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对LEAP2生物学和生理功能的关键见解:超越胃饥饿素拮抗作用的潜在作用。

Critical Insights Into LEAP2 Biology and Physiological Functions: Potential Roles Beyond Ghrelin Antagonism.

作者信息

Perelló Mario

机构信息

Grupo de Neurofisiología, Instituto Multidisciplinario de Biología Celular (IMBICE) (Consejo Nacional de Investigaciones Científicas y Técnicas, Universidad de La Plata, Comisión de Investigaciones Científicas de la Provincia de Buenos Aires), La Plata, Buenos Aires 1900, Argentina.

Department of Surgical Sciences, Functional Pharmacology and Neuroscience, Uppsala University, 751 24 Uppsala, Sweden.

出版信息

Endocrinology. 2025 Jan 6;166(2). doi: 10.1210/endocr/bqaf011.

Abstract

Liver-expressed antimicrobial peptide 2 (LEAP2) has recently emerged as a novel hormone that reduces food intake and glycemia by acting through the growth hormone secretagogue receptor (GHSR), also known as the ghrelin receptor. This discovery has led to a fundamental reconceptualization of GHSR's functional dynamics, now understood to be under a dual and opposing regulation. LEAP2 exhibits several distinctive features. LEAP2 is released by hepatocytes and enterocytes, 2 cell types that lack classical regulatory secretory mechanisms and may respond differently to nutrient signals. LEAP2 is also found in higher concentrations in plasma than ghrelin, even under energy deficit conditions, and modulates GHSR by inhibiting both ghrelin-dependent and ghrelin-independent activities. Given these characteristics, LEAP2 appears to play a major role in regulating GHSR activity in vivo, extending beyond simple ghrelin antagonism and being crucial for the long-term regulation of energy balance. A deeper understanding of how LEAP2 functions may clarify the functional implications of GHSR in different physiological contexts and unlock new therapeutic strategies for treating obesity, diabetes, and other metabolic disorders.

摘要

肝脏表达抗菌肽2(LEAP2)最近作为一种新型激素出现,它通过作用于生长激素促分泌素受体(GHSR),也称为胃饥饿素受体,来减少食物摄入量和血糖水平。这一发现导致了对GHSR功能动力学的根本性重新认识,现在认为它受到双重且相反的调节。LEAP2具有几个独特的特征。LEAP2由肝细胞和肠上皮细胞释放,这两种细胞类型缺乏经典的调节性分泌机制,并且可能对营养信号有不同的反应。即使在能量不足的情况下,血浆中LEAP2的浓度也高于胃饥饿素,并且通过抑制胃饥饿素依赖性和非依赖性活性来调节GHSR。鉴于这些特征,LEAP2似乎在体内调节GHSR活性中起主要作用,不仅仅是简单的胃饥饿素拮抗作用,并且对能量平衡的长期调节至关重要。对LEAP2功能的更深入理解可能会阐明GHSR在不同生理背景下的功能意义,并为治疗肥胖症、糖尿病和其他代谢紊乱开辟新的治疗策略。

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