CAS Key Laboratory of Soft Matter Chemistry, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui, 230026, China.
Department of Chemistry, University of Bari "A. Moro", via Edoardo Orabona 4, 70125, Bari, Italy.
Chemistry. 2018 Jun 26;24(36):8999-9003. doi: 10.1002/chem.201801894. Epub 2018 May 30.
The Menkes (MNK) and Wilson (WLN) disease proteins are two P-type ATPases responsible for active Cu efflux. These ATPases are also associated with resistance to cisplatin. In this work, different metal-binding domains (MBDs) of ATPases (9 out of 12 domains) were compared based on their reactivity towards cisplatin. The reaction rates of the MBDs can be largely different; the reaction of MNK6 is about six times faster than that of WLN2. Copper coordination favors the platination of the MBDs to different extents. The rate of platination was generally greater for holo-MBDs than for apo-MBDS (particularly in the case of WLN4 and WLN2); however, it was negligibly affected in the case of MNK6. Interestingly, the platinum binding weakens the Cu coordination, but does not expel the copper ion from MBDs. The latter results nicely explain the inhibitory effect of Cu upon the cisplatin translocation promoted by Cu-ATPases and can help in understanding how copper levels can modulate the sensitivity of cancer cells to platinum chemotherapy.
Menkes(MNK)和 Wilson(WLN)病蛋白是两种负责主动铜外排的 P 型 ATP 酶。这些 ATP 酶也与顺铂耐药性有关。在这项工作中,根据它们对顺铂的反应性比较了 ATP 酶的不同金属结合结构域(MBD)(12 个结构域中的 9 个)。MBD 的反应速率可能有很大差异;MNK6 的反应速度大约是 WLN2 的六倍。铜配位在不同程度上有利于 MBD 的铂化。与 apo-MBD 相比,全酶-MBD 的铂化速率通常更高(尤其是在 WLN4 和 WLN2 的情况下);然而,在 MNK6 的情况下,影响可以忽略不计。有趣的是,铂结合削弱了铜配位,但不会将铜离子从 MBD 中排出。后一结果很好地解释了铜对 Cu-ATP 酶促进的顺铂易位的抑制作用,并有助于理解铜水平如何调节癌细胞对铂化疗的敏感性。