👤 Koji Murashita

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Gianmarco Del Vecchio, Koji Murashita, Tiziano Verri +2 more · 2021 · General and comparative endocrinology · Elsevier · added 2026-04-24
In mammals, knockout of LEPR results in a hyperphagic, morbid obese, and diabetic phenotype, which supports that leptin plays an important role in the control of appetite and energy metabolism, and th Show more
In mammals, knockout of LEPR results in a hyperphagic, morbid obese, and diabetic phenotype, which supports that leptin plays an important role in the control of appetite and energy metabolism, and that its receptor, LEPR, mediates these effects. To date, little is known about the role(s) of lepr in teleost physiology. We investigated a zebrafish (Danio rerio) homozygous lepr knockout (lepr Show less
no PDF DOI: 10.1016/j.ygcen.2021.113832
MC4R
Tharmini Kalananthan, Floriana Lai, Ana S Gomes +3 more · 2020 · Frontiers in neuroanatomy · Frontiers · added 2026-04-24
The melanocortin system is a key neuroendocrine network involved in the control of food intake and energy homeostasis in vertebrates. Within the hypothalamus, the system comprises two main distinct ne Show more
The melanocortin system is a key neuroendocrine network involved in the control of food intake and energy homeostasis in vertebrates. Within the hypothalamus, the system comprises two main distinct neuronal cell populations that express the neuropeptides proopiomelanocortin (POMC; anorexigenic) or agouti-related protein (AGRP; orexigenic). Both bind to the melanocortin-4 receptor (MC4R) in higher order neurons that control both food intake and energy expenditure. This system is relatively well-conserved among vertebrates. However, in Atlantic salmon ( Show less
📄 PDF DOI: 10.3389/fnana.2020.00048
MC4R