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高密度脂蛋白和葡萄糖转运蛋白 1 抑制可逆转骨髓增生性疾病小鼠模型中的代谢亢进状态。

HDL and Glut1 inhibition reverse a hypermetabolic state in mouse models of myeloproliferative disorders.

机构信息

Department of Pathology and Immunology, Washington University in St. Louis School of Medicine, St. Louis, MO 63110, USA.

出版信息

J Exp Med. 2013 Feb 11;210(2):339-53. doi: 10.1084/jem.20121357. Epub 2013 Jan 14.

Abstract

A high metabolic rate in myeloproliferative disorders is a common complication of neoplasms, but the underlying mechanisms are incompletely understood. Using three different mouse models of myeloproliferative disorders, including mice with defective cholesterol efflux pathways and two models based on expression of human leukemia disease alleles, we uncovered a mechanism by which proliferating and inflammatory myeloid cells take up and oxidize glucose during the feeding period, contributing to energy dissipation and subsequent loss of adipose mass. In vivo, lentiviral inhibition of Glut1 by shRNA prevented myeloproliferation and adipose tissue loss in mice with defective cholesterol efflux pathway in leukocytes. Thus, Glut1 was necessary to sustain proliferation and potentially divert glucose from fat storage. We also showed that overexpression of the human ApoA-I transgene to raise high-density lipoprotein (HDL) levels decreased Glut1 expression, dampened myeloproliferation, and prevented fat loss. These experiments suggest that inhibition of Glut-1 and HDL cholesterol-raising therapies could provide novel therapeutic approaches to treat the energy imbalance observed in myeloproliferative disorders.

摘要

在骨髓增生性疾病中,高代谢率是肿瘤的常见并发症,但潜在机制尚不完全清楚。使用三种不同的骨髓增生性疾病小鼠模型,包括胆固醇外排途径缺陷的小鼠和两种基于人白血病疾病等位基因表达的模型,我们揭示了一种机制,即增殖和炎症性髓样细胞在进食期间摄取和氧化葡萄糖,导致能量耗散,随后脂肪质量损失。在体内,通过 shRNA 慢病毒抑制 Glut1 可防止白细胞胆固醇外排途径缺陷小鼠的骨髓增生和脂肪组织损失。因此,Glut1 对于维持增殖和潜在地将葡萄糖从脂肪储存中转移是必需的。我们还表明,过表达人载脂蛋白 A-I 转基因以提高高密度脂蛋白 (HDL) 水平可降低 Glut1 的表达,抑制骨髓增生,并防止脂肪损失。这些实验表明,抑制 Glut-1 和升高 HDL 胆固醇的治疗方法可能为治疗骨髓增生性疾病中观察到的能量失衡提供新的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed83/3570097/234eb99e0acd/JEM_20121357_Fig1.jpg

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