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激活的胰岛素受体的差异途径偶联通过 XMetA(一种变构部分激动剂抗体)驱动信号选择性。

Differential pathway coupling of the activated insulin receptor drives signaling selectivity by XMetA, an allosteric partial agonist antibody.

机构信息

XOMA Corporation, Berkeley, California (D.H.B., I.D.G., J.A.C., M.K.R.); Obesity & Metabolism Research Unit, United States Department of Agriculture-Agricultural Research Service Western Human Nutrition Research Center and Department of Nutrition, Davis, California (S.H.A.); and Molecular, Cellular and Integrative Physiology Graduate Group, University of California at Davis, Davis, California (D.H.B., S.H.A.).

XOMA Corporation, Berkeley, California (D.H.B., I.D.G., J.A.C., M.K.R.); Obesity & Metabolism Research Unit, United States Department of Agriculture-Agricultural Research Service Western Human Nutrition Research Center and Department of Nutrition, Davis, California (S.H.A.); and Molecular, Cellular and Integrative Physiology Graduate Group, University of California at Davis, Davis, California (D.H.B., S.H.A.)

出版信息

J Pharmacol Exp Ther. 2015 Apr;353(1):35-43. doi: 10.1124/jpet.114.221309. Epub 2015 Jan 22.

Abstract

The monoclonal antibody XMetA is an allosteric partial agonist of the insulin receptor (IR), which activates the metabolic Akt kinase signaling pathway while having little or no effect on the mitogenic extracellular signal-regulated kinase (ERK) signaling pathway. To investigate the nature of this selective signaling, we have conducted a detailed investigation of XMetA to evaluate specific phosphorylation and activation of IR, Akt, and ERK in Chinese hamster ovary cell lines expressing either the short or long isoform of the human IR. Insulin activated both pathways, but the phosphorylation of Akt was more sensitive to the hormone than the phosphorylation of ERK. Maximally effective concentrations of XMetA elicited phosphorylation patterns similar to 40-100 pM insulin, which were sufficient for robust Akt phosphorylation, but had little effect on ERK phosphorylation. These data indicate that the preferential signaling of XMetA is due to an innate difference in pathway sensitivity of Akt versus ERK responses to IR activation and partial agonism by XMetA, rather than a separate pathway-biased mechanism. The metabolic selectivity of partial IR agonists like XMetA, if recapitulated in vivo, may be a desirable feature of therapeutic agents designed to regulate blood glucose levels while minimizing undesirable outcomes of excessive IR mitogenic activation.

摘要

单克隆抗体 XMetA 是胰岛素受体 (IR) 的变构部分激动剂,它激活代谢 Akt 激酶信号通路,而对促有丝分裂细胞外信号调节激酶 (ERK) 信号通路几乎没有影响。为了研究这种选择性信号的性质,我们对 XMetA 进行了详细的研究,以评估在表达人 IR 的短或长同工型的中国仓鼠卵巢细胞系中,IR、Akt 和 ERK 的特定磷酸化和激活。胰岛素激活了这两条通路,但 Akt 的磷酸化对激素比 ERK 的磷酸化更敏感。XMetA 的最大有效浓度引发的磷酸化模式类似于 40-100 pM 胰岛素,足以引起强烈的 Akt 磷酸化,但对 ERK 磷酸化几乎没有影响。这些数据表明,XMetA 的优先信号转导是由于 Akt 与 ERK 对 IR 激活的反应以及 XMetA 的部分激动作用的内在差异所致,而不是单独的通路偏向机制。像 XMetA 这样的部分 IR 激动剂的代谢选择性,如果在体内得到重现,可能是设计用于调节血糖水平的治疗剂的一个理想特征,同时最大限度地减少过度的 IR 促有丝分裂激活的不良后果。

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