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一种生产人端粒酶逆转录酶(hTERT)的新方法助力人类端粒酶组装抑制剂的鉴定。

Identification of human telomerase assembly inhibitors enabled by a novel method to produce hTERT.

作者信息

Kellermann Guillaume, Kaiser Markus, Dingli Florent, Lahuna Olivier, Naud-Martin Delphine, Mahuteau-Betzer Florence, Loew Damarys, Ségal-Bendirdjian Evelyne, Teulade-Fichou Marie-Paule, Bombard Sophie

机构信息

INSERM UMR-S 1007, Cellular Homeostasis and Cancer, Paris, France Université Paris Descartes, Paris Sorbonne Cité, Paris, France

Institut Curie, CMIB, CNRS UMR 9187- INSERM U1196, Orsay, France.

出版信息

Nucleic Acids Res. 2015 Sep 3;43(15):e99. doi: 10.1093/nar/gkv425. Epub 2015 May 9.

Abstract

Telomerase is the enzyme that maintains the length of telomeres. It is minimally constituted of two components: a core reverse transcriptase protein (hTERT) and an RNA (hTR). Despite its significance as an almost universal cancer target, the understanding of the structure of telomerase and the optimization of specific inhibitors have been hampered by the limited amount of enzyme available. Here, we present a breakthrough method to produce unprecedented amounts of recombinant hTERT and to reconstitute human telomerase with purified components. This system provides a decisive tool to identify regulators of the assembly of this ribonucleoprotein complex. It also enables the large-scale screening of small-molecules capable to interfere with telomerase assembly. Indeed, it has allowed us to identify a compound that inhibits telomerase activity when added prior to the assembly of the enzyme, while it has no effect on an already assembled telomerase. Therefore, the novel system presented here may accelerate the understanding of human telomerase assembly and facilitate the discovery of potent and mechanistically unique inhibitors.

摘要

端粒酶是一种维持端粒长度的酶。它最少由两个成分组成:一种核心逆转录酶蛋白(hTERT)和一种RNA(hTR)。尽管它作为一个几乎通用的癌症靶点具有重要意义,但由于可获得的酶量有限,对端粒酶结构的理解以及特异性抑制剂的优化一直受到阻碍。在此,我们提出了一种突破性方法,可产生前所未有的大量重组hTERT,并使用纯化的成分重构人端粒酶。该系统为鉴定这种核糖核蛋白复合物组装的调节因子提供了一个决定性工具。它还能够大规模筛选能够干扰端粒酶组装的小分子。实际上,它使我们能够鉴定出一种化合物,该化合物在酶组装之前添加时可抑制端粒酶活性,而对已经组装好的端粒酶没有影响。因此,这里介绍的新系统可能会加速对人端粒酶组装的理解,并有助于发现强效且机制独特的抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8b3/4551907/5da6a6d4f626/gkv425fig1.jpg

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