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Logan, C. Y.

Publications and source records attributed to Logan, C. Y..

2 recordsLinked to original sources

Intermittent fasting induces rapid hepatocyte proliferation

Nutrient availability fluctuates in most natural populations, forcing organisms to undergo periods of fasting and re-feeding. It is unknown how dietary changes influence liver homeostasis. Here, we show that a switch from ad libitum feeding to intermittent fasting, IF, promotes rapid hepatocyte proliferation. Mechanistically, IF-induced hepatocyte proliferation is driven by the combined action of intestinally produced, systemic endocrine FGF15 and localized WNT signaling. Hepatocyte proliferation during periods of fasting and re-feeding re-establishes a constant liver-to-body-mass ratio, thus maintaining the hepatostat. This study provides the first example of dietary influence on adult hepatocyte proliferation and challenges the widely held view that liver tissue is mostly quiescent unless chemically or mechanically injured.

cell biology↗

Self-activation of Wnt signaling in pre-granulosa cells is required for ovarian folliculogenesis

In mammalian ovaries, immature oocytes are reserved in primordial follicles. Precise control of primordial follicle activation (PFA) is a prerequisite for proper reproduction. Although Wnt signaling is thought to be involved in folliculogenesis, the timing and function of Wnt activity remain unclear. Here we show that canonical Wnt signaling is pivotal for the differentiation of pre-granulosa cells (pre-GCs) and subsequent oocyte maturation during PFA. We identified several Wnt ligands expressed in pre-GCs that cell-autonomously function via canonical Wnt activity. Inhibition of Wnt ligand secretion from pre-GCs/GCs led to infertility due to impaired pre-GC differentiation, whereas constitutive stabilization of {beta}-catenin induced thickening of the pre-GCs. Our data support a two-step model of PFA in which self-activation of Wnt signaling promotes the transition of pre-GCs to GCs, and mature GCs then support oocyte reawakening. We anticipate that application of Wnt inhibitors or activators in vitro will lead to improved fertility treatments.

developmental biology↗