Department of Chemistry, National Taiwan University, Taipei, Taiwan.
PLoS One. 2011;6(7):e21359. doi: 10.1371/journal.pone.0021359. Epub 2011 Jul 12.
RecA recombinases play a central role in homologous recombination. Once assembled on single-stranded (ss) DNA, RecA nucleoprotein filaments mediate the pairing of homologous DNA sequences and strand exchange processes. We have designed two experiments based on tethered particle motion (TPM) to investigate the fates of the invading and the outgoing strands during E. coli RecA-mediated pairing and strand exchange at the single-molecule level in the absence of force. TPM experiments measure the tethered bead Brownian motion indicative of the DNA tether length change resulting from RecA binding and dissociation. Experiments with beads labeled on either the invading strand or the outgoing strand showed that DNA pairing and strand exchange occurs successfully in the presence of either ATP or its non-hydrolyzable analog, ATPγS. The strand exchange rates and efficiencies are similar under both ATP and ATPγS conditions. In addition, the Brownian motion time-courses suggest that the strand exchange process progresses uni-directionally in the 5'-to-3' fashion, using a synapse segment with a wide and continuous size distribution.
RecA 重组酶在同源重组中起着核心作用。一旦组装在单链 (ss) DNA 上,RecA 核蛋白丝就介导同源 DNA 序列的配对和链交换过程。我们设计了两项基于连接粒子运动 (TPM) 的实验,以在没有力的情况下,在单分子水平上研究大肠杆菌 RecA 介导的配对和链交换过程中入侵链和外出链的命运。TPM 实验测量连接珠的布朗运动,指示由于 RecA 结合和解离导致的 DNA 连接珠长度变化。用标记在入侵链或外出链上的珠子进行的实验表明,在存在 ATP 或其非水解类似物 ATPγS 的情况下,DNA 配对和链交换都能成功进行。在 ATP 和 ATPγS 条件下,链交换速率和效率相似。此外,布朗运动时间过程表明,链交换过程以 5'到 3'的方向单向进行,使用具有广泛且连续尺寸分布的突触片段。