Institute for Cancer Studies, University of Sheffield, UK.
Biochem J. 2010 Aug 15;430(1):119-28. doi: 10.1042/BJ20100612.
Pif1 proteins are helicases that in yeast are implicated in the maintenance of genome stability. One activity of Saccharomyces cerevisiae Pif1 is to stabilize DNA sequences that could otherwise form deleterious G4 (G-quadruplex) structures by acting as a G4 resolvase. The present study shows that human Pif1 (hPif1, nuclear form) is a G4 DNA-binding and resolvase protein and that these activities are properties of the conserved helicase domain (amino acids 206-620 of 641, hPifHD). hPif1 preferentially bound synthetic G4 DNA relative to ssDNA (single-stranded DNA), dsDNA (double-stranded DNA) and a partially single-stranded duplex DNA helicase substrate. G4 DNA unwinding, but not binding, required an extended (>10 nucleotide) 5' ssDNA tail, and in competition assays, G4 DNA was an ineffective suppressor of helicase activity compared with ssDNA. These results suggest a distinction between the determinants of G4 DNA binding and the ssDNA interactions required for helicase action and that hPif1 may act on G4 substrates by binding alone or as a resolvase. Human Pif1 could therefore have a role in processing G4 structures that arise in the single-stranded nucleic acid intermediates formed during DNA replication and gene expression.
Pif1 蛋白是一种解旋酶,在酵母中,它与基因组稳定性的维持有关。酿酒酵母 Pif1 的一种活性是通过充当 G4 结构解旋酶来稳定可能形成有害 G4(G-四链体)结构的 DNA 序列。本研究表明,人 Pif1(核形式)是一种 G4 DNA 结合和解旋酶蛋白,这些活性是保守的解旋酶结构域(641 个氨基酸中的 206-620 个氨基酸,hPifHD)的特性。与 ssDNA(单链 DNA)、dsDNA(双链 DNA)和部分单链双链 DNA 解旋酶底物相比,hPif1 优先结合合成的 G4 DNA。G4 DNA 解旋,但不结合,需要一个延伸的(>10 个核苷酸)5' ssDNA 尾巴,在竞争测定中,与 ssDNA 相比,G4 DNA 是一种无效的解旋酶活性抑制剂。这些结果表明,G4 DNA 结合的决定因素与解旋酶活性所需的 ssDNA 相互作用之间存在区别,并且 hPif1 可能通过单独结合或作为解旋酶来作用于 G4 底物。因此,人 Pif1 可能在处理在 DNA 复制和基因表达过程中形成的单链核酸中间体中出现的 G4 结构方面发挥作用。