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去除Gβγ-SNAP25胞吐制动可增强胰岛素作用,促进脂肪细胞褐变,并预防饮食诱导的肥胖。

Gβγ-SNAP25 exocytotic brake removal enhances insulin action, promotes adipocyte browning, and protects against diet-induced obesity.

作者信息

Ceddia Ryan P, Zurawski Zack, Thompson Gray Analisa, Adegboye Feyisayo, McDonald-Boyer Ainsley, Shi Fubiao, Liu Dianxin, Maldonado Jose, Feng Jiesi, Li Yulong, Alford Simon, Ayala Julio E, McGuinness Owen P, Collins Sheila, Hamm Heidi E

机构信息

Department of Medicine, Division of Cardiovascular Medicine, Vanderbilt University Medical Center, Nashville, Tennessee, USA.

Department of Pharmacology, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

J Clin Invest. 2023 Oct 2;133(19):e160617. doi: 10.1172/JCI160617.

Abstract

Negative regulation of exocytosis from secretory cells is accomplished through inhibitory signals from Gi/o GPCRs by Gβγ subunit inhibition of 2 mechanisms: decreased calcium entry and direct interaction of Gβγ with soluble N-ethylmaleimide-sensitive factor attachment protein (SNAP) receptor (SNARE) plasma membrane fusion machinery. Previously, we disabled the second mechanism with a SNAP25 truncation (SNAP25Δ3) that decreased Gβγ affinity for the SNARE complex, leaving exocytotic fusion and modulation of calcium entry intact and removing GPCR-Gβγ inhibition of SNARE-mediated exocytosis. Here, we report substantial metabolic benefit in mice carrying this mutation. Snap25Δ3/Δ3 mice exhibited enhanced insulin sensitivity and beiging of white fat. Metabolic protection was amplified in Snap25Δ3/Δ3 mice challenged with a high-fat diet. Glucose homeostasis, whole-body insulin action, and insulin-mediated glucose uptake into white adipose tissue were improved along with resistance to diet-induced obesity. Metabolic protection in Snap25Δ3/Δ3 mice occurred without compromising the physiological response to fasting or cold. All metabolic phenotypes were reversed at thermoneutrality, suggesting that basal autonomic activity was required. Direct electrode stimulation of sympathetic neuron exocytosis from Snap25Δ3/Δ3 inguinal adipose depots resulted in enhanced and prolonged norepinephrine release. Thus, the Gβγ-SNARE interaction represents a cellular mechanism that deserves further exploration as an additional avenue for combating metabolic disease.

摘要

分泌细胞胞吐作用的负调控是通过Gi/o G蛋白偶联受体(GPCR)发出的抑制性信号实现的,该信号通过Gβγ亚基抑制两种机制:减少钙内流以及Gβγ与可溶性N-乙基马来酰亚胺敏感因子附着蛋白(SNAP)受体(SNARE)质膜融合机制的直接相互作用。此前,我们通过SNAP25截短(SNAP25Δ3)使第二种机制失活,这降低了Gβγ对SNARE复合体的亲和力,使胞吐融合和钙内流调节保持完整,并消除了GPCR-Gβγ对SNARE介导的胞吐作用的抑制。在此,我们报道携带这种突变的小鼠具有显著的代谢益处。Snap25Δ3/Δ3小鼠表现出增强的胰岛素敏感性和白色脂肪米色化。在用高脂饮食攻击的Snap25Δ3/Δ3小鼠中,代谢保护作用增强。葡萄糖稳态、全身胰岛素作用以及胰岛素介导的葡萄糖摄取到白色脂肪组织的过程均得到改善,同时对饮食诱导的肥胖具有抵抗力。Snap25Δ3/Δ3小鼠的代谢保护作用在不损害对禁食或寒冷的生理反应的情况下发生。所有代谢表型在热中性条件下均被逆转,这表明需要基础自主神经活动。对来自Snap25Δ3/Δ3腹股沟脂肪库的交感神经元胞吐作用进行直接电极刺激,导致去甲肾上腺素释放增强且持续时间延长。因此,Gβγ-SNARE相互作用代表了一种细胞机制,作为对抗代谢疾病的额外途径值得进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e1c/10541194/54de4ee5e1d4/jci-133-160617-g118.jpg

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