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N-苄基阿霉素(AD 288)对DNA拓扑异构酶II的催化抑制作用。

Catalytic inhibition of DNA topoisomerase II by N-benzyladriamycin (AD 288).

作者信息

Lothstein L, Suttle D P, Roaten J B, Koseki Y, Israel M, Sweatman T W

机构信息

Department of Pharmacology, University of Tennessee Health Science Center, 38163, USA, Memphis, TN, USA.

出版信息

Biochem Pharmacol. 2000 Dec 1;60(11):1621-8. doi: 10.1016/s0006-2952(00)00472-x.

Abstract

N-Benzyladriamycin (AD 288) is a highly lipophilic, semi-synthetic congener of doxorubicin (DOX). Unlike DOX, which stimulates double-stranded DNA scission by stabilizing topoisomerase II/DNA cleavable complexes, AD 288 is a catalytic inhibitor of topoisomerase II, capable of preventing topoisomerase II activity on DNA. The concentration of AD 288 required to inhibit the topoisomerase II-catalyzed decatenation of linked networks of kinetoplast DNA was comparable to that for DOX. However, AD 288 did not stabilize cleavable complex formation or stimulate topoisomerase II-mediated DNA cleavage. In addition, AD 288 inhibited the formation of cleavable complexes by etoposide in a concentration-dependent manner. Human CCRF-CEM cells and murine J774. 2 cells exhibiting resistance against DOX, teniposide, or 3'-hydroxy-3'-deaminodoxorubicin through reduced topoisomerase II activity remained sensitive to AD 288. These studies suggest that AD 288 inhibits topoisomerase II activity by preventing the initial non-covalent binding of topoisomerase II to DNA. Since AD 288 is a potent DNA intercalator, catalytic inhibition is achieved by prohibiting access of the enzyme to DNA binding sites. These results also demonstrate that specific substitutions on the aminosugar of DOX can alter the mechanism of topoisomerase II inhibition.

摘要

N-苄基阿霉素(AD 288)是阿霉素(DOX)的一种高度亲脂性半合成类似物。与DOX不同,DOX通过稳定拓扑异构酶II/可裂解DNA复合物来刺激双链DNA断裂,而AD 288是拓扑异构酶II的催化抑制剂,能够阻止拓扑异构酶II对DNA的活性。抑制动质体DNA连接网络的拓扑异构酶II催化解连环所需的AD 288浓度与DOX相当。然而,AD 288不会稳定可裂解复合物的形成,也不会刺激拓扑异构酶II介导的DNA裂解。此外,AD 288以浓度依赖的方式抑制依托泊苷诱导的可裂解复合物的形成。通过降低拓扑异构酶II活性而对DOX、替尼泊苷或3'-羟基-3'-脱氨基阿霉素产生耐药性的人CCRF-CEM细胞和鼠J774.2细胞对AD 288仍敏感。这些研究表明,AD 288通过阻止拓扑异构酶II与DNA的初始非共价结合来抑制拓扑异构酶II活性。由于AD 288是一种有效的DNA嵌入剂,通过阻止酶进入DNA结合位点来实现催化抑制。这些结果还表明,DOX氨基糖上的特定取代可以改变拓扑异构酶II抑制的机制。

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