Literature DB >> 32213554

Comparative transcriptomic analyses of developing melanocortin neurons reveal new regulators for the anorexigenic neuron identity.

Xiameng Chen1, Steven C Wyler1, Li Li1, Amanda G Arnold1, Rong Wan1, Lin Jia1, Mark A Landy2, Helen C Lai2, Pin Xu2, Chen Liu3,2.   

Abstract

Despite their opposing actions on food intake, POMC and NPY/AgRP neurons in the arcuate nucleus of the hypothalamus (ARH) are derived from the same progenitors that give rise to ARH neurons. However, the mechanism whereby common neuronal precursors subsequently adopt either the anorexigenic (POMC) or the orexigenic (NPY/AgRP) identity remains elusive.We hypothesize that POMC and NPY/AgRP cell fates are specified and maintained by distinct intrinsic factors. In search of them, we profiled the transcriptomes of developing POMC and NPY/AgRP neurons in mice. Moreover, cell-type-specific transcriptomic analyses revealed transcription regulators that are selectively enriched in either population, but whose developmental functions are unknown in these neurons.Among them, we found the expression of the PR domain-containing factor 12 (Prdm12) was enriched in POMC neurons but absent in NPY/AgRP neurons. To study the role of Prdm12 in vivo, we developed and characterized a floxed Prdm12 allele. Selective ablation of Prdm12 in embryonic POMC neurons led to significantly reduced Pomc expression as well as early-onset obesity in mice of either sex that recapitulates symptoms of human POMC deficiency. Interestingly, however, specific deletion of Prdm12 in adult POMC neurons showed that it is no longer required for Pomc expression nor energy balance. Collectively, these findings establish a critical role for Prdm12 in the anorexigenic neuron identity and suggest that it acts developmentally to program body weight homeostasis. Finally, the combination of cell-type-specific genomic and genetic analyses provides a means to dissect cellular and functional diversity in the hypothalamus whose neurodevelopment remains poorly studied.Significance statement: POMC and NPY/AgRP neurons are derived from the same hypothalamic progenitors, but have opposing effects on food intake. We profiled the transcriptomes of genetically-labeled POMC and NPY/AgRP neurons in the developing mouse hypothalamus to decipher the transcriptional codes behind the anorexigenic vs. orexigenic neuron identity. Our analyses revealed 29 transcription regulators that are selectively enriched in one of the two populations. We generated new mouse genetic models to selective ablate one of POMC-neuron enriched transcription factors Prdm12 in developing and adult POMC neurons. Our studies establish a previously-unrecognized role for Prdm12 in the anorexigenic neuron identity and suggest that it acts developmentally to program body weight homeostasis.
Copyright © 2020 Chen et al.

Entities:  

Year:  2020        PMID: 32213554     DOI: 10.1523/JNEUROSCI.0155-20.2020

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  5 in total

1.  Loss of Prdm12 during development, but not in mature nociceptors, causes defects in pain sensation.

Authors:  Mark A Landy; Megan Goyal; Katherine M Casey; Chen Liu; Helen C Lai
Journal:  Cell Rep       Date:  2021-03-30       Impact factor: 9.423

Review 2.  PRDM12 in Health and Diseases.

Authors:  Monica Rienzo; Erika Di Zazzo; Amelia Casamassimi; Patrizia Gazzerro; Giovanni Perini; Maurizio Bifulco; Ciro Abbondanza
Journal:  Int J Mol Sci       Date:  2021-11-06       Impact factor: 5.923

3.  Prdm12 modulates pain-related behavior by remodeling gene expression in mature nociceptors.

Authors:  Aurore Latragna; Alba Sabaté San José; Panagiotis Tsimpos; Simon Vermeiren; Roberta Gualdani; Sampurna Chakrabarti; Gerard Callejo; Simon Desiderio; Orr Shomroni; Maren Sitte; Sadia Kricha; Maëlle Luypaert; Benoit Vanhollebeke; Geoffroy Laumet; Gabriela Salinas; Ewan St John Smith; Laurence Ris; Eric J Bellefroid
Journal:  Pain       Date:  2021-12-24       Impact factor: 7.926

4.  Developmental single-cell transcriptomics of hypothalamic POMC neurons reveal the genetic trajectories of multiple neuropeptidergic phenotypes.

Authors:  Hui Yu; Marcelo Rubinstein; Malcolm J Low
Journal:  Elife       Date:  2022-01-19       Impact factor: 8.140

5.  Single-cell analysis of early chick hypothalamic development reveals that hypothalamic cells are induced from prethalamic-like progenitors.

Authors:  Dong Won Kim; Elsie Place; Kavitha Chinnaiya; Elizabeth Manning; Changyu Sun; Weina Dai; Ian Groves; Kyoji Ohyama; Sarah Burbridge; Marysia Placzek; Seth Blackshaw
Journal:  Cell Rep       Date:  2022-01-18       Impact factor: 9.423

  5 in total

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