Robert H. Lurie Comprehensive Cancer Center, Northwestern University Feinberg School of Medicine, Chicago, Illinois 60611, USA.
Curr Opin Oncol. 2012 Nov;24(6):650-4. doi: 10.1097/CCO.0b013e328356da72.
Transformed cells exhibit a high rate of glucose consumption beyond that necessary for ATP synthesis. Glucose aids in the generation of biomass and regulates cellular signaling critical for oncogenic progression. A key rate-limiting step in glucose utilization is the transport of glucose across the plasma membrane. This review will highlight key glucose transporters (GLUTs) and current therapies targeting this class of proteins.
GLUTs, enabling the facilitative entry of glucose into a cell, are increasingly found to be deregulated in cancer. Although cancer-specific expression patterns for GLUTs are being identified, comprehensive analyses substantiating a role for individual GLUTs are still required. Studies defining GLUTs as being rate-limiting in specific tumor contexts, the identification of GLUT1 inhibitors via synthetic lethality screens, novel engagement of the insulin-responsive GLUT4 in myeloma and identification of GLUT9 being a urate transporter, are key advances underscoring the need for continued investigation of this large and enigmatic class of proteins.
Tumor cells exhibit elevated levels of glucose uptake, a phenomenon that has been capitalized upon for the prognostic and diagnostic imaging of a wide range of cancers using radio-labeled glucose analogs. We have, however, not yet been able to target glucose entry in a tumor cell-specific manner for therapy. GLUTs have been identified as rate-limiting in specific tumor contexts. The identification and targeting of tumor-specific GLUTs provide a promising approach to block glucose-regulated metabolism and signaling more comprehensively.
转化细胞表现出高于合成 ATP 所需的葡萄糖消耗率。葡萄糖有助于生物量的产生,并调节细胞信号转导,这对致癌进展至关重要。葡萄糖利用的一个关键限速步骤是葡萄糖穿过质膜的转运。这篇综述将重点介绍关键的葡萄糖转运蛋白 (GLUTs) 以及目前针对这一类蛋白质的治疗方法。
越来越多的证据表明,GLUTs 可促进葡萄糖进入细胞,在癌症中失调。虽然正在确定 GLUTs 在癌症中的特异性表达模式,但仍需要全面分析来证实单个 GLUTs 的作用。在特定肿瘤环境中确定 GLUTs 为限速步骤、通过合成致死筛选鉴定 GLUT1 抑制剂、新型结合胰岛素反应性 GLUT4 于骨髓瘤以及鉴定 GLUT9 为尿酸转运蛋白的研究,都是强调需要继续研究这一庞大而神秘的蛋白质家族的关键进展。
肿瘤细胞表现出高水平的葡萄糖摄取,这一现象已被利用,通过放射性标记的葡萄糖类似物对广泛的癌症进行预后和诊断成像。然而,我们还没有能够以肿瘤细胞特异性的方式靶向葡萄糖进入来进行治疗。GLUTs 已被确定为特定肿瘤环境中的限速步骤。鉴定和靶向肿瘤特异性 GLUTs 为更全面地阻断葡萄糖调节的代谢和信号转导提供了一个有前途的方法。