首页> 外文期刊>Nucleic Acids Research >Deficiency in 3 '-phosphoglycolate processing in human cells with a hereditary mutation in tyrosyl-DNA phosphodiesterase (TDP1)
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Deficiency in 3 '-phosphoglycolate processing in human cells with a hereditary mutation in tyrosyl-DNA phosphodiesterase (TDP1)

机译:酪氨酸-DNA磷酸二酯酶(TDP1)的遗传突变的人类细胞中3'-磷酸乙醇酸加工的缺陷。

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Tyrosyl-DNA phosphodiesterase (TDP1) is a DNA repair enzyme that removes peptide fragments linked through tyrosine to the 3' end of DNA, and can also remove 3'-phosphoglycolates (PGs) formed by free radical-mediated DNA cleavage. To assess whether TDP1 is primarily responsible for PG removal during in vitro end joining of DNA double-strand breaks (DSBs), whole-cell extracts were prepared from lymphoblastoid cells derived either from spinocerebellar ataxia with axonal neuropathy (SCAN1) patients, who have an inactivating mutation in the active site of TDP1, or from closely matched normal controls. Whereas extracts from normal cells catalyzed conversion of 3'-PG termini, both on single-strand oligomers and on 3' overhangs of DSBs, to 3'-phosphate termini, extracts of SCAN1 cells did not process either substrate. Addition of recombinant TDP1 to SCAN1 extracts restored 3'-PG removal, allowing subsequent gap filling on the aligned DSB ends. Two of three SCAN1 lines examined were slightly more radiosensitive than normal cells, but only for fractionated radiation in plateau phase. The results suggest that the TDP1 mutation in SCAN1 abolishes the 3'-PG processing activity of the enzyme, and that there are no other enzymes in cell extracts capable of processing protruding 3'-PG termini. However, the lack of severe radiosensitivity suggests that there must be alternative, TDP1-independent pathways for repair of 3'-PG DSBs.
机译:酪氨酰DNA磷酸二酯酶(TDP1)是一种DNA修复酶,可去除通过酪氨酸连接到DNA 3'末端的肽片段,还可以去除自由基介导的DNA切割形成的3'-磷酸乙醇酸(PGs)。为了评估TDP1是否主要负责DNA双链断裂(DSB)体外末端连接过程中的PG去除,从脊髓小脑共济失调伴轴索神经病(SCAN1)患者的淋巴母细胞中提取全细胞提取物。 TDP1活性位点或紧密匹配的正常对照中的失活突变。正常细胞的提取物催化单链寡聚体和DSB的3'突出端的3'-PG末端转化为3'-磷酸末端,而SCAN1细胞的提取物则不处理任何一种底物。将重组TDP1添加到SCAN1提取物中可恢复3'-PG的去除,从而允许随后在对齐的DSB末端填充缺口。所检查的三个SCAN1系中的两个比正常细胞对放射线的敏感性略高,但仅对平台期的分馏放射线敏感。结果表明,SCAN1中的TDP1突变消除了该酶的3'-PG加工活性,并且在细胞提取物中没有其他酶能够加工突出的3'-PG末端。然而,缺乏严重的放射敏感性表明必须存在替代的TDP1独立途径来修复3'-PG DSB。

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