Romi Erez, Baran Nava, Gantman Marina, Shmoish Michael, Min Bosun, Collins Kathleen, Manor Haim
Department of Biology, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Proc Natl Acad Sci U S A. 2007 May 22;104(21):8791-6. doi: 10.1073/pnas.0703157104. Epub 2007 May 9.
Telomerase is a cellular reverse transcriptase, which utilizes an integral RNA template to extend single-stranded telomeric DNA. We used site-specific photocrosslinking to map interactions between DNA primers and the catalytic protein subunit (tTERT) of Tetrahymena thermophila telomerase in functional enzyme complexes. Our assays reveal contact of the single-stranded DNA adjacent to the primer-template hybrid and tTERT residue W187 at the periphery of the N-terminal domain. This contact was detected in complexes with three different registers of template in the active site, suggesting that it is maintained throughout synthesis of a complete telomeric repeat. Substitution of nearby residue Q168, but not W187, alters the K(m) for primer elongation, implying that it plays a role in the DNA recognition. These findings are the first to directly demonstrate the physical location of TERT-DNA contacts in catalytically active telomerase and to identify amino acid determinants of DNA binding affinity. Our data also suggest a movement of the TERT active site relative to the template-adjacent single-stranded DNA binding site within a cycle of repeat synthesis.
端粒酶是一种细胞逆转录酶,它利用一个整合的RNA模板来延伸单链端粒DNA。我们使用位点特异性光交联技术来绘制功能性酶复合物中DNA引物与嗜热四膜虫端粒酶催化蛋白亚基(tTERT)之间的相互作用。我们的实验揭示了与引物-模板杂交体相邻的单链DNA与N端结构域周边的tTERT残基W187之间的接触。在活性位点中与三种不同模板序列的复合物中都检测到了这种接触,这表明在完整端粒重复序列的合成过程中这种接触一直保持。附近残基Q168的取代而非W187的取代改变了引物延伸的K(m),这意味着它在DNA识别中起作用。这些发现首次直接证明了催化活性端粒酶中TERT-DNA接触的物理位置,并确定了DNA结合亲和力的氨基酸决定因素。我们的数据还表明,在重复合成周期内,TERT活性位点相对于模板相邻的单链DNA结合位点发生了移动。