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Identification of a lipokine, a lipid hormone linking adipose tissue to systemic metabolism

机译:脂蛋白的鉴定,脂蛋白是将脂肪组织与全身代谢联系在一起的脂质激素

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Dysregulation of lipid metabolism in individual tissues leads to systemic disruption of insulin action and glucose metabolism. Utilizing quantitative lipidomic analyses and mice deficient in adipose tissue lipid chaperones aP2 and mal1, we explored how metabolic alterations in adipose tissue are linked to whole-body metabolism through lipid signals. A robust increase in de novo lipogenesis rendered the adipose tissue of these mice resistant to the deleterious effects of dietary lipid exposure. Systemic lipid profiling also led to identification of C16:In7-palmitoleate as an adipose tissue-derived lipid hormone that strongly stimulates muscle insulin action and suppresses hepatosteatosis. Our data reveal a lipid-mediated endocrine network and demonstrate that adipose tissue uses lipokines such as C16: In7-palmitoleate to communicate with distant organs and regulate systemic metabolic homeostasis.
机译:单个组织中脂质代谢的失调导致胰岛素作用和葡萄糖代谢的系统性破坏。利用定量脂质组学分析和缺乏脂肪组织脂质伴侣aP2和mal1的小鼠,我们探索了脂肪组织中的代谢变化如何通过脂质信号与全身代谢联系在一起。从头脂肪形成的强劲增加使这些小鼠的脂肪组织抵抗饮食脂质暴露的有害作用。全身性脂质分布图还导致鉴定出C16:In7-棕榈油酸酯为脂肪组织来源的脂质激素,该激素强烈刺激肌肉胰岛素作用并抑制肝脂肪变性。我们的数据揭示了脂质介导的内分泌网络,并证明了脂肪组织使用脂蛋白​​(例如C16:In7-棕榈油酸酯)与远处的器官进行通讯并调节全身代谢稳态。

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