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A non-hypervariable human minisatellite strongly stimulates in vitro intramolecular homologous recombination

机译:非高变人类微卫星强烈刺激体外分子内同源重组

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Several features indicate that the low polymorphic human minisatellite MsH42 region could be involved in, recombination. It contains different well-known recombination motifs, is able to generate single-stranded loops and is specifically recognized by nuclear proteins. These characteristics led us to investigate the possible recombinogenic activity of the MsH42 region in terms of intramolecular recombination. We constructed two plasmids, one of them carrying two copies of the minisatellite region and the other; one containing sequences upstream of this repetitive region. We showed that MsH42 strongly stimulates intramolecular in vitro recombination, similar to 22 times more than the control sequence, solely when the source of biological extract is mouse testes, suggesting that MsH42 could be a hotspot involved in meiotic recombination. Furthermore, there is a direct relationship between the frequency of equal crossovers and the enhancement of recombination. Interestingly, the third repeat of the minisatellite array is always involved in the resolution of unequal crossovers leading to minisatellite shortening. As far as we know, our results provide the first evidence that a non-hypervariable minisatellite can enhance homologous recombination. (C) 1998 Academic Press Limited. [References: 26]
机译:几个特征表明,低多态性人微卫星MsH42区可能参与重组。它包含不同的众所周知的重组基序,能够产生单链环,并被核蛋白特异性识别。这些特征使我们研究了分子内重组方面MsH42地区可能的重组活性。我们构建了两个质粒,其中一个带有两个小卫星区域的拷贝,另一个则带有两个拷贝。一个包含在该重复区域上游的序列。我们显示,仅当生物提取物的来源是小鼠睾丸时,MsH42才能强烈刺激分子内体外重组,比对照序列高出22倍,这表明MsH42可能是减数分裂重组的热点。此外,等分频点的频率与重组的增强之间存在直接关系。有趣的是,微卫星阵列的第三个重复序列始终参与不等分频的解析,从而导致微卫星缩短。据我们所知,我们的结果提供了第一个证据,即非高变小卫星可以增强同源重组。 (C)1998 Academic Press Limited。 [参考:26]

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