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Reagentless, Electrochemical Approach for the Specific Detection of Double- and Single-Stranded DNA Binding Proteins

机译:无试剂的电化学方法,用于双链和单链DNA结合蛋白的特异性检测

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Here we demonstrate a reagentless, electrochemical platform for the specific detection of proteins that bind to single- or double-stranded DNA. The sensor is composed of a double- or single-stranded, redox-tagged DNA probe which is covalently attached to an interrogating electrode. Upon protein binding the current arising from the redox tag is suppressed, indicating the presence of the target. Using this approach we have fabricated sensors against the double-stranded DNA binding proteins TATA-box binding protein and M.HhaI methyltransferase, and against the single-strand binding proteins Escherichia coli SSBP and replication protein A. All four targets are detected at nanomolar concentrations, in minutes, and in a convenient, general, readily reusable, electrochemical format. The approach is specific; we observed no significant cross-reactivity between the sensors. Likewise the approach is selective; it supports, for example, the detection of single strand binding protein directly in crude nuclear extracts. The generality of our approach (including its ability to detect both double- and single-strand binding proteins) and a strong, non-monotonic dependence of signal gain on probe density support a collisional signaling mechanism in which binding alters the collision efficiency, and thus electron transfer efficiency, of the attached redox tag. Given the ubiquity with which protein binding will alter the collisional dynamics of an oligonucleotide, we believe this approach may prove of general utility in the detection of DNA and RNA binding proteins.
机译:在这里,我们展示了一种无试剂的电化学平台,用于特异性检测与单链或双链DNA结合的蛋白质。该传感器由双链或单链氧化还原标记的DNA探针组成,该探针共价连接至询问电极。蛋白质结合后,氧化还原标签产生的电流被抑制,表明存在靶标。使用这种方法,我们制造了针对双链DNA结合蛋白TATA-box结合蛋白和M.HhaI甲基转移酶,以及针对单链结合蛋白的大肠杆菌SSBP和复制蛋白A的传感器。所有四个靶标均以纳摩尔浓度检测可以在数分钟内以方便,通用,易于重用的电化学形式进行处理。该方法是特定的;我们观察到传感器之间没有明显的交叉反应。同样,该方法是选择性的。它支持例如直接在粗核提取物中检测单链结合蛋白。我们方法的一般性(包括其检测双链和单链结合蛋白的能力)以及信号增益对探针密度的强烈,非单调依赖性支持了一种碰撞信号传导机制,其中结合改变了碰撞效率,因此附着的氧化还原标签的电子转移效率。考虑到蛋白质结合将改变寡核苷酸的碰撞动力学的普遍性,我们认为这种方法可证明在检测DNA和RNA结合蛋白方面具有普遍用途。

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