Rabolli Charles, Longenecker Jacob Z, Naarmann-de Vries Isabel S, Serrano Joan, Petrosino Jennifer M, Kyriazis George A, Dieterich Christoph, Accornero Federica
Department of Physiology and Cell Biology, Dorothy M. Davis Heart and Lung Research Institute, The Ohio State University, Columbus, Ohio, USA.
Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, Rhode Island, USA.
JCI Insight. 2025 Apr 24;10(11). doi: 10.1172/jci.insight.188414. eCollection 2025 Jun 9.
Regulation of organismal homeostasis in response to nutrient availability is a vital physiological process that involves interorgan communication. The role of the heart in controlling systemic metabolic health is not clear. Adopting a mouse model of diet-induced obesity, we found that the landscape of N6-methyladenosine (m6A) on cardiac mRNA was altered following high-fat/high-carbohydrate feeding (Western diet). m6A is a critical posttranscriptional regulator of gene expression, the formation of which is catalyzed by methyltransferase-like 3 (METTL3). Through parallel unbiased approaches of Nanopore sequencing, mass spectrometry, and protein array, we found regulation of circulating factors under the control of METTL3. Mice with cardiomyocyte-specific deletion of METTL3 showed a systemic inability to respond to nutritional challenge, thereby mitigating the detrimental effects of Western diet. Conversely, increasing cardiac METTL3 level exacerbated diet-induced body weight gain, adiposity, and glucose intolerance. Our findings position the heart at the center of systemic metabolism regulation and highlight an m6A-dependent pathway to be exploited for the battle against obesity.
生物体根据营养物质可利用性调节体内稳态是一个涉及器官间通讯的重要生理过程。心脏在控制全身代谢健康方面的作用尚不清楚。采用饮食诱导肥胖的小鼠模型,我们发现高脂/高碳水化合物喂养(西式饮食)后,心脏mRNA上的N6-甲基腺苷(m6A)图谱发生了改变。m6A是基因表达的关键转录后调节因子,其形成由类甲基转移酶3(METTL3)催化。通过纳米孔测序、质谱和蛋白质阵列等平行无偏倚方法,我们发现METTL3控制下的循环因子调节。心肌细胞特异性缺失METTL3的小鼠表现出全身对营养挑战无反应的能力,从而减轻了西式饮食的有害影响。相反,增加心脏METTL3水平会加剧饮食诱导的体重增加、肥胖和葡萄糖不耐受。我们的研究结果将心脏置于全身代谢调节的中心位置,并突出了一条依赖m6A的途径,可用于对抗肥胖。