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克隆癌细胞多药耐药相关膜转运与细胞周期相位的相关性。

Correlation between multi-drug resistance-associated membrane transport in clonal cancer cells and the cell cycle phase.

机构信息

Centre for Research on Biomolecular Interactions, York University, Toronto, Ontario, Canada.

出版信息

PLoS One. 2012;7(7):e41368. doi: 10.1371/journal.pone.0041368. Epub 2012 Jul 25.

Abstract

Multidrug resistance driven by ABC membrane transporters is one of the major reasons for treatment failure in human malignancy. Some limited evidence has previously been reported on the cell cycle dependence of ABC transporter expression. However, it has never been demonstrated that the functional activity of these transporters correlates with the cell cycle position. Here, we studied the rate of intrinsic ABC transport in different phases of the cell cycle in cultured MCF-7 breast cancer cells. The rate was characterized in terms of the efflux kinetics from cells loaded with an ABC transporter substrate. As averaging the kinetics over a cell population could lead to errors, we studied kinetics of ABC transport at the single-cell level. We found that the rate of ABC transport in MCF-7 cells could be described by Michaelis-Menten kinetics with two classical parameters, V(max) and K(M). Each of these parameters showed similar unimodal distributions with different positions of maxima for cell subpopulations in the 2c and 4c states. Compared to the 2c cells, the 4c cells exhibited greater V(max) values, indicating a higher activity of transport. They also exhibited a greater V(max)/K(M) ratio, indicating a higher efficiency of transport. Our findings suggest that cell cycle-related modulation of MDR may need to be taken into account when designing chemotherapy regimens which include cytostatic agents.

摘要

多药耐药性由 ABC 膜转运蛋白驱动,是人类恶性肿瘤治疗失败的主要原因之一。先前已有一些关于 ABC 转运蛋白表达与细胞周期依赖性的有限证据报告。然而,从未证明这些转运蛋白的功能活性与细胞周期位置相关。在这里,我们研究了在 MCF-7 乳腺癌细胞培养物的不同细胞周期相中内在 ABC 转运的速率。通过从用 ABC 转运蛋白底物负载的细胞中排出的动力学来表征该速率。由于对细胞群体的动力学进行平均可能会导致错误,因此我们在单细胞水平上研究了 ABC 转运的动力学。我们发现 MCF-7 细胞中的 ABC 转运速率可以用米氏动力学来描述,具有两个经典参数,V(max)和 K(M)。这两个参数中的每一个都表现出类似的单峰分布,对于 2c 和 4c 状态的细胞亚群,最大值的位置不同。与 2c 细胞相比,4c 细胞表现出更高的 V(max)值,表明转运活性更高。它们还表现出更高的 V(max)/K(M)比值,表明转运效率更高。我们的研究结果表明,在设计包括细胞抑制剂的化疗方案时,需要考虑与细胞周期相关的 MDR 调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/568b/3405118/fa146ecead15/pone.0041368.g001.jpg

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