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Segregation of a Single Outboard Left-End Origin Is Essential for the Viability of Parvovirus Minute Virus of Mice

机译:分离单个外侧左端起源对于细小病毒微小病毒小鼠的生存力至关重要。

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摘要

During DNA replication, the hairpin telomeres of Minute Virus of Mice (MVM) are extended and copied to create imperfectly palindromic duplex junction sequences that bridge adjacent genomes in concatameric replicative-form DNA. These are resolved by the viral initiator protein, NS1, but mechanisms employed at the two telomeres differ. Left-end:left-end junctions are resolved asymmetrically at a single site, OriLTC, by NS1 acting in concert with a host factor, parvovirus initiation factor (PIF). Replication segregates doublet and triplet sequences, initially present as unpaired nucleotides in the bubble region of the left-end hairpin stem, to either side of the junction. These act as spacers between the NS1 and PIF binding sites, and their asymmetric distribution sets up active (OriLTC) and inactive (OriLGAA) forms of OriL. We used a reverse genetic approach to disrupt this asymmetry and found that neither opposing doublets nor triplets in the hairpin bubble were tolerated. Viable mutants were isolated at low frequency and found to contain second-site mutations that either restored the asymmetry or crippled one PIF binding site. These mutations either inactivated the inboard or activated the outboard form of OriL, a polarity that strongly suggests that, in the genus Parvovirus, an active inboard OriL is lethal.
机译:在DNA复制过程中,小鼠细小病毒(MVM)的发夹型端粒被延长并复制,以产生不完美的回文双链体连接序列,该序列桥接了双核苷酸复制形式的DNA。这些可以通过病毒启动子蛋白NS1来解决,但是两个端粒所采用的机制不同。左端:左端连接在单个位点OriLTC上不对称地被NS1与宿主因子细小病毒启动因子(PIF)共同起作用。复制将双联体和三联体序列分离,该序列最初以未配对的核苷酸形式出现在左端发夹茎的气泡区域中,到达连接的任一侧。这些充当NS1和PIF结合位点之间的间隔物,它们的不对称分布建立了OriL的活性(OriLTC)和非活性(OriLGAA)形式。我们使用反向遗传学方法破坏了这种不对称性,发现发夹泡沫中的相对双链体和三胞胎都不被容忍。以低频率分离出活的突变体,发现其包含第二位点突变,该位点突变要么恢复了不对称性,要么破坏了一个PIF结合位点。这些突变要么使内侧的OriL失活,要么使外侧的OriL激活,这种极性强烈表明,在细小病毒属中,活跃的内侧OriL是致命的。

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