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Observed versus predicted structure of fluorescent self-quenching reporter molecules (SQRM): Caveats with respect to the use of “stem–loop” oligonucleotides as probes for mRNA folding

机译:荧光自猝灭报道分子(SQRM)的观察与预测结构:关于使用“茎-环”寡核苷酸作为mRNA折叠探针的注意事项

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摘要

We developed self-quenching reporter molecules (SQRMs), oligodeoxynucleotides with fluorophore and quencher moieties at the 5′ and 3′ ends respectively, to probe mRNAs for single-stranded, hybridization accessible sequences. SQRMs and their homologous antecedents, Molecular Beacons (MB), are designed with the assumption that they adopt a stem–loop structure thought critical for regulating their reporter function. Recently, we observed that stem–loop structures are not required for SQRM function, and on this basis proposed that these reporter molecules be classified according to whether they were stemmed (Type I) or not (Type II). This finding further stimulated us to investigate whether Type I SQRMs, and by extension MBs, actually adopt a stem–loop configuration under physiologic conditions. Accordingly, we synthesized Type I and Type II SQRMs and studied the thermodynamic characteristics of each by fluorescence melting analysis. The results of these studies suggested that the majority of stem–loop Type I SQRMs are unstructured at 37°C, while some of the stemless Type II SQRMs are, surprisingly, structured. These results were not predicted by the mfold computer program. Type I and II SQRMs were then employed to “map” the mRNA secondary structure of a gene encoding a tyrosine kinase receptor, c-kit. Neither experimentally determined melting temperatures nor mfold-“predicted” thermodynamic parameters were useful in predicting the fluorescence signal-to-noise ratios obtained for SQRMs incubated with c-kit mRNA. We conclude that stem–loop reporter molecules are in fact unlikely to adopt their presumed structures at 37°C, and this design consideration may be dispensed when their use is contemplated under physiologic conditions.
机译:我们开发了自猝灭报道分子(SQRMs),分别在5'和3'末端带有荧光团和淬灭剂部分的寡脱氧核苷酸,以探测单链,杂交可及序列的mRNA。 SQRM及其同源先例,分子信标(MB),其设计假设是采用茎环结构,这对于调节其报告基因功能至关重要。最近,我们观察到SQRM功能不需要茎-环结构,并在此基础上建议根据这些报告分子是否被茎(I型)分类。这一发现进一步激发了我们研究I型SQRMs和扩展MBs是否在生理条件下实际上采用茎-环构型。因此,我们合成了I型和II型SQRM,并通过荧光熔融分析研究了它们的热力学特性。这些研究结果表明,大多数茎环I型SQRM在37°C时是非结构化的,而有些无茎II型SQRMs则是结构化的。这些结果不是mfold计算机程序预测的。然后,使用I型和II型SQRM来“定位”编码酪氨酸激酶受体c-kit的基因的mRNA二级结构。通过实验确定的解链温度或“倍数”预测的热力学参数都无法用于预测与c-kit mRNA孵育的SQRM的荧光信噪比。我们得出的结论是,茎-环报道分子实际上不太可能在37°C下采用其假定的结构,并且当在生理条件下考虑使用它们时,可以省去这种设计考虑。

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