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A single mutation in the 729 residue modulates human DNA topoisomerase IB DNA binding and drug resistance

机译:729个残基中的单个突变调节人DNA拓扑异构酶IB DNA结合和耐药性

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摘要

Human DNA topoisomerase I (hTop1p) catalyzes the relaxation of supercoiled DNA and constitutes the cellular target of the antitumor drug camptothecin (CPT). The X-ray crystal structure of the enzyme covalently joined to DNA and bound to the CPT analog Topotecan suggests that there are two classes of mutations that can produce a CPT-resistant enzyme. The first class includes changes in residues that directly interact with the drug, whereas a second class alters interactions with the DNA and thereby destabilizes the drug binding site. The Thr729Ala, that is part of a hydrophobic pocket in the enzyme C-terminal domain, belongs to a third group of mutations that confer CPT resistance, but do not interact directly with the drug or the DNA. To understand the contribution of this residue in drug resistance, we have studied the effect on hTop1p catalysis and CPT sensitivity of four different substitutions in the Thr729 position (Thr729Ala, Thr729Glu, Thr729Lys and Thr729Pro). Tht729Glu and Thr729Lys mutants show severe CPT resistance and furthermore, Thr729Glu shows a remarkable defect in DNA binding. We postulate that the maintenance of the hydrophobic pocket integrity, where Thr729 is positioned, is crucial for drug sensitivity and DNA binding.
机译:人类DNA拓扑异构酶I(hTop1p)催化超螺旋DNA的松弛,并构成抗肿瘤药物喜树碱(CPT)的细胞靶标。该酶的X射线晶体结构与DNA共价结合并与CPT类似物Topotecan结合,表明存在两类可产生CPT抗性酶的突变。第一类包括与药物直接相互作用的残基的变化,而第二类包括与DNA的相互作用,从而使药物结合位点不稳定。 Thr729Ala是酶C端结构域中疏水口袋的一部分,属于赋予CPT抗性但不直接与药物或DNA相互作用的第三组突变。为了了解此残基在耐药性中的作用,我们研究了Thr729位置(Thr729Ala,Thr729Glu,Thr729Lys和Thr729Pro)四个不同取代对hTop1p催化和CPT敏感性的影响。 Tht729Glu和Thr729Lys突变体显示出严重的CPT抗性,此外,Thr729Glu显示出DNA结合方面的显着缺陷。我们推测,Thr729所在的疏水口袋完整性的维持对于药物敏感性和DNA结合至关重要。

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