调节器
食欲
下调和上调
肥胖
药理学
体内
刺激
医学
能量稳态
生物信息学
信号转导
生物
减肥
胰岛素抵抗
能源消耗
胰岛素
胰岛素敏感性
体重
内科学
能量代谢
内分泌学
内生
化学
代谢综合征
细胞生物学
GDF15型
作者
Hailin Zhang,J Zhao,Yueyue Li,Meng Yuan,Wenjing Lei,Shengyong Yang
标识
DOI:10.1016/j.apsb.2026.04.008
摘要
Obesity, driven by systemic energy imbalance, remains a critical health challenge. The deadenylase CNOT6L, a key regulator of the hepatokines GDF15 and FGF21, which govern energy balance by suppressing appetite and increasing energy expenditure, respectively, has emerged as a promising anti-obesity strategy. Pharmacologically targeting CNOT6L therefore represents a promising dual-pathway strategy for obesity treatment, yet no potent and selective inhibitors have been reported. Here, we describe the discovery of YL-333P, a first-in-class, highly potent, and selective small-molecule inhibitor of CNOT6L. The co-crystal structure of YL-333P in complex with CNOT6L elucidates the molecular basis of its high potency. YL-333P potently upregulated GDF15 and FGF21 expression in vitro and in vivo . In diet-induced obese (DIO) mice, pharmacological CNOT6L inhibition with YL-333P reduced body weight and improved metabolic health—notably enhancing insulin sensitivity and reducing hepatic steatosis. These benefits were mediated by the concurrent stimulation of anorexigenic GDF15 signaling and FGF21-driven energy expenditure. Collectively, our findings establish YL-333P as a novel chemical tool and demonstrate that small-molecule inhibition of CNOT6L represents a viable and promising therapeutic strategy for the treatment of obesity. YL-333P, a potent and selective first-in-class CNOT6L inhibitor, combats obesity in DIO mice by elevating GDF15/FGF21 to suppress appetite and increase energy expenditure, thereby reducing weight and improving metabolic dysfunction.
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