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首页> 外文期刊>Proceedings of the Nutrition Society >Vitamin A in regulation of insulin responsiveness: mini review
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Vitamin A in regulation of insulin responsiveness: mini review

机译:维生素A调节胰岛素反应性:综述

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Vitamin A, retinol, circulates in blood bound to retinol-binding protein (RBP4) which, in turn, associates with another serum protein, transthyretin (TTR), to form a ternary retinol-RBP4-TTR complex. At some tissues, retinol-bound (holo-) RBP4 is recognised by a receptor termed stimulated by retinoic acid 6 (STRA6) which transports retinol into cells. This mini-review summarises evidence demonstrating that, in addition to functioning as a retinol transporter, STRA6 is also a signalling receptor which is activated by holo-RBP4. The data show that STRA6-mediated retinol transport induces receptor phosphorylation, in turn activating a Janus kinases2/signal transducers and activators of transcription (STAT)3/5 cascade that culminates in induction of STAT target genes. STRA6-mediated retinol transport and cell signalling are inter-dependent, and both functions critically rely on intracellular retinol trafficking and metabolism. Hence, STRA6 couples sensing' of vitamin A homeostasis and metabolism to cell signalling, allowing it to control important biological functions. For example, by inducing the expression of the STAT target gene suppressor of cytokine signalling 3, STRA6 potently suppresses insulin responses. These observations provide a rationale for understanding the reports that elevation in serum levels of RBP4, often observed in obese mice and human subjects, causes insulin resistance. The observations indicate that the holo-RBP4 /STRA6 signalling cascade may comprise an important link through which obesity leads to insulin resistance and suggest that the pathway may be a novel target for treatment of metabolic diseases.
机译:维生素A(视黄醇)在与视黄醇结合蛋白(RBP4)结合的血液中循环,进而与另一种血清蛋白运甲状腺素蛋白(TTR)结合,形成三元视黄醇-RBP4-TTR复合物。在某些组织中,视黄醇结合的(全)RBP4被称为视黄酸6(STRA6)刺激的受体识别,该受体将视黄醇转运到细胞中。这项小型综述总结了证据,这些证据表明,除充当视黄醇转运蛋白外,STRA6还是由holo-RBP4激活的信号受体。数据显示,STRA6介导的视黄醇运输诱导受体磷酸化,进而激活Janus激酶2 /信号转导子和转录激活子(STAT)3/5级联,最终导致STAT目标基因的诱导。 STRA6介导的视黄醇运输和细胞信号传导是相互依赖的,并且两种功能都严重依赖于细胞内视黄醇的运输和代谢。因此,STRA6将维生素A稳态和新陈代谢的感知与细胞信号传导结合在一起,从而使其能够控制重要的生物学功能。例如,通过诱导细胞因子信号传导3的STAT靶基因抑制剂的表达,STRA6有效地抑制了胰岛素应答。这些观察结果为理解报道的RBP4血清水平升高(通常在肥胖小鼠和人类受试者中观察到)导致胰岛素抵抗提供了理论依据。观察结果表明,holo-RBP4 / STRA6信号级联可能包括肥胖导致胰岛素抵抗的重要环节,并表明该途径可能是治疗代谢性疾病的新靶标。

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