Center for Research Development and Evaluation of Pharmaceutical Excipients and Generic Drugs, China Pharmaceutical University, Nanjing, 210009, PR China.
Center for Research Development and Evaluation of Pharmaceutical Excipients and Generic Drugs, China Pharmaceutical University, Nanjing, 210009, PR China.
Biomed Pharmacother. 2018 Apr;100:335-348. doi: 10.1016/j.biopha.2018.02.038. Epub 2018 Feb 16.
Indeed, multi-drug resistance (MDR) is a significant obstacle to effective chemotherapy. The overexpression of ATP-binding cassette (ABC) membrane transporters is a principal cause of enhanced cytotoxic drug efflux and treatment failure in various types of cancers. At cellular level, the pumps of ABC family regulate the transportation of numerous substances including drugs in and out of the cells. In past, the overexpression of ABC pumps suggested a well-known mechanism of drug resistance in cancers as well as infectious diseases. In oncology, the search for new compounds for the inhibition of these hyperactive ABC pumps either genetically or functionally, growing interest to reverse multi-drug resistance and increase chemotherapeutic effects. Several ABC pump inhibitor/modulators has been explored to address the cancer associated MDR. However, the clinical results are still disappointing and conventional chemotherapies are constantly failed in successful eradication of MDR tumors. In this context, the structural and functional understanding of different ATP pumps is most important. In this concise review, we elaborated basic crystal structure of ABC transporter proteins as well as its critical elements such as different domains, motifs as well as some important amino acids which are responsible for ATP binding and drug efflux as well as demonstrated an ATP-switch model employed by various ABC membrane transporters. Furthermore, we briefly summarized different newly identified MDR inhibitors/modulators, deployed alone or in combination with cytotoxic agents to deal with MDR in different types of cancers.
事实上,多药耐药性(MDR)是有效化疗的重大障碍。ATP 结合盒(ABC)膜转运蛋白的过度表达是增强各种类型癌症中细胞毒性药物外排和治疗失败的主要原因。在细胞水平上,ABC 家族的泵调节许多物质(包括药物)在细胞内外的运输。在过去,ABC 泵的过度表达表明了癌症和传染病中一种众所周知的耐药机制。在肿瘤学中,寻找新的化合物来抑制这些过度活跃的 ABC 泵,无论是在遗传上还是在功能上,都越来越有兴趣逆转多药耐药性并提高化疗效果。已经探索了几种 ABC 泵抑制剂/调节剂来解决与癌症相关的 MDR。然而,临床结果仍然令人失望,传统的化疗经常未能成功根除 MDR 肿瘤。在这种情况下,对不同 ATP 泵的结构和功能的理解是最重要的。在这篇简明的综述中,我们详细阐述了 ABC 转运蛋白的基本晶体结构及其关键元件,如不同的结构域、基序以及一些负责 ATP 结合和药物外排的重要氨基酸,并展示了各种 ABC 膜转运蛋白所采用的 ATP 开关模型。此外,我们还简要总结了不同新鉴定的 MDR 抑制剂/调节剂,单独或与细胞毒性药物联合用于处理不同类型癌症中的 MDR。
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