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瘦素缺乏症患者接受瘦素替代治疗过程中的血浆蛋白质组动态变化。

Dynamics of plasma proteome during leptin-replacement therapy in genetically based leptin deficiency.

机构信息

Department of Psychiatry and Behavioral Sciences, Center on Pharmacogenomics, University of Miami Miller School of Medicine, Miami, FL 33136, USA.

出版信息

Pharmacogenomics J. 2011 Jun;11(3):174-90. doi: 10.1038/tpj.2010.30. Epub 2010 May 11.

Abstract

The effects of leptin-replacement therapy on the plasma proteome of three unique adults with genetically based leptin deficiency were studied longitudinally during the course of recombinant human leptin-replacement treatment. Quantitative proteomics analysis was performed in plasma samples collected during four stages: before leptin treatment was initiated, after 1.5 and 6 years of leptin-replacement treatment, and after 7 weeks of temporary interruption of leptin-replacement therapy. Of 500 proteins reliably identified and quantitated in those four stages, about 100 were differentially abundant twofold or more in one or more stages. Synchronous dynamics of abundances of about 90 proteins was observed reflecting both short- and long-term effects of leptin-replacement therapy. Pathways and processes enriched with overabundant synchronous proteins were cell adhesion, cytoskeleton remodeling, cell cycle, blood coagulation, glycolysis, and gluconeogenesis. Plausible common regulators of the above synchronous proteins were identified using transcription regulation network analysis. The generated network included two transcription factors (c-Myc and androgen receptor) that are known to activate each other through a double-positive feedback loop, which may represent a potential molecular mechanism for the long-term effects of leptin-replacement therapy. Our findings may help to elucidate the effects of leptin on insulin resistance.

摘要

我们对三种遗传性瘦素缺乏症成人患者进行了纵向研究,以评估瘦素替代治疗对其血浆蛋白质组的影响。在接受重组人生长激素替代治疗期间,我们对四个阶段采集的血浆样本进行了定量蛋白质组学分析:开始瘦素治疗前、接受治疗 1.5 年和 6 年后,以及停止治疗 7 周后。在这四个阶段可靠鉴定和定量的 500 种蛋白质中,约有 100 种在一个或多个阶段中丰度差异两倍或更多。约 90 种蛋白质的同步动态变化反映了瘦素替代治疗的短期和长期效应。富含过度丰富的同步蛋白质的途径和过程包括细胞黏附、细胞骨架重塑、细胞周期、血液凝固、糖酵解和糖异生。我们使用转录调控网络分析鉴定了上述同步蛋白质的可能共同调控因子。生成的网络包括两个转录因子(c-Myc 和雄激素受体),它们通过双正反馈回路相互激活,这可能代表了瘦素替代治疗长期效应的潜在分子机制。我们的发现可能有助于阐明瘦素对胰岛素抵抗的影响。

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