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端粒相关蛋白的表达相互依赖以稳定天然端粒结构,并且G-四链体配体导致的端粒功能障碍会引起端粒重复RNA(TERRA)上调。

Expression of Telomere-Associated Proteins is Interdependent to Stabilize Native Telomere Structure and Telomere Dysfunction by G-Quadruplex Ligand Causes TERRA Upregulation.

作者信息

Sadhukhan Ratan, Chowdhury Priyanka, Ghosh Sourav, Ghosh Utpal

机构信息

Department of Biochemistry & Biophysics, University of Kalyani, Kalyani, 741235, India.

出版信息

Cell Biochem Biophys. 2018 Jun;76(1-2):311-319. doi: 10.1007/s12013-017-0835-0. Epub 2017 Nov 13.

Abstract

Telomere DNA can form specialized nucleoprotein structure with telomere-associated proteins to hide free DNA ends or G-quadruplex structures under certain conditions especially in presence of G-quadruplex ligand. Telomere DNA is transcribed to form non-coding telomere repeat-containing RNA (TERRA) whose biogenesis and function is poorly understood. Our aim was to find the role of telomere-associated proteins and telomere structures in TERRA transcription. We silenced four [two shelterin (TRF1, TRF2) and two non-shelterin (PARP-1, SLX4)] telomere-associated genes using siRNA and verified depletion in protein level. Knocking down of one gene modulated expression of other telomere-associated genes and increased TERRA from 10q, 15q, XpYp and XqYq chromosomes in A549 cells. Telomere was destabilized or damaged by G-quadruplex ligand pyridostatin (PDS) and bleomycin. Telomere dysfunction-induced foci (TIFs) were observed for each case of depletion of proteins, treatment with PDS or bleomycin. TERRA level was elevated by PDS and bleomycin treatment alone or in combination with depletion of telomere-associated proteins.

摘要

端粒DNA可与端粒相关蛋白形成特殊的核蛋白结构,以隐藏游离的DNA末端或在某些条件下尤其是存在G-四链体配体时形成G-四链体结构。端粒DNA转录形成含非编码端粒重复序列的RNA(TERRA),但其生物发生和功能尚不清楚。我们的目的是探究端粒相关蛋白和端粒结构在TERRA转录中的作用。我们使用小干扰RNA(siRNA)沉默了四个(两个端粒保护蛋白复合体成员,即TRF1、TRF2;两个非端粒保护蛋白复合体成员,即PARP-1、SLX4)端粒相关基因,并在蛋白质水平验证了基因敲减效果。敲低一个基因可调节其他端粒相关基因的表达,并增加A549细胞中10号染色体长臂、15号染色体长臂、X染色体短臂和Y染色体短臂以及X染色体长臂和Y染色体长臂上的TERRA水平。端粒被G-四链体配体吡啶司他汀(PDS)和博来霉素破坏或损伤。在每种蛋白质敲减、PDS处理或博来霉素处理的情况下,均观察到端粒功能障碍诱导灶(TIFs)。单独使用PDS和博来霉素处理或与端粒相关蛋白敲减联合处理均可提高TERRA水平。

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