4.6 Article

The transcription factor Tfcp2l1 promotes primordial germ cell-like cell specification of pluripotent stem cells

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 297, Issue 4, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jbc.2021.101217

Keywords

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Funding

  1. Natural Science Foundationof Anhui Province [1908085J13]
  2. Anhui Provincial Key Research and Development Plan [202104b11020026]
  3. University Synergy Innovation Program of Anhui Province [GXXT-2020-064]
  4. Open Fund for Discipline Construction, Institute of Physical Science and Information Technology, Anhui University [S01003106]
  5. Department of Education of Anhui Province
  6. Department of Human Resources and Social Security of Anhui Province [gxyqZD2020001, 2020H210]

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The transcription factor Tfcp2l1 plays a crucial role in the specification of PGCLCs by inducing the key PGC marker PR domain zinc finger protein 14. This discovery sheds new light on the mechanisms underlying germ cell development and is conserved in human pluripotent stem cells.
Primordial germ cells (PGCs) are common ancestors of all germline cells. However, mechanistic understanding of how PGC specification occurs is limited. Here, we identified transcription factor CP2-like 1 (Tfcp2l1), an important pluripotency factor, as a pivotal factor for PGC-like cell (PGCLC) specification. High-throughput sequencing and quantitative real-time PCR analysis showed that Tfcp2l1 expression is gradually increased during mouse and human epiblast differentiation into PGCLCs in vivo and in vitro. Consequently, overexpression of Tfcp2l1 can enhance the specification efficiency even without inductive cytokines in mouse epiblast-like cells derived from embryonic stem cells, while knockdown of Tfcp2l1 significantly inhibits PGCLC generation. Mechanistic studies revealed that Tfcp2l1 exerts its function partially through the direct induction of PR domain zinc finger protein 14, a key PGC marker, as downregulation of the PR domain zinc finger protein 14 transcript can impair the ability of Tfcp2l1 to direct PGCLC commitment. Importantly, we finally demonstrated that the crucial role of the human homolog Tfcp2l1 in promoting PGCLC specification is conserved in human pluripotent stem cells. Together, our data uncover a novel function of Tfcp2l1 in PGCLC fate determination and facilitate a better understanding of germ cell development.

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