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Rescue of an hTERT mutant defective in telomere elongation by fusion with hPot1.通过与hPot1融合挽救端粒延长缺陷的hTERT突变体。
Mol Cell Biol. 2004 Apr;24(8):3552-61. doi: 10.1128/MCB.24.8.3552-3561.2004.
2
Putative telomere-recruiting domain in the catalytic subunit of human telomerase.人类端粒酶催化亚基中假定的端粒招募结构域。
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Human POT1 disrupts telomeric G-quadruplexes allowing telomerase extension in vitro.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。
Proc Natl Acad Sci U S A. 2005 Aug 2;102(31):10864-9. doi: 10.1073/pnas.0504744102. Epub 2005 Jul 25.
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Human POT1 facilitates telomere elongation by telomerase.人类端粒保护蛋白1(POT1)通过端粒酶促进端粒延长。
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Multiple hPOT1-TPP1 cooperatively unfold contiguous telomeric G-quadruplexes proceeding from 3' toward 5', a feature due to a 3'-end binding preference and to structuring of telomeric DNA.多个 hPOT1-TPP1 协同从 3' 端向 5' 端展开连续的端粒 G-四链体,这一特征归因于 3' 端结合偏好和端粒 DNA 的结构。
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Construction of the POT1 promoter report gene vector, and the effect and underlying mechanism of the POT1 promoter in regulating telomerase and telomere length.POT1启动子报告基因载体的构建以及POT1启动子在调节端粒酶和端粒长度方面的作用及潜在机制。
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Structural and functional analysis of the human POT1-TPP1 telomeric complex.人类 POT1-TPP1 端粒复合物的结构与功能分析。
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Endogenous Telomerase Reverse Transcriptase N-Terminal Tagging Affects Human Telomerase Function at Telomeres In Vivo.内源性端粒酶逆转录酶N端标记影响体内端粒处的人类端粒酶功能。
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ATM and ATR Signaling Regulate the Recruitment of Human Telomerase to Telomeres.ATM和ATR信号通路调控人端粒酶向端粒的募集。
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Human telomerase: biogenesis, trafficking, recruitment, and activation.人类端粒酶:生物发生、转运、募集及激活
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Identification of human TERT elements necessary for telomerase recruitment to telomeres.确定端粒酶募集至端粒所需的人类端粒酶逆转录酶元件。
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本文引用的文献

1
Human telomerase reverse transcriptase motifs required for elongation of a telomeric substrate.端粒底物延伸所需的人类端粒酶逆转录酶基序。
J Biol Chem. 2003 Dec 26;278(52):52531-6. doi: 10.1074/jbc.M311359200. Epub 2003 Oct 17.
2
Human POT1 facilitates telomere elongation by telomerase.人类端粒保护蛋白1(POT1)通过端粒酶促进端粒延长。
Curr Biol. 2003 May 27;13(11):942-6. doi: 10.1016/s0960-9822(03)00339-7.
3
POT1 as a terminal transducer of TRF1 telomere length control.POT1作为TRF1端粒长度控制的终端转导分子。
Nature. 2003 Jun 26;423(6943):1013-8. doi: 10.1038/nature01688. Epub 2003 May 25.
4
Putative telomere-recruiting domain in the catalytic subunit of human telomerase.人类端粒酶催化亚基中假定的端粒招募结构域。
Mol Cell Biol. 2003 May;23(9):3237-46. doi: 10.1128/MCB.23.9.3237-3246.2003.
5
N-terminal domain of yeast telomerase reverse transcriptase: recruitment of Est3p to the telomerase complex.酵母端粒酶逆转录酶的N端结构域:Est3p募集至端粒酶复合体
Mol Biol Cell. 2003 Jan;14(1):1-13. doi: 10.1091/mbc.e02-06-0327.
6
Human Pot1 (protection of telomeres) protein: cytolocalization, gene structure, and alternative splicing.人类端粒保护蛋白1(Pot1):细胞定位、基因结构及可变剪接
Mol Cell Biol. 2002 Nov;22(22):8079-87. doi: 10.1128/MCB.22.22.8079-8087.2002.
7
Subnuclear shuttling of human telomerase induced by transformation and DNA damage.转化和DNA损伤诱导的人端粒酶亚核穿梭
Nat Cell Biol. 2002 Sep;4(9):731-6. doi: 10.1038/ncb846.
8
Est1p as a cell cycle-regulated activator of telomere-bound telomerase.Est1p作为端粒结合的端粒酶的细胞周期调控激活剂。
Science. 2002 Aug 9;297(5583):1023-6. doi: 10.1126/science.1074968.
9
C-terminal regions of the human telomerase catalytic subunit essential for in vivo enzyme activity.人端粒酶催化亚基的C末端区域对体内酶活性至关重要。
Mol Cell Biol. 2002 Sep;22(17):6234-46. doi: 10.1128/MCB.22.17.6234-6246.2002.
10
Conserved structure for single-stranded telomeric DNA recognition.单链端粒DNA识别的保守结构
Science. 2002 Apr 5;296(5565):145-7. doi: 10.1126/science.1068799.

通过与hPot1融合挽救端粒延长缺陷的hTERT突变体。

Rescue of an hTERT mutant defective in telomere elongation by fusion with hPot1.

作者信息

Armbruster Blaine N, Linardic Corinne M, Veldman Tim, Bansal Niharika P, Downie Diane L, Counter Christopher M

机构信息

Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Mol Cell Biol. 2004 Apr;24(8):3552-61. doi: 10.1128/MCB.24.8.3552-3561.2004.

DOI:10.1128/MCB.24.8.3552-3561.2004
PMID:15060173
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC381596/
Abstract

The protein hPot1 shares homology with telomere-binding proteins in lower eukaryotes and associates with single-stranded telomeric DNA in vitro as well as colocalizing with telomere-binding proteins in vivo. We now show that hPot1 is coimmunoprecipitated with telomeric DNA and that stable expression of this protein in telomerase-positive cells results in telomere elongation, supporting the idea that hPot1 is a bona fide mammalian telomere-binding protein. We previously found that mutations in the N-terminal DAT domain of the hTERT catalytic subunit of telomerase rendered the enzyme catalytically active but unable to elongate telomeres in vivo. This phenotype could be partially rescued by fusion with the double-stranded telomeric protein hTRF2. Given that hPot1 binds to single-stranded DNA in vitro (at the same site that hTERT binds to in vivo), we addressed whether fusion of hPot1 can rescue the DAT mutations more efficiently than that of hTRF2. We now report that a DAT mutant of hTERT is indeed efficiently rescued upon fusion to hPot1. However, this rescue depended on the ability of hPot1 to localize to telomeres rather than binding to DNA per se. These data support a model whereby the DAT domain of hTERT is implicated in telomere-telomerase associations.

摘要

蛋白质hPot1与低等真核生物中的端粒结合蛋白具有同源性,在体外与单链端粒DNA结合,在体内也与端粒结合蛋白共定位。我们现在表明,hPot1与端粒DNA共免疫沉淀,并且该蛋白在端粒酶阳性细胞中的稳定表达导致端粒延长,这支持了hPot1是真正的哺乳动物端粒结合蛋白的观点。我们之前发现,端粒酶hTERT催化亚基的N端DAT结构域中的突变使该酶具有催化活性,但在体内无法延长端粒。通过与双链端粒蛋白hTRF2融合可以部分挽救这种表型。鉴于hPot1在体外与单链DNA结合(与hTERT在体内结合的位点相同),我们研究了hPot1的融合是否比hTRF2更有效地挽救DAT突变。我们现在报告,hTERT的DAT突变体在与hPot1融合后确实得到了有效挽救。然而,这种挽救取决于hPot1定位于端粒的能力,而不是其本身与DNA的结合能力。这些数据支持了一种模型,即hTERT的DAT结构域与端粒-端粒酶相互作用有关。