4.7 Article

AMPK governs lineage specification through Tfeb-dependent regulation of lysosomes

期刊

GENES & DEVELOPMENT
卷 30, 期 5, 页码 535-552

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gad.274142.115

关键词

AMPK; embryonic stem cells; germ layer specification; endoderm; Tfeb; lysosomes; Wnt

资金

  1. Salk Institute [CCSG P30 CA014195]
  2. Leona M. and Harry B. Helmsley Charitable Trust [2012-PG-MED002]
  3. American Cancer Society [123016-PF-PF-12-191-01-TBE, PF-15-037-01-DMC]
  4. Damon Runyon Post-doctoral Fellowship
  5. [R01 DK080425]
  6. [R01 CA172229]
  7. [P01 CA120964]
  8. [T32 CA009370]
  9. [P30CA014195]

向作者/读者索取更多资源

Faithful execution of developmental programs relies on the acquisition of unique cell identities from pluripotent progenitors, a process governed by combinatorial inputs from numerous signaling cascades that ultimately dictate lineage-specific transcriptional outputs. Despite growing evidence that metabolism is integrated with many molecular networks, how pathways that control energy homeostasis may affect cell fate decisions is largely unknown. Here, we show that AMP-activated protein kinase (AMPK), a central metabolic regulator, plays critical roles in lineage specification. Although AMPK-deficient embryonic stem cells (ESCs) were normal in the pluripotent state, these cells displayed profound defects upon differentiation, failing to generate chimeric embryos and preferentially adopting an ectodermal fate at the expense of the endoderm during embryoid body (EB) formation. AMPK(-/-) EBs exhibited reduced levels of Tfeb, a master transcriptional regulator of lysosomes, leading to diminished endolysosomal function. Remarkably, genetic loss of Tfeb also yielded endodermal defects, while AMPK-null ESCs over-expressing this transcription factor normalized their differential potential, revealing an intimate connection between Tfeb/lysosomes and germ layer specification. The compromised endolysosomal system resulting from AMPK or Tfeb inactivation blunted Wnt signaling, while up-regulating this pathway restored expression of endodermal markers. Collectively, these results uncover the AMPK pathway as a novel regulator of cell fate determination during differentiation.

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