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首页> 外文期刊>Analytical chemistry >Using Molecular Beacons To Probe Molecular Interactions between Lactate Dehydrogenase and Single-Stranded DNA
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Using Molecular Beacons To Probe Molecular Interactions between Lactate Dehydrogenase and Single-Stranded DNA

机译:使用分子信标探测乳酸脱氢酶和单链DNA之间的分子相互作用

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摘要

The interactions between two key macromolecular species, nucleic acids and proteins, control many important biological processes. There have been limited effective methodologies to study these interactions in real time. In this work, we have applied a newly developed molecular beacon (MB) DNA probe for the analysis of an enzyme, lactate dehydrogenase (LDH), and for the investigation of its properties of binding with single-stranded DNA. Molecular beacons are single-stranded oligonucleotide probes designed to report the presence of specific complementary nucleic acids by fluorescence detection. The interaction between LDH and MB has resulted in a significant fluorescence signal enhancement, which is used for the elucidation of MB/LDH binding properties. The processes of binding between MB and different isoenzymes of LDH have been studied. The results show that the stoichiometry of LDH-5/MB binding is 1:1, and the binding constant is 1.9×10~(-7) M~(-1). We have also studied salt effects, binding sites, temperature effects, pH effects, and the binding specificities for different isoenzymes. Our results demonstrate that MB can be effectively used for sensitive protein quantitation and for efficient protein-DNA interaction studies. MB has a signal transduction mechanism built within the molecule and can thus be used for the development of rapid protein assays and for real-time measurements.
机译:两种重要的大分子物种,核酸和蛋白质之间的相互作用控制着许多重要的生物学过程。实时研究这些相互作用的有效方法有限。在这项工作中,我们将一种新开发的分子信标(MB)DNA探针用于酶,乳酸脱氢酶(LDH)的分析,以及研究其与单链DNA结合的特性。分子信标是单链寡核苷酸探针,旨在通过荧光检测报告特定互补核酸的存在。 LDH和MB之间的相互作用已导致荧光信号显着增强,这可用于阐明MB / LDH的结合特性。已经研究了MB与LDH的不同同工酶之间的结合过程。结果表明,LDH-5 / MB结合的化学计量比为1:1,结合常数为1.9×10〜(-7)M〜(-1)。我们还研究了盐效应,结合位点,温度效应,pH效应以及不同同工酶的结合特异性。我们的结果表明MB可以有效地用于敏感蛋白质定量和有效的蛋白质-DNA相互作用研究。 MB具有在分子内建立的信号转导机制,因此可用于开发快速蛋白质测定和实时测量。

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