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Three mechanistic steps detected by FRET after presynaptic filament formation in homologous recombination. ATP hydrolysis required for release of oligonucleotide heteroduplex product from RecA

机译:在同源重组中突触前丝形成后,FRET检测到三个机械步骤。从RecA释放寡核苷酸异源双链产物所需的ATP水解

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The Escherichia coli RecA protein promotes DNA strand exchange in homologous recombination and recombinational DNA repair. Stopped-flow kinetics and fluorescence resonance energy transfer (FRET) were used to study RecA-mediated strand exchange between a 30-bp duplex DNA and a homologous single-stranded 50mer. In our standard assay, one end of the dsDNA helix was labeled at apposing 5' and 3' ends with hexachlorofluorescein and fluorescein, respectively. Strand exchange was monitored by the increase in fluorescence emission resulting upon displacement of the fluorescein-labeled strand from the initial duplex. The potential advantages of FRET in study of strand exchange are that it noninvasively measures real-time kinetics in the previously inaccessible millisecond time regime and offers great sensitivity. The oligonucleotide substrates model short-range mechanistic effects that might occur within a localized region of the ternary complex formed between RecA and long DNA molecules during strand exchange. Reactions in the presence of ATP with 0.1 mu M duplex and 0.1-1.0 mu M ss50mer showed triphasic kinetics in 600 s time courses, implying the existence of three mechanistic steps subsequent to presynaptic filament formation. The observed rate constants for the intermediate phase were independent of the concentration of ss50mer and most likely characterize a unimolecular isomerization of the ternary complex. The observed rate constants for the first and third phases decreased with increasing ss50mer concentration. Kinetic experiments performed with the nonhydrolyzable analogue ATP gamma S showed overall changes in fluorescence emission identical to those observed in the presence of ATP. In addition, the observed rate constants for the two fastest reaction phases were identical in ATP or ATP gamma S. The observed rate constant for the slowest phase showed a 4-fold reduction in the presence of ATP gamma S. Results in ATP gamma S using an alternate fluorophore labeling pattern suggest a third ternary intermediate may form prior to ssDNA product release. The existence of two or three ternary intermediates inst rand exchange with a 30 bp duplex suggests the possibility that the step size for base pair switching may be 10-15 bp. Products of reactions in the presence of ATP and ATP gamma S, with and without proteinase K treatment, were analyzed on native polyacrylamide gels. In reactions in which only short-range RecA-DNA interactions were important, ATP hydrolysis was not required for recycling of RecA from both oligonucleotide products. Hydrolysis or deproteinization was required for RecA to release the heteroduplex product, but not the outgoing single strand. [References: 61]
机译:大肠杆菌RecA蛋白在同源重组和重组DNA修复中促进DNA链交换。停止流动力学和荧光共振能量转移(FRET)用于研究RecA介导的30 bp双链DNA与同源单链50mer之间的链交换。在我们的标准检测中,dsDNA螺旋的一端分别在六端和六端标记了5'和3'末端。通过荧光素标记的链从起始双链体的置换中导致的荧光发射的增加来监测链交换。 FRET在链交换研究中的潜在优势在于,它可以无创地测量以前无法访问的毫秒时间范围内的实时动力学,并具有很高的灵敏度。寡核苷酸底物建模可能在链交换期间在RecA和长DNA分子之间形成的三元复合物的局部区域内发生的短程机械作用。 ATP与0.1μM双链体和0.1-1.0μM ss50mer的反应在600 s的时间过程中显示出三相动力学,暗示突触前长丝形成后存在三个机械步骤。所观察到的中间相的速率常数与ss50mer的浓度无关,最有可能表征三元配合物的单分子异构化。随着ss50mer浓度的增加,第一阶段和第三阶段观察到的速率常数降低。用不可水解的类似物ATPγS进行的动力学实验表明,荧光发射的总体变化与存在ATP时观察到的相同。此外,在ATP或ATPγS中观察到的两个最快反应相的速率常数相同。在存在ATPγS的情况下,观察到的最慢相的速率常数降低了4倍。另一种荧光团标记模式表明在ssDNA产物释放之前可能形成第三种三元中间体。具有30 bp双链体的两个或三个三元中间体在线交换的存在表明,碱基对转换的步长可能为10-15 bp。在天然聚丙烯酰胺凝胶上分析了存在和未进行蛋白酶K处理的ATP和ATPγS存在下的反应产物。在仅短程RecA-DNA相互作用很重要的反应中,从两种寡核苷酸产物回收RecA都不需要ATP水解。 RecA需要水解或脱蛋白才能释放异源双链产物,但不释放单链产物。 [参考:61]

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