Department of Biophysical Chemistry, University of Basel, Biozentrum, Klingelbergstrasse 70, CH-4056 Basel and Hoffmann-La Roche AG, Grenzacher Strasse 124, CH-4070 Basel, Switzerland.
Nucleic Acids Res. 2011 Mar;39(5):1789-800. doi: 10.1093/nar/gkq1048. Epub 2010 Nov 4.
Reverse gyrase is the only topoisomerase that can introduce positive supercoils into DNA in an ATP-dependent process. It has a modular structure and harnesses a helicase-like domain to support a topoisomerase activity, thereby creating the unique function of positive DNA supercoiling. The isolated topoisomerase domain can relax negatively supercoiled DNA, an activity that is suppressed in reverse gyrase. The isolated helicase-like domain is a nucleotide-dependent switch that is attenuated by the topoisomerase domain. Inter-domain communication thus appears central for the functional cooperation of the two domains. The latch, an insertion into the helicase-like domain, has been suggested as an important element in coordinating their activities. Here, we have dissected the influence of the latch on nucleotide and DNA binding to the helicase-like domain, and on DNA supercoiling by reverse gyrase. We find that the latch is required for positive DNA supercoiling. It is crucial for the cooperativity of DNA and nucleotide binding to the helicase-like domain. The latch contributes to DNA binding, and affects the preference of reverse gyrase for ssDNA. Thus, the latch coordinates the individual domain activities by modulating the helicase-like domain, and by communicating changes in the nucleotide state to the topoisomerase domain.
反转酶是唯一一种能够在 ATP 依赖的过程中将正超螺旋引入 DNA 的拓扑异构酶。它具有模块化结构,并利用解旋酶样结构域来支持拓扑异构酶活性,从而创造了正 DNA 超螺旋的独特功能。分离的拓扑异构酶结构域可以松弛负超螺旋的 DNA,这种活性在反转酶中受到抑制。分离的解旋酶样结构域是一个核苷酸依赖性开关,被拓扑异构酶结构域减弱。因此,结构域间的通讯似乎对于两个结构域的功能合作至关重要。闩锁是插入到解旋酶样结构域中的一个结构,被认为是协调其活性的重要元件。在这里,我们分析了闩锁对核苷酸和 DNA 与解旋酶样结构域结合以及反转酶对 DNA 超螺旋的影响。我们发现,闩锁对于正 DNA 超螺旋是必需的。它对于 DNA 和核苷酸与解旋酶样结构域的协同结合至关重要。闩锁有助于 DNA 结合,并影响反转酶对 ssDNA 的偏好。因此,闩锁通过调节解旋酶样结构域,并将核苷酸状态的变化传达给拓扑异构酶结构域,来协调各个结构域的活性。