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Anabolism-Associated Mitochondrial Stasis Driving Lymphocyte Differentiation over Self-Renewal.

Publication ,  Journal Article
Adams, WC; Chen, Y-H; Kratchmarov, R; Yen, B; Nish, SA; Lin, W-HW; Rothman, NJ; Luchsinger, LL; Klein, U; Busslinger, M; Rathmell, JC ...
Published in: Cell Rep
December 20, 2016

Regeneration requires related cells to diverge in fate. We show that activated lymphocytes yield sibling cells with unequal elimination of aged mitochondria. Disparate mitochondrial clearance impacts cell fate and reflects larger constellations of opposing metabolic states. Differentiation driven by an anabolic constellation of PI3K/mTOR activation, aerobic glycolysis, inhibited autophagy, mitochondrial stasis, and ROS production is balanced with self-renewal maintained by a catabolic constellation of AMPK activation, mitochondrial elimination, oxidative metabolism, and maintenance of FoxO1 activity. Perturbations up and down the metabolic pathways shift the balance of nutritive constellations and cell fate owing to self-reinforcement and reciprocal inhibition between anabolism and catabolism. Cell fate and metabolic state are linked by transcriptional regulators, such as IRF4 and FoxO1, with dual roles in lineage and metabolic choice. Instructing some cells to utilize nutrients for anabolism and differentiation while other cells catabolically self-digest and self-renew may enable growth and repair in metazoa.

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Published In

Cell Rep

DOI

EISSN

2211-1247

Publication Date

December 20, 2016

Volume

17

Issue

12

Start / End Page

3142 / 3152

Location

United States

Related Subject Headings

  • TOR Serine-Threonine Kinases
  • Signal Transduction
  • Regeneration
  • Reactive Oxygen Species
  • Phosphatidylinositol 3-Kinases
  • Mitochondria
  • Mice
  • Metabolism
  • Lymphocytes
  • Lymphocyte Activation
 

Citation

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Adams, W. C., Chen, Y.-H., Kratchmarov, R., Yen, B., Nish, S. A., Lin, W.-H., … Reiner, S. L. (2016). Anabolism-Associated Mitochondrial Stasis Driving Lymphocyte Differentiation over Self-Renewal. Cell Rep, 17(12), 3142–3152. https://doi.org/10.1016/j.celrep.2016.11.065
Adams, William C., Yen-Hua Chen, Radomir Kratchmarov, Bonnie Yen, Simone A. Nish, Wen-Hsuan W. Lin, Nyanza J. Rothman, et al. “Anabolism-Associated Mitochondrial Stasis Driving Lymphocyte Differentiation over Self-Renewal.Cell Rep 17, no. 12 (December 20, 2016): 3142–52. https://doi.org/10.1016/j.celrep.2016.11.065.
Adams WC, Chen Y-H, Kratchmarov R, Yen B, Nish SA, Lin W-HW, et al. Anabolism-Associated Mitochondrial Stasis Driving Lymphocyte Differentiation over Self-Renewal. Cell Rep. 2016 Dec 20;17(12):3142–52.
Adams, William C., et al. “Anabolism-Associated Mitochondrial Stasis Driving Lymphocyte Differentiation over Self-Renewal.Cell Rep, vol. 17, no. 12, Dec. 2016, pp. 3142–52. Pubmed, doi:10.1016/j.celrep.2016.11.065.
Adams WC, Chen Y-H, Kratchmarov R, Yen B, Nish SA, Lin W-HW, Rothman NJ, Luchsinger LL, Klein U, Busslinger M, Rathmell JC, Snoeck H-W, Reiner SL. Anabolism-Associated Mitochondrial Stasis Driving Lymphocyte Differentiation over Self-Renewal. Cell Rep. 2016 Dec 20;17(12):3142–3152.
Journal cover image

Published In

Cell Rep

DOI

EISSN

2211-1247

Publication Date

December 20, 2016

Volume

17

Issue

12

Start / End Page

3142 / 3152

Location

United States

Related Subject Headings

  • TOR Serine-Threonine Kinases
  • Signal Transduction
  • Regeneration
  • Reactive Oxygen Species
  • Phosphatidylinositol 3-Kinases
  • Mitochondria
  • Mice
  • Metabolism
  • Lymphocytes
  • Lymphocyte Activation