Braunlin William, Völker Jens, Plum G Eric, Breslauer Kenneth J
Department of Chemistry and Chemical Biology, Rutgers, The State University of New Jersey, 610 Taylor Rd., Piscataway, NJ, 08854; Rational Affinity Devices, LLC.
Biopolymers. 2013 Jun;99(6):408-17. doi: 10.1002/bip.22213.
We describe a novel hybridization assay that employs a unique class of energy tunable, bulge loop-containing competitor strands (C*) that hybridize to a probe strand (P). Such initial "pre-binding" of a probe strand modulates its effective "availability" for hybridizing to a target site (T). More generally, the assay described here is based on competitive binding equilibria for a common probe strand (P) between such tunable competitor strands (C*) and a target strand (T). We demonstrate that loop variable, energy tunable families of CP complexes exhibit enhanced discrimination between targets and mismatched targets, thereby reducing false positives/negatives. We refer to a CP complex between a C* competitor single strand and the probe strand as a "tuning fork," since the C* strand exhibits branch points (forks) at the duplex-bulge interfaces within the complex. By varying the loop to create families of such "tuning forks," one can construct C*P "energy ladders" capable of resolving small differences within the target that may be of biological/functional consequence. The methodology further allows quantification of target strand concentrations, a determination heretofore not readily available by conventional hybridization assays. The dual ability of this tunable assay to discriminate and quantitate targets provides the basis for developing a technology we refer to as a "DNA Meter." Here we present data that establish proof-of-principle for an in solution version of such a DNA Meter. We envision future applications of this tunable assay that incorporate surface bound/spatially resolved DNA arrays to yield enhanced discrimination and sensitivity.
我们描述了一种新型杂交检测方法,该方法采用了一类独特的能量可调、含凸起环的竞争链(C*),其可与探针链(P)杂交。探针链的这种初始“预结合”调节了其与靶位点(T)杂交的有效“可用性”。更一般地说,这里描述的检测方法基于通用探针链(P)在这种可调竞争链(C*)和靶链(T)之间的竞争性结合平衡。我们证明,CP复合物的环可变、能量可调家族对靶标和错配靶标表现出增强的区分能力,从而减少假阳性/假阴性。我们将C竞争单链与探针链之间的CP复合物称为“音叉”,因为C链在复合物内的双链-凸起界面处呈现分支点(叉)。通过改变环来创建此类“音叉”家族,人们可以构建能够分辨靶标内可能具有生物学/功能后果的微小差异的C*P“能量梯”。该方法还允许对靶链浓度进行定量,这是传统杂交检测迄今难以实现的测定。这种可调检测方法区分和定量靶标的双重能力为开发一种我们称为“DNA计”的技术提供了基础。在这里,我们展示了为这种DNA计的溶液版本建立原理验证的数据。我们设想这种可调检测方法未来的应用,其结合表面结合/空间分辨的DNA阵列,以提高区分能力和灵敏度。