Stein W D
Department of Biological Chemistry, Silberman Institute of Life Sciences, Hebrew University, Jerusalem, Israel.
Physiol Rev. 1997 Apr;77(2):545-90. doi: 10.1152/physrev.1997.77.2.545.
Most cancer deaths result from the cancer's either being intrinsically resistant to chemotherapeutic drugs or becoming resistant after being initially sensitive. Often, in cells grown in cell culture, drug resistance correlates with the presence of one or more of the so-called P-glycoproteins or multidrug resistance proteins, products of the mdr family of genes. This review is largely concerned with the transport kinetics of the P-glycoproteins. We first present a brief overview of the P-glycoproteins, their properties, and their clinical significance. Later sections of the review expand on this material with special emphasis on the substrates of P-glycoprotein and how they cross the cell membrane, on the transport kinetics of the P-glycoprotein, on reversers of its action, and on its activity as an ATPase. In a final section, we consider the mechanism of action of P-glycoprotein as an actively transporting membrane pump. The characteristic of P-glycoprotein considered the most difficult to explain is its very broad specificity (or lack of specificity), but there are precedents for this property in well-known proteins such as serum albumin, which binds a range of molecular types, including substrates and reversers of P-glycoprotein, seemingly as broad as does P-glycoprotein. Pointing out this analogy does not provide a molecular explanation for the substrate-binding properties of P-glycoprotein but does make those properties more assimilable.
大多数癌症死亡是由于癌症本身对化疗药物具有内在抗性,或者在最初敏感后产生抗性。通常,在细胞培养中生长的细胞中,耐药性与一种或多种所谓的P-糖蛋白或多药耐药蛋白的存在相关,这些蛋白是mdr基因家族的产物。本综述主要关注P-糖蛋白的转运动力学。我们首先简要概述P-糖蛋白、它们的特性及其临床意义。综述的后续部分将对这些内容进行扩展,特别强调P-糖蛋白的底物及其穿过细胞膜的方式、P-糖蛋白的转运动力学、其作用的逆转剂以及其作为ATP酶的活性。在最后一部分,我们将探讨P-糖蛋白作为一种主动转运膜泵的作用机制。P-糖蛋白最难解释的特性是其非常广泛的特异性(或缺乏特异性),但在诸如血清白蛋白等知名蛋白质中也有这种特性的先例,血清白蛋白能结合一系列分子类型,包括P-糖蛋白的底物和逆转剂,其范围似乎与P-糖蛋白一样广泛。指出这种类比并没有为P-糖蛋白的底物结合特性提供分子解释,但确实使这些特性更容易理解。