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NRF1 促进原始生殖细胞的发育、增殖和存活。

NRF1 promotes primordial germ cell development, proliferation and survival.

机构信息

Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Shanghai, China.

Department of Animal Sciences, College of Agriculture and Natural Resources, Michigan State University, East Lansing, Michigan, USA.

出版信息

Cell Prolif. 2024 Jan;57(1):e13533. doi: 10.1111/cpr.13533. Epub 2023 Aug 4.

Abstract

Primordial germ cells (PGCs) are the germline precursors that give rise to oocytes and sperm, ensuring the continuation of life. While the PGC specification is extensively studied, it remains elusive how the PGC population is sustained and expanded after they migrate to embryonic gonads before birth. This study demonstrates that NRF1, a known regulator for mitochondrial metabolism, plays critical roles in post-migrating PGC development. We show that NRF1 protein level gradually increases in post-migrating PGCs during embryonic development. Conditional Nrf1 knockout from embryonic germ cells leads to impaired PGC proliferation and survival. In addition, NRF1 may also actively drive PGC derivation from pluripotent stem cells. Using whole genome transcriptome profiling and ChIP-seq analyses, we further reveal that NRF1 directly regulates key signalling molecules in PGC formation, transcription factors in proliferation and cell cycle and enzymes in mitochondrial metabolism. Overall, our findings highlight an essential requirement of NRF1 in regulating a broad transcriptional network to support post-migrating PGC development both in vitro and in vivo.

摘要

原始生殖细胞(PGCs)是产生卵子和精子的生殖系前体细胞,确保了生命的延续。虽然 PGC 的特化作用得到了广泛的研究,但在它们迁移到出生前的胚胎性腺后,PGC 群体如何得到维持和扩增仍然难以捉摸。本研究表明,NRF1,一种已知的线粒体代谢调节剂,在迁移后的 PGC 发育中发挥关键作用。我们发现,在胚胎发育过程中,迁移后的 PGC 中 NRF1 蛋白水平逐渐增加。从胚胎生殖细胞中条件性敲除 Nrf1 会导致 PGC 增殖和存活受损。此外,NRF1 也可能主动驱动多能干细胞向 PGC 的分化。通过全基因组转录组谱分析和 ChIP-seq 分析,我们进一步揭示 NRF1 直接调节 PGC 形成中的关键信号分子、增殖和细胞周期中的转录因子以及线粒体代谢中的酶。总的来说,我们的研究结果强调了 NRF1 在调节一个广泛的转录网络以支持体外和体内迁移后的 PGC 发育方面的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/335f/10771101/5fac6af4250c/CPR-57-e13533-g007.jpg

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