Specialization among Iron-Sulfur Cluster Helicases to Resolve G-quadruplex DNA Structures That Threaten Genomic Stability

被引:107
作者
Bharti, Sanjay Kumar [1 ]
Sommers, Joshua A. [1 ]
George, Fourbears [1 ]
Kuper, Jochen [2 ]
Hamon, Florian [3 ]
Shin-ya, Kazuo [4 ]
Teulade-Fichou, Marie-Paule [3 ]
Kisker, Caroline [2 ]
Brosh, Robert M., Jr. [1 ]
机构
[1] NIA, Lab Mol Gerontol, NIH, Biomed Res Ctr, Baltimore, MD 21224 USA
[2] Univ Wurzburg, Inst Biol Struct, Rudolf Virchow Ctr Expt Biomed, D-97080 Wurzburg, Germany
[3] Univ Paris 11, CNRS, UMR 176, Inst Curie, F-91405 Orsay, France
[4] Natl Inst Adv Ind Sci & Technol, Biomed Informat Res Ctr, Koto Ku, Tokyo 1350064, Japan
基金
美国国家卫生研究院;
关键词
ANEMIA GROUP J; BIOCHEMICAL-CHARACTERIZATION; SMALL-MOLECULE; FANCJ; REPLICATION; GENE; BACH1; TELOMESTATIN; MAINTENANCE; INSTABILITY;
D O I
10.1074/jbc.M113.496463
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
G-quadruplex (G4) DNA, an alternate structure formed by Hoogsteen hydrogen bonds between guanines in G-rich sequences, threatens genomic stability by perturbing normal DNA transactions including replication, repair, and transcription. A variety of G4 topologies (intra- and intermolecular) can form in vitro, but the molecular architecture and cellular factors influencing G4 land-scape in vivo are not clear. Helicases that unwind structured DNA molecules are emerging as an important class of G4-resolving enzymes. The BRCA1-associated FANCJ helicase is among those helicases able to unwind G4 DNA in vitro, and FANCJ mutations are associated with breast cancer and linked to Fanconi anemia. FANCJ belongs to a conserved iron-sulfur (Fe S) cluster family of helicases important for genomic stability including XPD (nucleotide excision repair), DDX11 (sister chromatid cohesion), and RTEL (telomere metabolism), genetically linked to xeroderma pigmentosum/Cockayne syndrome, Warsaw breakage syndrome, and dyskeratosis congenita, respectively. To elucidate the role of FANCJ in genomic stability, its molecular functions in G4 metabolism were examined. FANCJ efficiently unwound in a kinetic and ATPase-dependent manner entropically favored unimolecular G4 DNA, whereas other Fe-S helicases tested did not. The G4-specific ligands Phen-DC3 or Phen-DC6 inhibited FANCJ helicase on unimolecular G4 similar to 1000-fold better than bi- or tetramolecular G4 DNA. The G4 ligand telomestatin induced DNA damage inhuman cells deficient in FANCJ but not DDX11 or XPD. These findings suggest FANCJ is a specialized Fe-S cluster helicase that preserves chromosomal stability by unwinding unimolecular G4 DNA likely to form in transiently unwound single-stranded genomic regions.
引用
收藏
页码:28217 / 28229
页数:13
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