BDNF Regulates Pituitary Stem Cell Engagement towards precursor state

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AI-generated summary by claude@2026-07, 2026-07-15

BDNF engages pituitary stem cells towards differentiation into corticotrope precursors, which signal for pituitary-adrenal homeostasis in a glucocorticoid-sensitive manner.

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The study examined how pituitary stem cells and corticotrope lineage precursors respond to deficient glucocorticoid feedback, using two mouse models (POMC knockout and adrenalectomy) and focusing on transient precursor states that were previously difficult to characterize. The authors found that pre-corticotrope differentiation relies on the lineage-specific factor Tpit and is repressed by glucocorticoids, with corticotrope precursors accumulating under feedback deficiency. They identified BDNF as a glucocorticoid-sensitive signal that engages pituitary stem cells toward differentiation in both these models and during normal pituitary development, proposing a glucocorticoid-sensitive BDNF autocrine loop that makes pre-corticotropes signaling hubs for pituitary-adrenal homeostasis, while emphasizing that the precursor roles in tissue architecture were not previously known. This paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Summary Following their engagement towards differentiation, tissue stem cells often transit through a precursor state that is difficult to define because of its transient nature; similarly, the precise role of lineage precursors in implementation of tissue architecture and function is unknown. In the present work, we used two mouse models of deficient feedback regulation to characterize precursors of the pituitary corticotrope lineage that regulates the stress response. Both the POMC knockout and adrenalectomized mouse models develop glucocorticoid deficiency and compensatory accumulation of corticotrope precursors that have so far eluded characterization. We found that pre-corticotrope differentiation depends on the lineage-specific factor Tpit and is repressed by glucocorticoids. We identified brain-derived neurotrophic factor (BDNF) as the signal that engages pituitary stem cells towards differentiation in these models as well as in normal pituitary development. A glucocorticoid-sensitive BDNF autocrine loop active in pre-corticotropes turns these cells into signaling hubs for maintenance of pituitary-adrenal homeostasis. Highlights Pituitary lineage precursors expand in conditions of deficient feedback regulation BDNF mobilizes pituitary stem cells during establishment of tissue size and architecture Corticotrope precursors are a signaling hub for tissue homeostasis
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Summary Following their engagement towards differentiation, tissue stem cells often transit through a precursor state that is difficult to define because of its transient nature; similarly, the precise role of lineage precursors in implementation of tissue architecture and function is unknown. In the present work, we used two mouse models of deficient feedback regulation to characterize precursors of the pituitary corticotrope lineage that regulates the stress response. Both the POMC knockout and adrenalectomized mouse models develop glucocorticoid deficiency and compensatory accumulation of corticotrope precursors that have so far eluded characterization. We found that pre-corticotrope differentiation depends on the lineage-specific factor Tpit and is repressed by glucocorticoids. We identified brain-derived neurotrophic factor (BDNF) as the signal that engages pituitary stem cells towards differentiation in these models as well as in normal pituitary development. A glucocorticoid-sensitive BDNF autocrine loop active in pre-corticotropes turns these cells into signaling hubs for maintenance of pituitary-adrenal homeostasis. Highlights Pituitary lineage precursors expand in conditions of deficient feedback regulation BDNF mobilizes pituitary stem cells during establishment of tissue size and architecture Corticotrope precursors are a signaling hub for tissue homeostasis Competing Interest Statement The authors have declared no competing interest. Footnotes ↵* Lead contact

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europepmc
last seen: 2026-05-20T01:45:00.602351+00:00
unpaywall
last seen: 2026-05-22T02:00:06.705733+00:00
License: CC-BY-NC-ND-4.0