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Tousled 样激酶 1 和 2 在哺乳动物发育中的差异需求。

Differential requirements for Tousled-like kinases 1 and 2 in mammalian development.

机构信息

Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology, Barcelona 08028, Spain.

Department of Pathobiology, Faculty of Veterinary Medicine, Dutch Molecular Pathology Center, Utrecht University, Utrecht 3512 JE, The Netherlands.

出版信息

Cell Death Differ. 2017 Nov;24(11):1872-1885. doi: 10.1038/cdd.2017.108. Epub 2017 Jul 14.

Abstract

The regulation of chromatin structure is critical for a wide range of essential cellular processes. The Tousled-like kinases, TLK1 and TLK2, regulate ASF1, a histone H3/H4 chaperone, and likely other substrates, and their activity has been implicated in transcription, DNA replication, DNA repair, RNA interference, cell cycle progression, viral latency, chromosome segregation and mitosis. However, little is known about the functions of TLK activity in vivo or the relative functions of the highly similar TLK1 and TLK2 in any cell type. To begin to address this, we have generated Tlk1- and Tlk2-deficient mice. We found that while TLK1 was dispensable for murine viability, TLK2 loss led to late embryonic lethality because of placental failure. TLK2 was required for normal trophoblast differentiation and the phosphorylation of ASF1 was reduced in placentas lacking TLK2. Conditional bypass of the placental phenotype allowed the generation of apparently healthy Tlk2-deficient mice, while only the depletion of both TLK1 and TLK2 led to extensive genomic instability, indicating that both activities contribute to genome maintenance. Our data identifies a specific role for TLK2 in placental function during mammalian development and suggests that TLK1 and TLK2 have largely redundant roles in genome maintenance.

摘要

染色质结构的调控对于广泛的重要细胞过程至关重要。Tousled 样激酶 TLK1 和 TLK2 调节 ASF1,一种组蛋白 H3/H4 伴侣,可能还有其他底物,其活性与转录、DNA 复制、DNA 修复、RNA 干扰、细胞周期进程、病毒潜伏期、染色体分离和有丝分裂有关。然而,关于 TLK 活性在体内的功能或在任何细胞类型中高度相似的 TLK1 和 TLK2 的相对功能知之甚少。为了开始解决这个问题,我们已经生成了 Tlk1 和 Tlk2 缺陷型小鼠。我们发现,虽然 TLK1 对小鼠的存活是可有可无的,但 TLK2 的缺失导致了晚期胚胎致死,因为胎盘功能衰竭。TLK2 对于正常的滋养层分化是必需的,并且缺乏 TLK2 的胎盘 ASF1 的磷酸化减少。胎盘表型的条件性旁路允许产生明显健康的 Tlk2 缺陷型小鼠,而只有 TLK1 和 TLK2 的耗尽才会导致广泛的基因组不稳定性,表明这两种活性都有助于基因组的维持。我们的数据确定了 TLK2 在哺乳动物发育过程中胎盘功能中的特定作用,并表明 TLK1 和 TLK2 在基因组维持中具有很大的冗余作用。

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