Aarattuthodiyil Suja, Byrd Alicia K, Raney Kevin D
Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA
Nucleic Acids Res. 2014 Oct;42(18):11707-20. doi: 10.1093/nar/gku845. Epub 2014 Sep 23.
Interactions between helicases and the tracking strand of a DNA substrate are well-characterized; however, the role of the displaced strand is a less understood characteristic of DNA unwinding. Dda helicase exhibited greater processivity when unwinding a DNA fork compared to a ss/ds DNA junction substrate. The lag phase in the unwinding progress curve was reduced for the forked DNA compared to the ss/ds junction. Fewer kinetic steps were required to unwind the fork compared to the ss/ds junction, suggesting that binding to the fork leads to disruption of the duplex. DNA footprinting confirmed that interaction of Dda with a fork leads to two base pairs being disrupted whereas no disruption of base pairing was observed with the ss/ds junction. Neutralization of the phosphodiester backbone resulted in a DNA-footprinting pattern similar to that observed with the ss/ds junction, consistent with disruption of the interaction between Dda and the displaced strand. Several basic residues in the 1A domain which were previously proposed to bind to the incoming duplex DNA were replaced with alanines, resulting in apparent loss of interaction with the duplex. Taken together, these results suggest that Dda interaction with the tracking strand, displaced strand and duplex coordinates DNA unwinding.
解旋酶与DNA底物的追踪链之间的相互作用已得到充分表征;然而,被置换链在DNA解旋过程中的作用却鲜为人知。与单链/双链DNA连接底物相比,Dda解旋酶在解开DNA叉时表现出更高的持续合成能力。与单链/双链连接相比,叉状DNA解旋过程曲线中的滞后阶段有所缩短。与单链/双链连接相比,解开叉状结构所需的动力学步骤更少,这表明与叉状结构的结合会导致双链的破坏。DNA足迹分析证实,Dda与叉状结构的相互作用会导致两个碱基对被破坏,而在单链/双链连接中未观察到碱基对的破坏。磷酸二酯主链的中和导致了与单链/双链连接中观察到的类似的DNA足迹模式,这与Dda和被置换链之间相互作用的破坏一致。先前被认为与进入的双链DNA结合的1A结构域中的几个碱性残基被丙氨酸取代,导致与双链的相互作用明显丧失。综上所述,这些结果表明Dda与追踪链、被置换链和双链的相互作用协调了DNA解旋。