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Macroautophagy-aided elimination of chromatin

机译:巨自噬辅助染色质的消除

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摘要

How tumor cells process damaged or unwanted DNA is a matter of much interest. Recently, Rello-Varona et al. (Cell Cycle 2012; 11:170–76) reported the involvement of macroautophagy (hereon autophagy) in the elimination of micronuclei (MN) from osteosarcoma cells. Prior to that, diminution of whole nuclei from multinucleated TP53-mutant tumor cells was described. Here, we discuss these two kinds of chromatin autophagy evoked after genotoxic stress in the context of the various biological processes involved: (1) endopolyploidy and the ploidy cycle; (2) the timing of DNA synthesis; (3) DNA repair; (4) chromatin:nuclear envelope interactions; and (5) cytoplasmic autophagy. We suggest that whereas some MN can be reunited with the main nucleus (through interactions with envelope-limited chromatin sheets) and participate in DNA repair, failure of repair serves as a signal for the chromatin autophagy of MN. In turn, autophagy of whole sub-nuclei in multi-nucleated cells appears to favor de-polyploidization, mitigation of aneuploidy with its adverse effects, thereby promoting the survival fitness of descendents and treatment resistance. Thus, both kinds of chromatin autophagy provide tumor cells with the opportunity to repair DNA, sort and resort chromatin, reduce DNA content, and enhance survival.
机译:肿瘤细胞如何处理受损的或有害的DNA是备受关注的问题。最近,Rello-Varona等。 (Cell Cycle 2012; 11:170-76)报告了巨噬细胞吞噬(自噬)参与了骨肉瘤细胞微核(MN)的消除。在此之前,已经描述了从多核TP53突变的肿瘤细胞中减少整个细胞核。在这里,我们讨论遗传毒性应激后在涉及的各种生物学过程中引起的两种染色质自噬:(1)内多倍体和倍性循环; (2)DNA合成的时间; (3)DNA修复; (4)染色质:核包膜相互作用; (5)细胞质自噬。我们建议,虽然某些MN可以与主核团聚(通过与包膜有限的染色质片相互作用)并参与DNA修复,但修复失败可作为MN染色质自噬的信号。反过来,多核细胞中整个亚核的自噬似乎有助于去多倍体化,减轻非整倍性及其不利影响,从而促进后代的生存适应性和治疗抗性。因此,两种染色质自噬都为肿瘤细胞提供了修复DNA,分选和重新利用染色质,降低DNA含量并提高存活率的机会。

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