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KANSL3 的缺失导致内细胞团缺陷和早期胚胎致死。

Loss of KANSL3 leads to defective inner cell mass and early embryonic lethality.

机构信息

Department of Veterinary & Animal Sciences, University of Massachusetts Amherst, Amherst, Massachusetts, USA.

Department of Veterinary and Animal Sciences, University of Massachusetts- Amherst, 661 North Pleasant Street, Amherst, Massachusetts, USA.

出版信息

Mol Reprod Dev. 2024 May;91(5):e23760. doi: 10.1002/mrd.23760.

Abstract

e-Lysine acetylation is a prominent histone mark found at transcriptionally active loci. Among many lysine acetyl transferases, nonspecific lethal complex (NSL) members are known to mediate the modification of histone H4. In addition to histone modifications, the KAT8 regulatory complex subunit 3 gene (Kansl3), a core member of NSL complex, has been shown to be involved in several other cellular processes such as mitosis and mitochondrial activity. Although functional studies have been performed on NSL complex members, none of the four core proteins, including Kansl3, have been studied during early mouse development. Here we show that homozygous knockout Kansl3 embryos are lethal at peri-implantation stages, failing to hatch out of the zona pellucida. When the zona pellucida is removed in vitro, Kansl3 null embryos form an abnormal outgrowth with significantly disrupted inner cell mass (ICM) morphology. We document lineage-specific defects at the blastocyst stage with significantly reduced ICM cell number but no difference in trophectoderm cell numbers. Both epiblast and primitive endoderm lineages are altered with reduced cell numbers in null mutants. These results show that Kansl3 is indispensable during early mouse embryonic development and with defects in both ICM and trophectoderm lineages.

摘要

赖氨酸乙酰化是一种在转录活跃区域发现的显著组蛋白标记。在许多赖氨酸乙酰转移酶中,非特异性致死复合物(NSL)成员被认为介导组蛋白 H4 的修饰。除了组蛋白修饰外,KAT8 调节复合物亚基 3 基因(Kansl3),作为 NSL 复合物的核心成员,已被证明参与其他几个细胞过程,如有丝分裂和线粒体活性。尽管已经对 NSL 复合物成员进行了功能研究,但在早期小鼠发育过程中,没有研究过包括 Kansl3 在内的四个核心蛋白。在这里,我们显示 Kansl3 纯合敲除胚胎在植入前阶段是致命的,无法从透明带中孵化出来。当体外去除透明带时,Kansl3 缺失胚胎形成异常的外生增长,内部细胞团(ICM)形态显著受损。我们在囊胚阶段记录了谱系特异性缺陷,ICM 细胞数量显著减少,但滋养外胚层细胞数量没有差异。在突变体中,内胚层和原始内胚层谱系都发生了改变,细胞数量减少。这些结果表明,Kansl3 在早期小鼠胚胎发育过程中是不可或缺的,并且在 ICM 和滋养外胚层谱系中都存在缺陷。

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