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Methylated TRF2 associates with the nuclear matrix and serves as a potential biomarker for cellular senescence

机译:甲基化的TRF2与核基质结合并充当细胞衰老的潜在生物标志物

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摘要

Methylation of N-terminal arginines of the shelterin component TRF2 is important for cellular proliferation. While TRF2 is found at telomeres, where it plays an essential role in maintaining telomere integrity, little is known about the cellular localization of methylated TRF2. Here we report that the majority of methylated TRF2 is resistant to extraction by high salt buffer and DNase I treatment, indicating that methylated TRF2 is tightly associated with the nuclear matrix. We show that methylated TRF2 drastically alters its nuclear staining as normal human primary fibroblast cells approach and enter replicative senescence. This altered nuclear staining, which is found to be overwhelmingly associated with misshapen nuclei and abnormal nuclear matrix folds, can be suppressed by hTERT and it is barely detectable in transformed and cancer cell lines. We find that dysfunctional telomeres and DNA damage, both of which are potent inducers of cellular senescence, promote the altered nuclear staining of methylated TRF2, which is dependent upon the ATM-mediated DNA damage response. Collectively, these results suggest that the altered nuclear staining of methylated TRF2 may represent ATM-mediated nuclear structural alteration associated with cellular senescence. Our data further imply that methylated TRF2 can serve as a potential biomarker for cellular senescence.
机译:防护素组分TRF2的N-末端精氨酸的甲基化对于细胞增殖很重要。虽然TRF2在端粒中发现,在端粒保持端粒完整性中起着至关重要的作用,但对甲基化TRF2的细胞定位知之甚少。在这里我们报告大多数甲基化的TRF2抵抗高盐缓冲液和DNase I处理的提取,表明甲基化的TRF2与核基质紧密相关。我们显示,甲基化的TRF2会随着正常人的原代成纤维细胞的进入而急剧复制,并进入复制性衰老。这种改变的核染色被发现与畸形的核和异常的核基质折叠极为相关,可通过hTERT加以抑制,并且在转化和癌细胞系中几乎无法检测到。我们发现功能失调的端粒和DNA损伤,两者都是细胞衰老的有效诱导剂,促进甲基化TRF2的核染色改变,这取决于ATM介导的DNA损伤反应。总的来说,这些结果表明甲基化的TRF2的核染色改变可能代表了ATM介导的与细胞衰老相关的核结构改变。我们的数据进一步暗示甲基化的TRF2可以作为细胞衰老的潜在生物标记。

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