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Recovery of a virulent strain of Newcastle disease virus from cloned cDNA: Expression of a foreign gene results in growth retardation and attenuation

机译:从克隆的cDNA中回收新城疫病毒的强毒株:外源基因的表达导致生长迟缓和减毒

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A recombinant mesogenic NDV strain, Beaudette C, and an engineered recombinant NDV expressing an additional gene were generated entirely from cloned cDNAs. For this purpose, a full-length cDNA clone of the virus genome, represented in eight different subgenomic fragments, was assembled in a transcription plasmid between a T7 RNA polymerase promoter and a hepatitis delta virus ribozyme sequence, infectious NDV could be generated in the cells infected with recombinant vaccinia virus, which expressed T7 RNA polymerase, by simultaneous expression of antigenome-sense NDV RNA from the full-length plasmid and NDV NP, P, and L proteins from cotransfected plasmids. Recombinant virus was then amplified and recovered, either after inoculation of transfection supernatant into the allantoic cavity of embryonated specific-pathogen-free eggs or after further passage in cell culture. Characterization of the recombinant NDV showed similarities in growth and pathogenicity to that of the parental wild-type virus. By using this system, a recombinant NDV containing a foreign gene encoding chloramphenicol acetyltransferase (CAT) was generated. To do this, the CAT transcription cassette containing the CAT open reading frame, flanked by NDV gene start and gene end sequence motifs, was inserted into the region between the HN and L genes of the full-length cDNA. This construct was then used in the generation of a recombinant NDV expressing CAT protein. The CAT gene was maintained stably for at least eight passages without any detectable loss of the gene from the recombinant. Generation of the recombinant virus, however, was associated with reduced plaque size, slower replication kinetics, and more than 100-fold decrease in yield. In addition, the virus showed an increase in mean death time for eggs and a lower intracerebral pathogenicity index in day-old chicks, implicating attenuation of the recombinant virus. Thus, introduction of an additional gene into the NDV genome represents a method to achieve growth retardation and attenuation. These results also indicate that NDV can be engineered to express foreign protein stably and can be manipulated in the future for use as a vaccine vector. (C) 2000 Academic Press. [References: 45]
机译:完全从克隆的cDNA产生了重组介晶NDV菌株Beaudette C和表达另外一个基因的工程重组NDV。为此,将病毒基因组的全长cDNA克隆(代表八个不同的亚基因组片段)组装在T7 RNA聚合酶启动子和肝炎三角洲病毒核酶序列之间的转录质粒中,从而在细胞中产生传染性NDV通过同时表达全长质粒的反基因组有感的NDV RNA和共转染质粒的NDV NP,P和L蛋白,感染了表达T7 RNA聚合酶的重组痘苗病毒。然后,在将转染上清液接种到已植入胚的无特定病原体卵的尿囊腔中之后,或在细胞培养中进一步传代后,重组病毒得以扩增和回收。重组NDV的表征与亲本野生型病毒的生长和致病性相似。通过使用该系统,产生了含有编码氯霉素乙酰基转移酶(CAT)的外源基因的重组NDV。为此,将包含CAT开放阅读框的CAT转录盒插入NDV基因起始和基因末端序列基序,将其插入全长cDNA的HN和L基因之间的区域。然后将该构建体用于表达CAT蛋白的重组NDV的产生。 CAT基因至少在八次传代中稳定保持,而重组子中没有任何可检测到的基因丢失。然而,重组病毒的产生与噬菌斑大小减小,复制动力学较慢以及产量降低超过100倍有关。此外,该病毒在日龄雏鸡中显示出平均卵死亡时间增加和较低的脑致病性指数,这意味着重组病毒的减毒。因此,将另外的基因引入NDV基因组代表了实现生长迟缓和减毒的方法。这些结果还表明NDV可以被工程化以稳定地表达外源蛋白,并且可以在将来被操纵以用作疫苗载体。 (C)2000年学术出版社。 [参考:45]

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