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The EMBO Journal· 2026Q1

Leptin-sensitive hypothalamic Lepr+/Glp1r+ neurons limit hyperphagia and weight gain in diet-induced obesity

Dylan Matthew Belmont-Rausch, Benedicte Schultz Kapel, Abigail J. Tomlinson, Chao Ding et al.

Short summary

A specific subpopulation of hypothalamic neurons (Lepr+/Glp1r+) retains leptin sensitivity in diet-induced obesity (DIO) and limits hyperphagia and weight gain.

AI-generated from the title and abstract; the full text is not read.

Key points

  • A small population of hypothalamic Lepr+/Glp1r+ neurons maintains leptin sensitivity in diet-induced obesity (DIO).
  • These neurons project to and inhibit orexigenic AgRP neurons.
  • Deleting Lepr from these specific neurons in DIO mice reinstates hyperphagia and amplifies weight gain.
  • Leptin signaling through these neurons unexpectedly attenuates hypothalamic microglial activation in DIO.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Despite loss of responsiveness to exogenous leptin in obesity, endogenous leptin continues to restrain feeding, although the neural substrates that remain sensitive and mediate this effect remain unknown. Combining spatial transcriptomics with single-nucleus RNA sequencing in mice with diet-induced obesity (DIO), we here show that while most hypothalamic leptin receptor ( Lepr )-positive neurons minimally respond to elevated leptin, a single subpopulation defined by glucagon-like peptide-1 receptor ( Glp1r ) co-expression retains robust leptin sensitivity. These Lepr + /Glp1r + neurons project onto and inhibit orexigenic Agrp neurons. Lepr deletion from Lepr + /Glp1r + neurons blocks the anorectic effect of exogenous leptin, reinstates hyperphagic responses normally suppressed in DIO, amplifies the obesogenic response to palatable diet, and unexpectedly attenuates hypothalamic microglial activation – a hallmark of DIO previously attributed to diet rather than leptin signaling. Hence, preserved leptin responses by a single neuronal population in the hypothalamus limit hyperphagia and weight gain, among other responses, during obesity.

The authors' abstract, as published at the source. The EMBO Journal, 2026 · DOI ↗

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Field: Endocrine and Autonomic Systems

Endocrine and Autonomic SystemsNeuroscience