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化学耐药性相关 ABC 转运体的结构、机制和靶向进展。

Advances in the structure, mechanism and targeting of chemoresistance-linked ABC transporters.

机构信息

Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.

出版信息

Nat Rev Cancer. 2023 Nov;23(11):762-779. doi: 10.1038/s41568-023-00612-3. Epub 2023 Sep 15.

Abstract

Cancer cells frequently display intrinsic or acquired resistance to chemically diverse anticancer drugs, limiting therapeutic success. Among the main mechanisms of this multidrug resistance is the overexpression of ATP-binding cassette (ABC) transporters that mediate drug efflux, and, specifically, ABCB1, ABCG2 and ABCC1 are known to cause cancer chemoresistance. High-resolution structures, biophysical and in silico studies have led to tremendous progress in understanding the mechanism of drug transport by these ABC transporters, and several promising therapies, including irradiation-based immune and thermal therapies, and nanomedicine have been used to overcome ABC transporter-mediated cancer chemoresistance. In this Review, we highlight the progress achieved in the past 5 years on the three transporters, ABCB1, ABCG2 and ABCC1, that are known to be of clinical importance. We address the molecular basis of their broad substrate specificity gleaned from structural information and discuss novel approaches to block the function of ABC transporters. Furthermore, genetic modification of ABC transporters by CRISPR-Cas9 and approaches to re-engineer amino acid sequences to change the direction of transport from efflux to import are briefly discussed. We suggest that current information regarding the structure, mechanism and regulation of ABC transporters should be used in clinical trials to improve the efficiency of chemotherapeutics for patients with cancer.

摘要

癌细胞经常表现出内在或获得性的抗药性,对化学上不同的抗癌药物产生耐药性,从而限制了治疗的成功。在这种多药耐药的主要机制中,ATP 结合盒(ABC)转运蛋白的过度表达介导了药物外排,特别是 ABCB1、ABCG2 和 ABCC1 被认为是导致癌症化疗耐药的原因。高分辨率结构、生物物理和计算机模拟研究极大地促进了对这些 ABC 转运蛋白药物转运机制的理解,并且已经使用了几种有前途的疗法,包括基于辐射的免疫和热疗以及纳米医学,以克服 ABC 转运蛋白介导的癌症化疗耐药性。在这篇综述中,我们强调了过去 5 年在三种转运蛋白 ABCB1、ABCG2 和 ABCC1 方面取得的进展,这些转运蛋白被认为具有临床重要性。我们讨论了它们广泛的底物特异性的分子基础,这些信息来源于结构信息,并讨论了阻断 ABC 转运蛋白功能的新方法。此外,我们还简要讨论了 CRISPR-Cas9 对 ABC 转运蛋白的遗传修饰以及重新设计氨基酸序列以改变从外排到内流的转运方向的方法。我们认为,目前关于 ABC 转运蛋白的结构、机制和调节的信息应该在临床试验中得到应用,以提高癌症患者化疗药物的效率。

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