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Double Strand Break Unwinding and Resection by the Mycobacterial Helicase-Nuclease AdnAB in the Presence of Single Strand DNA-binding Protein (SSB)*

机译:存在单链DNA结合蛋白(SSB)时,通过分枝杆菌解旋酶-核酸酶AdnAB进行双链断裂展开和切除*

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摘要

Mycobacterial AdnAB is a heterodimeric DNA helicase-nuclease and 3′ to 5′ DNA translocase implicated in the repair of double strand breaks (DSBs). The AdnA and AdnB subunits are each composed of an N-terminal motor domain and a C-terminal nuclease domain. Inclusion of mycobacterial single strand DNA-binding protein (SSB) in reactions containing linear plasmid dsDNA allowed us to study the AdnAB helicase under conditions in which the unwound single strands are coated by SSB and thereby prevented from reannealing or promoting ongoing ATP hydrolysis. We found that the AdnAB motor catalyzed processive unwinding of 2.7–11.2-kbp linear duplex DNAs at a rate of ∼250 bp s−1, while hydrolyzing ∼5 ATPs per bp unwound. Crippling the AdnA phosphohydrolase active site did not affect the rate of unwinding but lowered energy consumption slightly, to ∼4.2 ATPs bp−1. Mutation of the AdnB phosphohydrolase abolished duplex unwinding, consistent with a model in which the “leading” AdnB motor propagates a Y-fork by translocation along the 3′ DNA strand, ahead of the “lagging” AdnA motor domain. By tracking the resection of the 5′ and 3′ strands at the DSB ends, we illuminated a division of labor among the AdnA and AdnB nuclease modules during dsDNA unwinding, whereby the AdnA nuclease processes the unwound 5′ strand to liberate a short oligonucleotide product, and the AdnB nuclease incises the 3′ strand on which the motor translocates. These results extend our understanding of presynaptic DSB processing by AdnAB and engender instructive comparisons with the RecBCD and AddAB clades of bacterial helicase-nuclease machines.
机译:分枝杆菌AdnAB是一种异源二聚体DNA解旋酶核酸酶和3'至5'DNA转位酶,参与双链断裂(DSB)的修复。 AdnA和AdnB亚基分别由N末端马达结构域和C末端核酸酶结构域组成。在包含线性质粒dsDNA的反应中加入分枝杆菌单链DNA结合蛋白(SSB),使我们能够在未解绕的单链被SSB覆盖的条件下研究AdnAB解旋酶,从而防止其重新退火或促进正在进行的ATP水解。我们发现,AdnAB电机以大约250 bp s-1的速率催化2.7–11.2-kbp线性双链DNA的进行性解链,而每bp解链约水解5个ATP。削弱AdnA磷酸水解酶的活性位点不会影响退绕速度,但会稍微降低能量消耗,使其降低至约4.2 ATP bp-1。 AdnB磷酸水解酶的突变消除了双链解绕,这与“领先” AdnB马达通过沿“滞后” AdnA马达结构域沿3'DNA链易位传播Y叉的模型相一致。通过追踪DSB末端5'和3'链的切除,我们阐明了dsDNA展开过程中AdnA和AdnB核酸酶模块之间的分工,从而使AdnA核酸酶处理解链的5'链以释放短的寡核苷酸产物,而AdnB核酸酶切入马达易位的3'链。这些结果扩展了我们对AdnAB处理突触前DSB的理解,并与细菌解旋酶核酸酶机器的RecBCD和AddAB进化枝进行了有益的比较。

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