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首页> 外文期刊>Journal of Molecular Biology >Activities of various FLP recombinases expressed by adenovirus vectors in mammalian cells.
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Activities of various FLP recombinases expressed by adenovirus vectors in mammalian cells.

机译:腺病毒载体在哺乳动物细胞中表达的各种FLP重组酶的活性。

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FLP, like Cre, is a frequently employed site-specific recombinase. Because wild-type FLP (wtFLP) is thermolabile, a thermostable FLP mutant (FLPe) has been developed for efficient recombination of FLP in studies using mammalian cells and animals. FLPe and wtFLP have been compared in multiple assays in vitro and in vivo, and in mouse genetics, FLPe has been shown to be very effective like Cre. Here we show an adenovirus vector (AdV) system to be valuable for quantitative measurements of the enzyme activity in mammalian cells and, using this system, precisely compare activities of wtFLP and FLPe. Unexpectedly, we found that the recombination efficiency of FLPe enzyme was lower on a molar basis than that of wtFLP even at 37 degrees C and, consequently, that the higher recombination yield per transduced AdV genome expressing FLPe compared to wtFLP was due not to inherently higher enzyme activity, but rather to higher steady-state levels of FLPe by its thermostability. Therefore, trying to increase FLPe levels further, we generated a "humanized" FLPe (hFLPe) gene with codon usage optimized for mammals. hFLPe produced about 10-fold more FLPe enzyme in transfection experiments than FLPe, as expected. However, hFLPe-expressing AdV was unstable and could not be prepared without deletion, suggesting that a subtle deleterious effect of FLP on 293 cells may exist. With hFLPe-expressing AdV thus unavailable, of the AdV constructs tested, AdV-expressing FLPe yielded the most recombined targets, despite the lower recombination efficiency of FLPe per enzyme molecule compared with that of wtFLP. We found hFLPe to be valuable for plasmid transfection, and its properties are probably suitable for experiments involving cell lines and transgenic mice.
机译:像Cre一样,FLP是一种经常使用的位点特异性重组酶。由于野生型FLP(wtFLP)不耐热,因此已开发出热稳定的FLP突变体(FLPe),用于在使用哺乳动物细胞和动物的研究中有效重组FLP。 FLPe和wtFLP已在体外和体内的多种测定中进行了比较,在小鼠遗传学中,FLPe已显示出与Cre一样非常有效。在这里,我们显示了一个腺病毒载体(AdV)系统,对于定量测量哺乳动物细胞中的酶活性非常有价值,并使用该系统精确比较wtFLP和FLPe的活性。出乎意料的是,我们发现即使在37°C时,FLPe酶的重组效率也比wtFLP低,在摩尔基础上,因此,与wtFLP相比,表达FLPe的每个转导AdV基因组的重组产量更高,这并不是由于内在的高酶活性,而是通过其热稳定性达到更高的FLPe稳态水平。因此,试图进一步增加FLPe的水平,我们生成了一个“人源化”的FLPe(hFLPe)基因,其密码子使用针对哺乳动物进行了优化。正如预期的那样,在转染实验中,hFLPe产生的FLPe酶比FLPe多出10倍。但是,表达hFLPe的AdV不稳定并且不能不经删除就无法制备,这表明FLP对293细胞可能存在微妙的有害作用。由于无法获得表达hFLPe的AdV,在测试的AdV构建物中,表达AdV的FLPe产生的重组靶点最多,尽管每个酶分子的FLPe重组效率比wtFLP更低。我们发现hFLPe对于质粒转染很有价值,其特性可能适合于涉及细胞系和转基因小鼠的实验。

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