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Sequence and repeat structure variants in the long terminal repeat of maedi-visna virus EV1.

作者信息

Sargan D R, Sutton K A, Bennet I D, McConnell I, Harkiss G D

机构信息

Department of Veterinary Pathology, University of Edinburgh, Scotland, UK.

出版信息

Virology. 1995 Apr 1;208(1):343-8. doi: 10.1006/viro.1995.1158.

DOI:10.1006/viro.1995.1158
PMID:11831717
Abstract

Diversity in the LTR of maedi-visna virus strain EV1 has been examined by PCR-based gene amplification using DNA from infected cells both in vitro and in experimentally infected animals. In vitro, several variant structures were found in the U3 regions of the LTR which contained repeats of sequences including presumed AP-1 and AP-4 binding sites. Although these repeat variants formed a minor fraction of the LTRs present in the proviral population, they were neither produced nor lost at a significant rate when PCR was performed on cloned viral DNA and so were unlikely to be artefacts of the isolation procedure. When LTRs were isolated from two experimentally EV1 infected sheep, repeat variant structures were found to be present in efferent lymph by 14 days postinfection (p.i.) (although not seen at 9 days p.i.). They were also present at later times and in blood. Overall sequence diversity at 9 days p.i. was reduced compared both with the infecting virus and with later times of infection. When a number of the variant LTR structures were used to drive CAT reporter gene constructs in chondrocytes, all were found to be active, although consistent differences of up to fourfold in activity were seen. However, there is no evidence from these data for strong selective pressure operating on the LTR in vivo.

摘要

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引用本文的文献

1
Duplicated sequence motif in the long terminal repeat of maedi-visna virus extends cell tropism and is associated with neurovirulence.梅迪-维斯纳病毒长末端重复序列中的重复序列基序扩展了细胞嗜性并与神经毒力相关。
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2
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3
Biological and genetic differences between lung- and brain-derived isolates of maedi-visna virus.
梅迪-维斯纳病毒肺源分离株和脑源分离株之间的生物学及遗传差异。
Virus Genes. 1998;16(3):281-93. doi: 10.1023/a:1008030706308.