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(5'S)-5',8-环-2'-脱氧腺苷对氧化产生的簇状DNA损伤碱基切除修复的影响。一项生化与理论研究。

Effects of (5'S)-5',8-cyclo-2'-deoxyadenosine on the base excision repair of oxidatively generated clustered DNA damage. A biochemical and theoretical study.

作者信息

Karwowski Boleslaw T, Bellon Sophie, O'Neill Peter, Lomax Martine E, Cadet Jean

机构信息

Food Science Department, Medical University of Lodz, Muszynskiego str. 1, 90-151 Lodz, Poland.

出版信息

Org Biomol Chem. 2014 Nov 21;12(43):8671-82. doi: 10.1039/c4ob01089b.

Abstract

The presence of 5',8-cyclo-2'-deoxyadenosine (5'S)-cdA induces modifications in the geometry of the DNA duplex in the 5'-end direction of the strand and in the 3'-end direction of the complementary strand. As a consequence, the enzymes are probably not able to adjust their active sites in this rigid structure. Additionally, clustered DNA damage sites, a signature of ionising radiation, pose a severe challenge to a cell's repair machinery, particularly base excision repair (BER). To date, clusters containing a DNA base lesion, (5'S)-cdA, which is repaired by nucleotide excision repair, have not been explored. We have therefore investigated whether bistranded clusters containing (5'S)-cdA influence the repairability of an opposed AP site lesion, which is repaired by BER. Using synthetic oligonucleotides containing a bistranded cluster with (5'S)-cdA and an AP site at different interlesion separations, we have shown that in the presence of (5'S)-cdA on the 5'-end side, repair of the AP site by the BER machinery is retarded when the AP site is ≤8 bases from the (5'S)-cdA. However, if (5'S)-cdA is located on the 3'-end side with respect to the AP site, the effect on its repair is much weaker and totally disappears for distances ≥8 bases.

摘要

5',8-环-2'-脱氧腺苷(5'S)-cdA的存在会导致DNA双链在该链5'端方向以及互补链3'端方向的几何结构发生改变。因此,酶可能无法在这种刚性结构中调整其活性位点。此外,成簇的DNA损伤位点是电离辐射的特征,对细胞的修复机制,尤其是碱基切除修复(BER)构成了严峻挑战。迄今为止,尚未探索过包含由核苷酸切除修复进行修复的DNA碱基损伤(5'S)-cdA的簇。因此,我们研究了含有(5'S)-cdA的双链簇是否会影响由BER修复的相对AP位点损伤的可修复性。使用含有在不同损伤间隔处带有(5'S)-cdA和一个AP位点的双链簇的合成寡核苷酸,我们发现当AP位点距离(5'S)-cdA≤8个碱基时,在5'端侧存在(5'S)-cdA的情况下,BER机制对AP位点的修复会受到阻碍。然而,如果(5'S)-cdA相对于AP位点位于3'端侧,对其修复的影响则要弱得多,并且对于≥8个碱基的距离,这种影响会完全消失。

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