Department of Pathology, Aarhus University Hospital, Aarhus C 8000, Denmark.
Sensors (Basel). 2014 Jan 10;14(1):1195-207. doi: 10.3390/s140101195.
Human topoisomerase I (hTopI) is an essential cellular enzyme. The enzyme is often upregulated in cancer cells, and it is a target for chemotherapeutic drugs of the camptothecin (CPT) family. Response to CPT-based treatment is dependent on hTopI activity, and reduction in activity, and mutations in hTopI have been reported to result in CPT resistance. Therefore, hTOPI gene copy number, mRNA level, protein amount, and enzyme activity have been studied to explain differences in cellular response to CPT. We show that Rolling Circle Enhanced Enzyme Activity Detection (REEAD), allowing measurement of hTopI cleavage-religation activity at the single molecule level, may be used to detect posttranslational enzymatic differences influencing CPT response. These differences cannot be detected by analysis of hTopI gene copy number, mRNA amount, or protein amount, and only become apparent upon measuring the activity of hTopI in the presence of CPT. Furthermore, we detected differences in the activity of the repair enzyme tyrosyl-DNA phosphodiesterase 1, which is involved in repair of hTopI-induced DNA damage. Since increased TDP1 activity can reduce cellular CPT sensitivity we suggest that a combined measurement of TDP1 activity and hTopI activity in presence of CPT will be the best determinant for CPT response.
人类拓扑异构酶 I(hTopI)是一种重要的细胞酶。该酶在癌细胞中常被上调,是喜树碱(CPT)家族化疗药物的靶点。对基于 CPT 的治疗的反应取决于 hTopI 的活性,并且已经报道 hTopI 活性的降低和突变导致 CPT 耐药。因此,已经研究了 hTOPI 基因拷贝数、mRNA 水平、蛋白量和酶活性,以解释细胞对 CPT 反应的差异。我们表明,滚环增强酶活性检测(REEAD)可用于检测影响 CPT 反应的翻译后酶差异,从而可以在单分子水平上测量 hTopI 的切割-连接活性。通过分析 hTopI 基因拷贝数、mRNA 量或蛋白量无法检测到这些差异,只有在存在 CPT 的情况下测量 hTopI 的活性时才会变得明显。此外,我们检测到修复酶酪氨酸-DNA 磷酸二酯酶 1 的活性差异,该酶参与修复 hTopI 诱导的 DNA 损伤。由于增加的 TDP1 活性会降低细胞 CPT 敏感性,因此我们建议在 CPT 存在下同时测量 TDP1 活性和 hTopI 活性将是 CPT 反应的最佳决定因素。