol-gamma) observed during in vitro DNA synthesis (Kunkel, T. A. (1985) J. Biol. Chem. 260, 12866-12874) has led us to examine this DNA polymerase for the presence of an exonuclease activity capable of proofreading errors. Highly purified chick embryo pol-gamma preparations do contain exonuclease activity capable of digesting radiolabeled DNA in a 3'----5' direction, releasing deoxynucleoside 5'-monophosphates. The polymerase and exonuclease activities cosediment during centrifugation in a glycerol gradient containing 0.5 M KCl. In the absence of dNTP substrates, this exonuclease excises both matched and mismatched primer termini, with a preference for mismatched bases. Excision is inhibited by the addition of nucleoside 5'-monophosphates to the digestion reaction. In the presence of dNTP substrates to permit competition between excision and polymerization from the mismatched primer, the exonuclease excises mismatched bases from preformed terminal mispairs with greater than 98% efficiency. The preference for excision over polymerization can be diminished by addition of either high concentrations of dNTP substrates or nucleoside 5'-monophosphates to the exonuclease/polymerase reaction. To determine if this exonuclease is capable of proofreading misinsertions produced during a normal polymerization reaction, a sensitive base substitution fidelity assay was developed based on reversion of an M13mp2 lacZ alpha nonsense codon. In this assay using reaction conditions that permit highly active exonucleolytic proofreading, pol-gamma exhibits a fidelity of less than one error for every 260,000 bases polymerized. As for terminal mismatch excision, fidelity is reduced by the addition to the synthesis reaction of high concentrations of dNTP substrates or nucleoside 5'-monophosphates, both hallmarks of exonucleolytic proofreading by prokaryotic enzymes. Taken together, these observations suggest that the 3'----5' exonuclease present in highly purified chick embryo pol-gamma preparations proofreads base substitution errors during DNA synthesis. It remains to be determined if the polymerase and exonuclease activities reside in the same or different polypeptides.  相似文献   

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CELO (chicken embryo lethal orphan) virus is an avian adenovirus that is being developed as a gene transfer vector. Its trimeric major coat protein (942 residues, 106,709 Da) has 42% sequence identity to human adenovirus type 2 (AdH2) hexon and 45% to AdH5 hexon. For structural studies, the growth of CELO virus has been optimized, and its hexon purified and crystallized. The hexon crystals, the first non-human example, diffract to 3.9 A resolution. Molecular replacement using the AdH5 model was used to identify the location of the CELO hexon within the unit cell. There is one hexon monomer in the asymmetric unit of the trigonal space group P321 (a=b=157.8 A, c=114.2 A, gamma=120 degrees) and the solvent content is 67.8%. The hexons pack in a hexagonal honeycomb so that large approximately 100 A diameter channels run through the entire crystal. This remarkable property of the crystals lends itself to their exploitation as a nanomaterial. Structural studies on CELO will elucidate the differences between avian and human adenoviruses and contribute to a better understanding of adenoviruses with non-human hosts.  相似文献   

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A nuclear DNA ligase from chick embryos was isolated by the non-aqueous method and partially purified. Its activity is several fold lower than that of the enzyme found in the cytoplasmic fraction of the chick embryos. The pH dependance curve shows a single optimum for the nuclear enzyme activity, over a very narrow pH range. The molecular weight of the nuclear enzyme is 82000 and the activity is inhibited with a low KIby d-ATP.  相似文献   

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