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首页> 外文期刊>Communications Biology >Brightness-gated two-color coincidence detection unravels two distinct mechanisms in bacterial protein translation initiation
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Brightness-gated two-color coincidence detection unravels two distinct mechanisms in bacterial protein translation initiation

机译:亮度门控两种巧合检测无助于细菌蛋白翻译引发中的两个不同机制

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Life on the molecular scale is based on a complex interplay of biomolecules under which the ability of binding is crucial. Fluorescence based two-color coincidence detection (TCCD) is commonly used to characterize molecular binding, but suffers from an underestimation of coincident events. Here, we introduce a brightness-gated TCCD which overcomes this limitation and benchmark our approach with two custom-made calibration samples. Applied to a cell-free protein synthesis assay, brightness-gated TCCD unraveled a previously disregarded mode of translation initiation in bacteria. Henning Höfig et al. present a brightness-gated two-color coincidence detection method that overcomes the limitations of confocal detection. The method adds a selection criterion for the brightness of single fluorescence bursts, substantially improving the counting accuracy for single fluorophores.
机译:分子尺度上的生命基于其生物分子的复杂相互作用,其中结合能力至关重要。荧光基的双色重合检测(TCCD)通常用于表征分子结合,但遭受重复事件的低估。在这里,我们介绍了一个亮度门控TCCD,克服了这种限制和基准测试我们的方法,采用了两个定制的校准样本。适用于无细胞蛋白质合成测定,亮度门控TCCD解开了先前忽视的细菌中的翻译起始模式。 HenningHöfig等。呈现亮度门控两种重合检测方法,克服了共聚焦检测的局限性。该方法为单荧光突发的亮度增加了选择标准,基本上提高了单一荧光团的计数精度。

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