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人类端粒保护蛋白1(POT1)可破坏端粒G-四链体结构,从而在体外使端粒酶得以延伸。

Human POT1 disrupts telomeric G-quadruplexes allowing telomerase extension in vitro.

作者信息

Zaug Arthur J, Podell Elaine R, Cech Thomas R

机构信息

Howard Hughes Medical Institute and Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309-0215, USA.

出版信息

Proc Natl Acad Sci U S A. 2005 Aug 2;102(31):10864-9. doi: 10.1073/pnas.0504744102. Epub 2005 Jul 25.

Abstract

The POT1 (protection of telomeres 1) protein binds the ssDNA overhangs at the ends of chromosomes in diverse eukaryotes. POT1 is essential for chromosome end-protection, as best demonstrated in fission yeast. In human cells, hPOT1 is also involved in telomere-length regulation. We now show that telomeric oligonucleotides, such as d[GGG(TTAGGG)(3)], which form intramolecular G-quadruplexes through Hoogsteen base-pairing, serve as only marginal primers for extension by recombinant human telomerase; telomerase stalls after every nucleotide addition. Addition of hPOT1 to the reaction restores the normal processive elongation pattern seen with primers that cannot form G-quadruplexes. hPOT1 does not act catalytically but, instead, forms a stoichiometric complex with the DNA, freeing its 3' tail. An antisense oligonucleotide, which base-pairs near the 5' end of the telomeric sequence, leaving a telomerase-extendable 3' tail, duplicates the effect of hPOT1 on activation of G-quadruplex primers. Thus, hPOT1 may function simply by trapping the unfolded forms of these telomeric primers in an equilibrium population. We propose an additional role for hPOT1 in telomere maintenance: disrupting G-quadruplex structures in telomeric DNA, thereby allowing proper elongation by telomerase.

摘要

端粒保护蛋白1(POT1)可与多种真核生物染色体末端的单链DNA突出端相结合。POT1对染色体末端保护至关重要,这在裂殖酵母中得到了最好的证明。在人类细胞中,hPOT1也参与端粒长度的调控。我们现在发现,诸如d[GGG(TTAGGG)(3)]之类的端粒寡核苷酸通过Hoogsteen碱基配对形成分子内G-四链体,作为重组人端粒酶延伸的边缘引物;端粒酶在每次添加核苷酸后都会停顿。向反应中添加hPOT1可恢复使用不能形成G-四链体的引物时所观察到的正常连续延伸模式。hPOT1不具有催化作用,而是与DNA形成化学计量复合物,释放其3'末端。一种反义寡核苷酸,其在端粒序列5'末端附近进行碱基配对,留下可被端粒酶延伸的3'末端,可复制hPOT1对G-四链体引物激活的作用。因此,hPOT1可能仅通过在平衡群体中捕获这些端粒引物的未折叠形式来发挥作用。我们提出hPOT1在端粒维持中的另一个作用:破坏端粒DNA中的G-四链体结构,从而允许端粒酶进行适当的延伸。

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本文引用的文献

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Switching human telomerase on and off with hPOT1 protein in vitro.
J Biol Chem. 2005 May 27;280(21):20449-56. doi: 10.1074/jbc.M502212200. Epub 2005 Mar 24.
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Structure of human POT1 bound to telomeric single-stranded DNA provides a model for chromosome end-protection.
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