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Identification of phosphorylation sites on transcription factor Sp1 in response to DNA damage and its accumulation at damaged sites

机译:识别转录因子Sp1上的磷酸化位点以响应DNA损伤及其在损伤位点的积累

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DNA damage induces hyper-phosphorylation of the Sp1 transcriptional factor. We have demonstrated that ionizing radiation-associated DNA double-strand breaks (DSBs) induce phosphorylation of at least Ser-56 and Ser-101 residues on Sp1 in an ATM-dependent manner. UV irradiation- or hydroxyurea (HU)-induced replicative stress results in phosphorylation of only the Ser-101 residue. Furthermore, silencing of the ATM- and Rad3-related protein (ATR) in ATM-deficient cells treated with HU abrogated the Ser-101 phosphorylation. Thus, phosphorylation of Ser-101 on Sp1 appears to be a general response to DNA damage dependent on both ATM and ATR. Although silencing of Sp1 expression by siRNA targeting resulted in an increase in sensitivity to ionizing radiation (IR), the Ser-101 phosphorylation did not affect transcriptional activity from the Sp1 responsive promoter. Confocal laser microscopy analysis revealed co-localization of phosphorylated Sp1 at Ser-101 with phosphorylated ATM at Ser-1981, the affected sites representing DSBs. These observations suggest that phosphorylated Sp1 might play a role in DNA repair at damage sites rather than functioning in transcriptional regulation. (C) 2008 Elsevier Inc. All rights reserved.
机译:DNA损伤诱导Sp1转录因子的过度磷酸化。我们已经证明,电离辐射相关的DNA双链断裂(DSBs)会以ATM依赖性方式在Sp1上诱导至少Ser-56和Ser-101残基的磷酸化。 UV辐射或羟基脲(HU)诱导的复制应激仅导致Ser-101残基的磷酸化。此外,用HU处理的ATM缺陷细胞中ATM和Rad3相关蛋白(ATR)的沉默消除了Ser-101磷酸化。因此,Sp1上Ser-101的磷酸化似乎是对依赖于ATM和ATR的DNA损伤的一般反应。尽管通过siRNA靶向沉默Sp1表达导致对电离辐射(IR)的敏感性增加,但Ser-101磷酸化并不影响Sp1反应启动子的转录活性。共聚焦激光显微镜分析显示,Ser-101处的磷酸化Sp1与Ser-1981处的磷酸化ATM共同定位,受影响的部位代表DSB。这些观察结果表明磷酸化的Sp1可能在损伤部位的DNA修复中起作用,而不是在转录调控中起作用。 (C)2008 Elsevier Inc.保留所有权利。

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