Loss of tubby in MC4R-and VGLUT2-expressing neurons impairs energy homeostasis

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초록

Obesity is a major global health crisis, yet the molecular mechanisms underlying adult-onset metabolic dysfunction remain incompletely understood. The tubby mouse is a foundational genetic model of maturity-onset obesity; however, the specific tissues and cell populations responsible for its metabolic phenotype have long remained elusive. Here, we demonstrate that the loss of tubby disrupts the coordinated regulation of energy intake and expenditure, leading to a sustained positive energy balance. Using cell-type-specific genetic tools, we identified MC4R-expressing and VGLUT2-expressing neurons as essential sites of tubby function. We found that tubby acts through the combined contribution of these neuronal populations, as selective deletion in either MC4R or VGLUT2 neurons is sufficient to phenocopy key features of the global Tub mutant. Together, these findings establish tubby as a central neuronal regulator of systemic energy homeostasis and define an excitatory MC4R-VGLUT2 circuit that governs feeding behavior and metabolic output. [BMB Reports 2026; 59(5): 283-290]

키워드

Adult-onset obesity; Energy homeostasis; MC4R neurons; Tubby; VGLUT2 neurons; FAMILY PROTEINS; OBESITY; GENE; TRAFFICKING; ROLES
제목
Loss of tubby in MC4R-and VGLUT2-expressing neurons impairs energy homeostasis
저자
Jeong, Se Rok; Jeong, Yong Taek; Kim, Chul Hoon; Seo, Jeong Taeg; Moon, Seok Jun
DOI
10.5483/BMBRep.2026-0034
발행일
2026-05
유형
Article
저널명
BMB Reports
권
59
호
5
페이지
284 ~ 290