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qPCR assays to quantitate tRNApyl and pylRS expression in engineered cell lines

机译:qPCR分析定量工程细胞系中的tRNApyl和pylRS表达

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摘要

Non-natural amino acids (nnAA) contain unique functional moieties that greatly expand the available tool set for protein engineering. But incorporation of nnAAs requires the function of an orthogonal aminoacyl tRNA synthetase/tRNA pair. Stable cell lines expressing these components have been shown capable of producing gram per liter levels of antibodies with nnAAs. However, little has been reported on the genetic makeup of these cells. To gain a better understanding of the minimal requirements for efficient nnAA incorporation we developed qPCR methods for the quantitation of the key components. Here we describe the development of qPCR assays for the quantification of tRNApyl and pylRS. qPCR was chosen because it provides a large dynamic range, has high specificity for its target, and is a non-radioactive method used routinely for cell line characterization. Designing assays for tRNAs present challenges due to their short length (~72 nucleotides) and high secondary structure. These tRNA assays have a ≥ 5 log dynamic range with the tRNApyl assays being able to discern the mature and unprocessed forms of the tRNApyl. Cell line analysis showed tRNApyl was expressed at higher levels than the CHO-K1 endogenous Met and Phe tRNAs and that >88% of tRNApyl was the mature form.
机译:非天然氨基酸(nnAA)包含独特的功能部分,极大地扩展了蛋白质工程学可用的工具集。但是,nnAA的掺入需要正交氨酰基tRNA合成酶/ tRNA对的功能。已经表明表达这些组分的稳定细胞系能够产生每克水平具有nnAA的抗体。然而,关于这些细胞的遗传组成的报道很少。为了更好地了解有效nnAA掺入的最低要求,我们开发了定量关键成分定量的qPCR方法。在这里,我们描述了定量tRNApyl和pylRS的qPCR分析方法的发展。选择qPCR是因为它提供了较大的动态范围,对其靶标具有很高的特异性,并且是常规用于细胞系鉴定的非放射性方法。由于tRNA的长度短(〜72个核苷酸)和较高的二级结构,因此设计检测方法提出了挑战。这些tRNA分析的动态范围≥5 log,而tRNApyl分析能够分辨出tRNApyl的成熟形式和未加工形式。细胞系分析表明,tRNApyl的表达水平高于CHO-K1内源性Met和Phe tRNA,并且> 88%的tRNApyl是成熟形式。

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