Kumari Anuradha, Minko Irina G, Smith Rebecca L, Lloyd R Stephen, McCullough Amanda K
Department of Molecular and Medical Genetics, Oregon Health & Science University, Center for Research on Occupational and Environmental Toxicology, Portland, Oregon 97239, USA.
J Biol Chem. 2010 Jul 9;285(28):21313-22. doi: 10.1074/jbc.M109.078964. Epub 2010 May 4.
UvrD (DNA helicase II) has been implicated in DNA replication, DNA recombination, nucleotide excision repair, and methyl-directed mismatch repair. The enzymatic function of UvrD is to translocate along a DNA strand in a 3' to 5' direction and unwind duplex DNA utilizing a DNA-dependent ATPase activity. In addition, UvrD interacts with many other proteins involved in the above processes and is hypothesized to facilitate protein turnover, thus promoting further DNA processing. Although UvrD interactions with proteins bound to DNA have significant biological implications, the effects of covalent DNA-protein cross-links on UvrD helicase activity have not been characterized. Herein, we demonstrate that UvrD-catalyzed strand separation was inhibited on a DNA strand to which a 16-kDa protein was covalently bound. Our sequestration studies suggest that the inhibition of UvrD activity is most likely due to a translocation block and not helicase sequestration on the cross-link-containing DNA substrate. In contrast, no inhibition of UvrD-catalyzed strand separation was apparent when the protein was linked to the complementary strand. The latter result is surprising given the earlier observations that the DNA in this covalent complex is severely bent ( approximately 70 degrees ), with both DNA strands making multiple contacts with the cross-linked protein. In addition, UvrD was shown to be required for replication of plasmid DNAs containing covalent DNA-protein complexes. Combined, these data suggest a critical role for UvrD in the processing of DNA-protein cross-links.
UvrD(DNA解旋酶II)与DNA复制、DNA重组、核苷酸切除修复以及甲基导向错配修复有关。UvrD的酶促功能是沿DNA链以3'至5'方向移位,并利用依赖于DNA的ATPase活性解开双链DNA。此外,UvrD与许多参与上述过程的其他蛋白质相互作用,并被推测有助于蛋白质周转,从而促进进一步的DNA加工。尽管UvrD与结合在DNA上的蛋白质的相互作用具有重要的生物学意义,但共价DNA-蛋白质交联对UvrD解旋酶活性的影响尚未得到表征。在此,我们证明,在共价结合有16 kDa蛋白质的DNA链上,UvrD催化的链分离受到抑制。我们的隔离研究表明,UvrD活性的抑制很可能是由于移位受阻,而不是解旋酶在含交联的DNA底物上被隔离。相反,当蛋白质与互补链相连时,未观察到UvrD催化的链分离受到抑制。鉴于早期观察到该共价复合物中的DNA严重弯曲(约70度),两条DNA链均与交联蛋白有多处接触,后一结果令人惊讶。此外,已证明UvrD是含有共价DNA-蛋白质复合物的质粒DNA复制所必需的。综合这些数据表明,UvrD在DNA-蛋白质交联的加工过程中起关键作用。