Mason Aaron C, Rambo Robert P, Greer Briana, Pritchett Michael, Tainer John A, Cortez David, Eichman Brandt F
Department of Biological Sciences, Vanderbilt University, Nashville, TN 37232;
Life Sciences Division, Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720; and.
Proc Natl Acad Sci U S A. 2014 May 27;111(21):7618-23. doi: 10.1073/pnas.1324143111. Epub 2014 May 12.
SMARCAL1, a DNA remodeling protein fundamental to genome integrity during replication, is the only gene associated with the developmental disorder Schimke immuno-osseous dysplasia (SIOD). SMARCAL1-deficient cells show collapsed replication forks, S-phase cell cycle arrest, increased chromosomal breaks, hypersensitivity to genotoxic agents, and chromosomal instability. The SMARCAL1 catalytic domain (SMARCAL1(CD)) is composed of an SNF2-type double-stranded DNA motor ATPase fused to a HARP domain of unknown function. The mechanisms by which SMARCAL1 and other DNA translocases repair replication forks are poorly understood, in part because of a lack of structural information on the domains outside of the common ATPase motor. In the present work, we determined the crystal structure of the SMARCAL1 HARP domain and examined its conformation and assembly in solution by small angle X-ray scattering. We report that this domain is conserved with the DNA mismatch and damage recognition domains of MutS/MSH and NER helicase XPB, respectively, as well as with the putative DNA specificity motif of the T4 phage fork regression protein UvsW. Loss of UvsW fork regression activity by deletion of this domain was rescued by its replacement with HARP, establishing the importance of this domain in UvsW and demonstrating a functional complementarity between these structurally homologous domains. Mutation of predicted DNA-binding residues in HARP dramatically reduced fork binding and regression activities of SMARCAL1(CD). Thus, this work has uncovered a conserved substrate recognition domain in DNA repair enzymes that couples ATP-hydrolysis to remodeling of a variety of DNA structures, and provides insight into this domain's role in replication fork stability and genome integrity.
SMARCAL1是一种在复制过程中对基因组完整性至关重要的DNA重塑蛋白,是与发育障碍施密克免疫性骨发育不良(SIOD)相关的唯一基因。缺乏SMARCAL1的细胞表现出复制叉坍塌、S期细胞周期停滞、染色体断裂增加、对基因毒性剂敏感以及染色体不稳定。SMARCAL1催化结构域(SMARCAL1(CD))由一个与功能未知的HARP结构域融合的SNF2型双链DNA马达ATP酶组成。人们对SMARCAL1和其他DNA转位酶修复复制叉的机制了解甚少,部分原因是缺乏关于常见ATP酶马达之外结构域的结构信息。在本研究中,我们确定了SMARCAL1 HARP结构域的晶体结构,并通过小角X射线散射研究了其在溶液中的构象和组装。我们报告称,该结构域分别与MutS/MSH的DNA错配和损伤识别结构域以及NER解旋酶XPB保守,也与T4噬菌体叉回归蛋白UvsW的推定DNA特异性基序保守。通过用HARP替换该结构域,挽救了因缺失该结构域而导致的UvsW叉回归活性丧失,确立了该结构域在UvsW中的重要性,并证明了这些结构同源结构域之间的功能互补性。HARP中预测的DNA结合残基的突变显著降低了SMARCAL1(CD)的叉结合和回归活性。因此,这项工作揭示了DNA修复酶中一个保守的底物识别结构域,该结构域将ATP水解与多种DNA结构重塑偶联起来,并深入了解了该结构域在复制叉稳定性和基因组完整性中的作用。