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Publication : Mitochondrial cristae-remodeling protein OPA1 in POMC neurons couples Ca<sup>2+</sup> homeostasis with adipose tissue lipolysis.

First Author  Gómez-Valadés AG Year  2021
Journal  Cell Metab Volume  33
Issue  9 Pages  1820-1835.e9
PubMed ID  34343501 Mgi Jnum  J:309736
Mgi Id  MGI:6759717 Doi  10.1016/j.cmet.2021.07.008
Citation  Gomez-Valades AG, et al. (2021) Mitochondrial cristae-remodeling protein OPA1 in POMC neurons couples Ca(2+) homeostasis with adipose tissue lipolysis. Cell Metab 33(9):1820-1835.e9
abstractText  Appropriate cristae remodeling is a determinant of mitochondrial function and bioenergetics and thus represents a crucial process for cellular metabolic adaptations. Here, we show that mitochondrial cristae architecture and expression of the master cristae-remodeling protein OPA1 in proopiomelanocortin (POMC) neurons, which are key metabolic sensors implicated in energy balance control, is affected by fluctuations in nutrient availability. Genetic inactivation of OPA1 in POMC neurons causes dramatic alterations in cristae topology, mitochondrial Ca(2+) handling, reduction in alpha-melanocyte stimulating hormone (alpha-MSH) in target areas, hyperphagia, and attenuated white adipose tissue (WAT) lipolysis resulting in obesity. Pharmacological blockade of mitochondrial Ca(2+) influx restores alpha-MSH and the lipolytic program, while improving the metabolic defects of mutant mice. Chemogenetic manipulation of POMC neurons confirms a role in lipolysis control. Our results unveil a novel axis that connects OPA1 in POMC neurons with mitochondrial cristae, Ca(2+) homeostasis, and WAT lipolysis in the regulation of energy balance.
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