Guo Caixia, Fischhaber Paula L, Luk-Paszyc Margaret J, Masuda Yuji, Zhou Jing, Kamiya Kenji, Kisker Caroline, Friedberg Errol C
Laboratory of Molecular Pathology, Department of Pathology, University of Texas Southwestern Medical Center, Dallas,TX 75390-9072, USA.
EMBO J. 2003 Dec 15;22(24):6621-30. doi: 10.1093/emboj/cdg626.
Pol kappa and Rev1 are members of the Y family of DNA polymerases involved in tolerance to DNA damage by replicative bypass [translesion DNA synthesis (TLS)]. We demonstrate that mouse Rev1 protein physically associates with Pol kappa. We show too that Rev1 interacts independently with Rev7 (a subunit of a TLS polymerase, Pol zeta) and with two other Y-family polymerases, Pol iota and Pol eta. Mouse Pol kappa, Rev7, Pol iota and Pol eta each bind to the same approximately 100 amino acid C-terminal region of Rev1. Furthermore, Rev7 competes directly with Pol kappa for binding to the Rev1 C-terminus. Notwithstanding the physical interaction between Rev1 and Pol kappa, the DNA polymerase activity of each measured by primer extension in vitro is unaffected by the complex, either when extending normal primer-termini, when bypassing a single thymine glycol lesion, or when extending certain mismatched primer termini. Our observations suggest that Rev1 plays a role(s) in mediating protein-protein interactions among DNA polymerases required for TLS. The precise function(s) of these interactions during TLS remains to be determined.
Pol κ和Rev1是Y家族DNA聚合酶的成员,参与通过复制性跨越[跨损伤DNA合成(TLS)]来耐受DNA损伤。我们证明小鼠Rev1蛋白与Pol κ存在物理关联。我们还表明,Rev1独立地与Rev7(一种TLS聚合酶Pol ζ的亚基)以及另外两种Y家族聚合酶Pol ι和Pol η相互作用。小鼠Pol κ、Rev7、Pol ι和Pol η均与Rev1大约100个氨基酸的C末端区域结合。此外,Rev7与Pol κ直接竞争结合Rev1的C末端。尽管Rev1和Pol κ之间存在物理相互作用,但通过体外引物延伸测量的每种酶的DNA聚合酶活性不受该复合物的影响,无论是在延伸正常引物末端时、跨越单个胸腺嘧啶乙二醇损伤时,还是在延伸某些错配引物末端时。我们的观察结果表明,Rev1在介导TLS所需的DNA聚合酶之间的蛋白质-蛋白质相互作用中发挥作用。这些相互作用在TLS期间的确切功能仍有待确定。