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A general approach for receptor and antibody-targeted detection of native proteins utilizing split-luciferase reassembly

机译:利用分裂荧光素酶重组对天然蛋白进行受体和抗体靶向检测的通用方法

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The direct detection of native proteins in heterogeneous solutions remains a challenging problem. Standard methodologies rely on a separation step to circumvent nonspecific signal generation. We hypothesized that a simple and general method for the detection of native proteins in solution could be achieved through ternary complexation, where the conditional signal generation afforded by split-protein reporters could be married to the specificity afforded by either native receptors or specific antibodies. Toward this goal, we describe a solution phase split-luciferase assay for native protein detection, where we fused fragmented halves of firefly luciferase to separate receptor fragments or single-chain antibodies, allowing for conditional luciferase complementation in the presence of several biologically significant protein targets. To demonstrate the utility of this strategy, we have developed and validated assay platforms for the vascular endothelial growth factor, the gp120 coat protein from HIV-1, and the human epidermal growth factor receptor 2 (HER2), a marker for breast cancer. The specificities of the recognition elements, CD4 and the 17b single-chain antibody, employed in the gp120 sensor allowed us to parse gp120s from different clades. Our rationally designed HER2 sensing platform was capable of discriminating between HER2 expression levels in several tumor cell lines. In addition, luminescence from reassembled luciferase was linear across a panel of cell lines with increasing HER2 expression. We envision that the proof of principle studies presented herein may allow for the potential detection of a broad range of biological analytes utilizing ternary split-protein systems.
机译:在异质溶液中直接检测天然蛋白质仍然是一个难题。标准方法依赖于分离步骤来规避非特异性信号的产生。我们假设可以通过三元络合实现一种简单且通用的检测溶液中天然蛋白质的方法,其中分裂蛋白报告基因提供的条件信号生成可以与天然受体或特异性抗体提供的特异性相结合。为了实现这个目标,我们描述了一种用于天然蛋白检测的溶液相分裂荧光素酶测定法,在该方法中,我们将萤火虫荧光素酶的碎裂片段融合在一起,以分离受体片段或单链抗体,从而在存在几个生物学上重要的蛋白质靶标的情况下进行条件性荧光素酶互补。为了证明该策略的实用性,我们开发并验证了血管内皮生长因子,HIV-1的gp120外壳蛋白和乳腺癌的标志物人表皮生长因子受体2(HER2)的测定平台。 gp120传感器中使用的识别元件CD4和17b单链抗体的特异性使我们能够解析来自不同进化枝的gp120。我们合理设计的HER2感应平台能够区分几种肿瘤细胞系中的HER2表达水平。另外,随着HER2表达的增加,重组荧光素酶的发光在一组细胞系中是线性的。我们设想本文提出的原理研究的证明可以允许利用三元分裂蛋白系统潜在地检测多种生物分析物。

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