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首页> 外文期刊>The Journal of biological chemistry >Human TEN1 Maintains Telomere Integrity and Functions in Genome-wide Replication Restart
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Human TEN1 Maintains Telomere Integrity and Functions in Genome-wide Replication Restart

机译:人体Ten1在基因组复制重新启动中保持端粒完整性和功能

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TEN1 is a component of the mammalian CTC1-STN1-TEN1 complex. CTC1 and/or STN1 functions in telomere duplex replication, C-strand fill-in, and genome-wide restart of replication following fork stalling. Here we examine the role of human TEN1 and ask whether it also functions as a specialized replication factor. TEN1 depletion causes an increase in multitelomere fluorescent in situ hybridization (FISH) signals similar to that observed after CTC1 or STN1 depletion. However, TEN1 depletion also results in increased telomere loss. This loss is not accompanied by increased telomere deprotection, recombination, or T-circle release. Thus, it appears that both the multiple telomere signals and telomere loss stem from problems in telomere duplex replication. TEN1 depletion can also affect telomere length, but whether telomeres lengthen or shorten is cell line-dependent. Like CTC1 and STN1, TEN1 is needed for G-overhang processing. Depletion of TEN1 does not effect overhang elongation in mid-S phase, but it delays overhang shortening in late S/G2. These results indicate a role for TEN1 in C-strand fill-in but do not support a direct role in telomerase regulation. Finally, TEN1 depletion causes a decrease in genome-wide replication restart following fork stalling similar to that observed after STN1 depletion. However, anaphase bridge formation is more severe than with CTC1 or STN1 depletion. Our findings indicate that TEN1 likely functions in conjunction with CTC1 and STN1 at the telomere and elsewhere in the genome. They also raise the possibility that TEN1 has additional roles and indicate that TEN1/CTC1-STN1-TEN1 helps solve a wide range of challenges to the replication machinery.
机译:Ten1是哺乳动物CTC1-STN1-TEN1复合物的组成部分。 CTC1和/或STN1在端粒双工复制,C股填充和基因组重新启动后的叉子停滞。在这里,我们检查人为Ten1的角色,并询问它是否也用作专用复制因子。 Ten1耗竭导致与CTC1或STN1耗尽后观察到的原位杂交(鱼)信号的多元素荧光荧光荧光增加。然而,Ten1耗竭也导致端粒损失增加。这种损失不伴随着端粒脱保护,重组或T圈释放增加。因此,似乎多重端粒信号和端粒损耗源于端粒双工复制中的问题。 Ten1耗竭也会影响端粒长度,但端粒是否延长或缩短是细胞系依赖性。与CTC1和STN1一样,G型突出处理需要TEN1。 Ten1的耗尽不会影响中期期间突出伸长率,但它延迟了S / G2晚期缩短。这些结果表明了C-STRAND填充中的TEN1的作用,但不支持在端粒酶调节中的直接作用。最后,在STN1耗尽之后观察到的叉子停滞后,Ten1耗竭导致基因组宽复制重新启动。然而,除了CTC1或STN1耗尽时,桥面桥接形成更严重。我们的研究结果表明,Ten1可能与CTC1和STN1一起在Telometere和基因组中的其他地方使用。他们还提出了Ten1具有额外角色的可能性,并表明Ten1 / CTC1-STN1-Ten1有助于解决复制机械的广泛挑战。

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