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一种用于检测人端粒酶蛋白与人端粒酶RNA相互作用的高通量检测方法。

A high-throughput assay for a human telomerase protein-human telomerase RNA interaction.

作者信息

Keppler Brian R, Jarstfer Michael B

机构信息

Division of Medicinal Chemistry and Natural Products, School of Pharmacy, University of North Carolina, Chapel Hill, 27599, USA.

出版信息

Anal Biochem. 2006 Jun 1;353(1):75-82. doi: 10.1016/j.ab.2006.03.027. Epub 2006 Apr 4.

DOI:10.1016/j.ab.2006.03.027
PMID:16620757
Abstract

The rapid rate at which cancer cells divide necessitates a mechanism for telomere maintenance, and in approximately 90% of all cancer types the enzyme telomerase is used to maintain the length of telomeric DNA. Telomerase is a multi-subunit enzyme that minimally contains a catalytic protein subunit, hTERT, and an RNA subunit, hTR. Proper assembly of telomerase is critical for its enzymatic activity and therefore is a requirement for the proliferation of most cancer cells. We have developed the first high-throughput screen capable of identifying small molecules that specifically perturb human telomerase assemblage. The screen uses a scintillation proximity assay to identify compounds that prevent a specific and required interaction between hTR and hTERT. Rather than attempting to disrupt all of the individual hTR-hTERT interactions, we focused the screen on the interaction of the CR4-CR5 domain of hTR with hTERT. The screen employs a biotin-labeled derivative of the CR4-CR5 domain of hTR that independently binds [(35)S]hTERT in a functionally relevant manner. The complex between hTERT and biotin-labeled RNA can be captured on streptavidin-coated scintillation proximity beads. Use of 96-well filter plates and a vacuum manifold enables rapid purification of the beads. After optimization, statistical evaluation of the screen generated a Z' factor of 0.6, demonstrating the high precision of the assay.

摘要

癌细胞快速分裂的速率使得端粒维持机制成为必需,并且在大约90%的所有癌症类型中,端粒酶被用于维持端粒DNA的长度。端粒酶是一种多亚基酶,至少包含一个催化蛋白亚基hTERT和一个RNA亚基hTR。端粒酶的正确组装对其酶活性至关重要,因此是大多数癌细胞增殖的必要条件。我们开发了首个能够识别特异性干扰人端粒酶组装的小分子的高通量筛选方法。该筛选方法使用闪烁邻近分析来识别阻止hTR和hTERT之间特定且必要相互作用的化合物。我们没有试图破坏所有单个的hTR-hTERT相互作用,而是将筛选重点放在hTR的CR4-CR5结构域与hTERT的相互作用上。该筛选方法采用hTR的CR4-CR5结构域的生物素标记衍生物,其以功能相关的方式独立结合[(35)S]hTERT。hTERT与生物素标记RNA之间的复合物可以被捕获在链霉亲和素包被的闪烁邻近珠上。使用96孔滤板和真空歧管能够快速纯化珠子。经过优化后,该筛选方法的统计学评估产生了0.6的Z'因子,证明了该分析方法的高精度。

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引用本文的文献

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New prospects for targeting telomerase beyond the telomere.超越端粒靶向端粒酶的新前景。
Nat Rev Cancer. 2016 Aug;16(8):508-24. doi: 10.1038/nrc.2016.55. Epub 2016 Jun 24.
2
Reversible site-specific tagging of enzymatically synthesized RNAs using aldehyde-hydrazine chemistry and protease-cleavable linkers.利用醛肼化学和蛋白酶可裂解连接子对酶促合成的RNA进行可逆位点特异性标记。
Nucleic Acids Res. 2007;35(4):e25. doi: 10.1093/nar/gkl1110. Epub 2007 Jan 26.