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Biology subjects

Cobb, A.

Publications and source records attributed to Cobb, A..

2 recordsLinked to original sources

Adipogenin Dictates Adipose Tissue Expansion by Facilitating the Assembly of a Dodecameric Seipin Complex

Adipogenin (Adig) is an evolutionarily conserved microprotein and is highly expressed in adipose tissues and testis. Here, we identify Adig as a critical regulator for lipid droplet formation in adipocytes. We determine that Adig interacts directly with seipin, leading to the formation of a rigid complex. We solve the structure of the seipin/Adig complex by Cryo-EM at 2.98[A] overall resolution. Surprisingly, seipin can form two unique oligomers, undecamers and dodecamers. Adig selectively binds to the dodecameric seipin complex. We further find that Adig promotes seipin assembly by stabilizing and bridging adjacent seipin subunits. Functionally, Adig plays a key role in generating lipid droplets in adipocytes. In mice, inducible overexpression of Adig in adipocytes substantially increases fat mass, with enlarged lipid droplets. It also elevates thermogenesis during cold exposure. In contrast, inducible adipocyte-specific Adig knockout mice manifest aberrant lipid droplet formation in brown adipose tissues and impaired cold tolerance.

cell biology↗

GPR84-Mediated Signal Transduction Promotes Brown Adipocyte Function

G protein-coupled receptor 84 (GPR84), a medium-chain fatty acid receptor, may be involved in various metabolic conditions but the mechanism remains unclear. We found that GPR84 is highly expressed and functions in brown adipose tissue (BAT). GPR84 knockout mice exhibited increased adiposity and vulnerability to cold exposure after aging, along with an increased BAT lipid content and decreased BAT activation compared to wild-type control mice. In vitro, primary brown adipocytes from GPR84 knockout mice showed reduced expression of thermogenic genes and lower O2 consumption. The GPR84 agonist 6-OAU reversed these effects and restored brown adipocyte activation. In vivo and in vitro results showed that BAT defects in GPR84 knockout mice were attributed to mitochondrial dysfunction. GPR84 activation greatly affected intracellular calcium efflux, further influencing mitochondrial respiration. GPR84 activates BAT by controlling the mitochondrial calcium content and respiration, suggesting a therapeutic target for activating BAT and treating metabolic diseases. HIGHLIGHTSO_LIHigh expression of GPR84 in brown adipocytes is induced by cold stimulation. C_LIO_LIAged GPR84 knockout mice exhibit brown adipose tissue defects under cold exposure. C_LIO_LIGPR84 knockout mice show reduced mitochondrial function of brown adipocytes. C_LIO_LIGPR84 activation improves brown adipocyte functions. C_LI

physiology↗