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Unfolding of quadruplex structure in the G-rich strand of the minisatellite repeat by the binding protein UP1

机译:结合蛋白UP1在小卫星重复序列的富G链中四链体结构的展开

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摘要

The mouse hypervariable minisatellite (MN) Pc-1 consists of tandem repeats of d(GGCAG) and flanked sequences. We have previously demonstrated that single-stranded d(GGCAG)_n folds into the intramolecular folded-back quadruplex structure under physiological conditions. Because DNA polymerase progression in vitro is blocked at the repeat, the characteristic intramolecular quadruplex structure of the repeat, at least in part, could be responsible for the hypermutable feature of Pc-1 and other MNs with similar repetitive units. On the other hand, we have isolated six MN Pc-1 binding proteins (MNBPs) from nuclear extracts of NIH 3T3 cells. Here, we describe one of those MNBPs, MNBP-B, that binds to the single-stranded d(GGCAG)_n. Amino acid sequences of seven proteolytic peptide fragments of MNBP-B were determined, and the cDNA clones were isolated. MNBP-B was proven identical to the single-stranded DNA-binding protein, UP1. Recombinant UP1 bound to single-stranded d(GGCAG)_n and other G-rich repetitive sequences, such as d(GTCAGG)_n and d(GTTAGG)_n. In addition, UP1 was demonstrated by CD spectrum analysis to unfold the intramolecular quadruplex structure of d(GGCAG)_5 and d(TTAGGG)_4 and to abrogate the arrest of DNA synthesis at the d(GGG)_n site. This ability of UP1 suggests that unfolding of quadruplex DNA is required for DNA synthesis processes.
机译:小鼠高变微卫星(MN)Pc-1由d(GGCAG)和侧翼序列的串联重复序列组成。我们以前已经证明,在生理条件下,单链d(GGCAG)_n可折叠成分子内折回四链体结构。由于体外DNA聚合酶进程在重复序列处被阻断,因此重复序列的特征分子内四链体结构至少部分可能是Pc-1和其他具有相似重复单元的MNs的超突变特征。另一方面,我们从NIH 3T3细胞的核提取物中分离了六个MN Pc-1结合蛋白(MNBP)。在这里,我们描述了绑定到单链d(GGCAG)_n的那些MNBP之一MNBP-B。确定了MNBP-B的七个蛋白水解肽片段的氨基酸序列,并分离了cDNA克隆。 MNBP-B被证明与单链DNA结合蛋白UP1相同。重组UP1结合到单链d(GGCAG)_n和其他富含G的重复序列,例如d(GTCAGG)_n和d(GTTAGG)_n。此外,通过CD光谱分析证明UP1可以展开d(GGCAG)_5和d(TTAGGG)_4的分子内四链体结构,并消除d(GGG)_n位点的DNA合成停滞。 UP1的这种能力表明DNA合成过程需要四链DNA的展开。

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