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TEAD4 建立了胚泡形成所必需的能量动态平衡。

TEAD4 establishes the energy homeostasis essential for blastocoel formation.

机构信息

National Institute of Child Health and Human Development, National Institutes of Health, 9000 Rockville Pike, Bethesda, MD 20892-2753, USA.

出版信息

Development. 2013 Sep;140(17):3680-90. doi: 10.1242/dev.093799. Epub 2013 Jul 31.

Abstract

It has been suggested that during mouse preimplantation development, the zygotically expressed transcription factor TEAD4 is essential for specification of the trophectoderm lineage required for producing a blastocyst. Here we show that blastocysts can form without TEAD4 but that TEAD4 is required to prevent oxidative stress when blastocoel formation is accompanied by increased oxidative phosphorylation that leads to the production of reactive oxygen species (ROS). Both two-cell and eight-cell Tead4(-/-) embryos developed into blastocysts when cultured under conditions that alleviate oxidative stress, and Tead4(-/-) blastocysts that formed under these conditions expressed trophectoderm-associated genes. Therefore, TEAD4 is not required for specification of the trophectoderm lineage. Once the trophectoderm was specified, Tead4 was not essential for either proliferation or differentiation of trophoblast cells in culture. However, ablation of Tead4 in trophoblast cells resulted in reduced mitochondrial membrane potential. Moreover, Tead4 suppressed ROS in embryos and embryonic fibroblasts. Finally, ectopically expressed TEAD4 protein could localize to the mitochondria as well as to the nucleus, a property not shared by other members of the TEAD family. These results reveal that TEAD4 plays a crucial role in maintaining energy homeostasis during preimplantation development.

摘要

有人提出,在小鼠植入前胚胎发育过程中,合子表达的转录因子 TEAD4 对于滋养外胚层谱系的特化是必需的,滋养外胚层谱系对于产生囊胚是必需的。在这里,我们表明囊胚可以在没有 TEAD4 的情况下形成,但 TEAD4 是必需的,以防止当囊胚腔形成伴随着增加的氧化磷酸化,导致活性氧 (ROS) 的产生时的氧化应激。当在缓解氧化应激的条件下培养时,两细胞和八细胞 Tead4(-/-) 胚胎发育成囊胚,并且在这些条件下形成的 Tead4(-/-) 囊胚表达滋养外胚层相关基因。因此,TEAD4 对于滋养外胚层谱系的特化不是必需的。一旦滋养外胚层被特化,Tead4 对于滋养层细胞在培养中的增殖或分化就不是必需的。然而,Tead4 在滋养层细胞中的缺失导致线粒体膜电位降低。此外,Tead4 抑制胚胎和胚胎成纤维细胞中的 ROS。最后,异位表达的 TEAD4 蛋白可以定位于线粒体和细胞核,这是 TEAD 家族其他成员所没有的特性。这些结果表明,TEAD4 在植入前胚胎发育过程中维持能量平衡中发挥着关键作用。

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