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特定氨基酸补充剂通过靶向内体 mTOR-v-ATP 酶轴来拯救心脏免受脂质过载诱导的胰岛素抵抗和收缩功能障碍。

Specific amino acid supplementation rescues the heart from lipid overload-induced insulin resistance and contractile dysfunction by targeting the endosomal mTOR-v-ATPase axis.

机构信息

Department of Genetics & Cell Biology, Faculty of Health, Medicine and Life Sciences, Maastricht University, Maastricht, the Netherlands; Institute of Life Sciences, Chongqing Medical University, Chongqing, PR China.

Department of Genetics & Cell Biology, Faculty of Health, Medicine and Life Sciences, Maastricht University, Maastricht, the Netherlands.

出版信息

Mol Metab. 2021 Nov;53:101293. doi: 10.1016/j.molmet.2021.101293. Epub 2021 Jul 13.

Abstract

OBJECTIVE

The diabetic heart is characterized by extensive lipid accumulation which often leads to cardiac contractile dysfunction. The underlying mechanism involves a pivotal role for vacuolar-type H-ATPase (v-ATPase, functioning as endosomal/lysosomal proton pump). Specifically, lipid oversupply to the heart causes disassembly of v-ATPase and endosomal deacidification. Endosomes are storage compartments for lipid transporter CD36. However, upon endosomal deacidification, CD36 is expelled to translocate to the sarcolemma, thereby inducing myocardial lipid accumulation, insulin resistance, and contractile dysfunction. Hence, the v-ATPase assembly may be a suitable target for ameliorating diabetic cardiomyopathy. Another function of v-ATPase involves the binding of anabolic master-regulator mTORC1 to endosomes, a prerequisite for the activation of mTORC1 by amino acids (AAs). We examined whether the relationship between v-ATPase and mTORC1 also operates reciprocally; specifically, whether AA induces v-ATPase reassembly in a mTORC1-dependent manner to prevent excess lipids from entering and damaging the heart.

METHODS

Lipid overexposed rodent/human cardiomyocytes and high-fat diet-fed rats were treated with a specific cocktail of AAs (lysine/leucine/arginine). Then, v-ATPase assembly status/activity, cell surface CD36 content, myocellular lipid uptake/accumulation, insulin sensitivity, and contractile function were measured. To elucidate underlying mechanisms, specific gene knockdown was employed, followed by subcellular fractionation, and coimmunoprecipitation.

RESULTS

In lipid-overexposed cardiomyocytes, lysine/leucine/arginine reinternalized CD36 to the endosomes, prevented/reversed lipid accumulation, preserved/restored insulin sensitivity, and contractile function. These beneficial AA actions required the mTORC1-v-ATPase axis, adaptor protein Ragulator, and endosomal/lysosomal AA transporter SLC38A9, indicating an endosome-centric inside-out AA sensing mechanism. In high-fat diet-fed rats, lysine/leucine/arginine had similar beneficial actions at the myocellular level as in vitro in lipid-overexposed cardiomyocytes and partially reversed cardiac hypertrophy.

CONCLUSION

Specific AAs acting through v-ATPase reassembly reduce cardiac lipid uptake raising the possibility for treatment in situations of lipid overload and associated insulin resistance.

摘要

目的

糖尿病心脏的特征是广泛的脂质积累,这常常导致心脏收缩功能障碍。其潜在机制涉及液泡型 H+-ATP 酶 (v-ATPase,作为内体/溶酶体质子泵发挥作用) 的关键作用。具体而言,脂质供应过多会导致 v-ATPase 解体和内体去酸化。内体是脂质转运蛋白 CD36 的储存室。然而,在内体去酸化后,CD36 被排出并转移到肌膜,从而诱导心肌脂质积累、胰岛素抵抗和收缩功能障碍。因此,v-ATPase 组装可能是改善糖尿病心肌病的合适靶点。v-ATPase 的另一个功能涉及到合成代谢主调控因子 mTORC1 与内体的结合,这是氨基酸 (AA) 激活 mTORC1 的前提。我们研究了 v-ATPase 和 mTORC1 之间的关系是否也存在相互作用;具体而言,AA 是否以 mTORC1 依赖的方式诱导 v-ATPase 重新组装,以防止过多的脂质进入并损害心脏。

方法

用特定的氨基酸 (赖氨酸/亮氨酸/精氨酸) 鸡尾酒处理脂质过度暴露的啮齿动物/人心肌细胞和高脂肪饮食喂养的大鼠。然后,测量 v-ATPase 组装状态/活性、细胞膜表面 CD36 含量、肌细胞脂质摄取/积累、胰岛素敏感性和收缩功能。为了阐明潜在的机制,我们采用了特定的基因敲低,然后进行亚细胞分离和免疫共沉淀。

结果

在脂质过度暴露的心肌细胞中,赖氨酸/亮氨酸/精氨酸将 CD36 重内吞到内体中,防止/逆转脂质积累,保持/恢复胰岛素敏感性,并恢复收缩功能。这些有益的 AA 作用需要 mTORC1-v-ATPase 轴、衔接蛋白 Ragulator 和内体/溶酶体 AA 转运体 SLC38A9,表明存在一种以内体为中心的 AA 感应机制。在高脂肪饮食喂养的大鼠中,赖氨酸/亮氨酸/精氨酸在心肌细胞中具有与体外脂质过度暴露时相似的有益作用,并部分逆转了心脏肥大。

结论

特定的氨基酸通过 v-ATPase 组装的重新组装减少了心脏对脂质的摄取,为在脂质过载和相关胰岛素抵抗的情况下提供了治疗的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eb9/8350375/b8d0212b2710/ga1.jpg

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