Komazin-Meredith Gloria, Santos Webster L, Filman David J, Hogle James M, Verdine Gregory L, Coen Donald M
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, 250 Longwood Avenue, Boston, MA 02115, USA.
J Biol Chem. 2008 Mar 7;283(10):6154-61. doi: 10.1074/jbc.M708691200. Epub 2008 Jan 4.
Herpes simplex virus DNA polymerase is a heterodimer composed of UL30, a catalytic subunit, and UL42, a processivity subunit. Mutations that decrease DNA binding by UL42 decrease long chain DNA synthesis by the polymerase. The crystal structure of UL42 bound to the C terminus of UL30 revealed an extensive positively charged surface ("back face"). We tested two hypotheses, 1) the C terminus of UL30 affects DNA binding and 2) the positively charged back face mediates DNA binding. Addressing the first hypothesis, we found that the presence of a peptide corresponding to the UL30 C terminus did not result in altered binding of UL42 to DNA. Addressing the second hypothesis, previous work showed that substitution of four conserved arginine residues on the basic face with alanines resulted in decreased DNA affinity. We tested the affinities for DNA and the stimulation of long chain DNA synthesis of mutants in which the four conserved arginine residues were substituted individually or together with lysines and also a mutant in which a conserved glutamine residue was substituted with an arginine to increase positive charge on the back face. We also engineered cysteines onto this surface to permit disulfide cross-linking studies. Last, we assayed the effects of ionic strength on DNA binding by UL42 to estimate the number of ions released upon binding. Our results taken together strongly suggest that the basic back face of UL42 contacts DNA and that positive charge on this surface is important for this interaction.
单纯疱疹病毒DNA聚合酶是一种异二聚体,由催化亚基UL30和持续合成因子亚基UL42组成。降低UL42与DNA结合能力的突变会减少该聚合酶的长链DNA合成。与UL30 C末端结合的UL42晶体结构显示出一个广泛的带正电荷表面(“背面”)。我们测试了两个假设,1)UL30的C末端影响DNA结合,2)带正电荷的背面介导DNA结合。针对第一个假设,我们发现对应于UL30 C末端的肽的存在不会导致UL42与DNA结合的改变。针对第二个假设,先前的研究表明,将碱性面上的四个保守精氨酸残基替换为丙氨酸会导致DNA亲和力降低。我们测试了DNA亲和力以及四个保守精氨酸残基单独或与赖氨酸一起被替换的突变体以及一个保守谷氨酰胺残基被精氨酸替换以增加背面正电荷的突变体对长链DNA合成的刺激作用。我们还在这个表面上设计了半胱氨酸以进行二硫键交联研究。最后,我们测定了离子强度对UL42与DNA结合的影响,以估计结合时释放的离子数量。我们的综合结果强烈表明,UL42的碱性背面与DNA接触,并且该表面上的正电荷对于这种相互作用很重要。