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The accumulation and not the specific activity of telomerase ribonucleoprotein determines telomere maintenance deficiency in X-linked dyskeratosis congenita

机译:端粒酶核糖核酸蛋白的积累而非特异活性决定了X连锁性角化病先天性端粒的维持缺乏

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摘要

X-linked dyskeratosis congenita (X-DC) is caused by mutations in the housekeeping nucleolar protein dyskerin. Amino acid changes associated with X-DC are remarkably heterogeneous. Peripheral mononuclear blood cells and fibroblasts isolated from X-DC patients harbor lower steady-state telomerase RNA (TER) levels and shorter telomeres than healthy age-matched controls. Previously, we showed that retroviral expression of recombinant TER, together with expression of recombinant telomerase reverse transcriptase, restored telomere maintenance and proliferative capacity in X-DC patient cells. Using rare X-DC isoforms (▵L37 and A386T dyskerin), we showed that telomere maintenance defects observed in X-DC are solely due to decreased steady-state levels of TER. Disease-associated reductions in steady-state TER levels cause deficiencies in telomere maintenance. Here, we confirm these findings in other primary X-DC patient cell lines coding for the most common (A353V dyskerin) and more clinically severe (K314R and A353V dyskerin) X-DC isoforms. Using cell lines derived from these patients, we also examined the steady-state levels of other hinge-ACA motif RNAs and did not find differences in their in vivo accumulations. We show, for the first time, that purified telomerase holoenzyme complexes from different X-DC cells have normal catalytic activity. Our data confirm that dyskerin promotes TER stability in vivo, endorsing the development of TER supplementation strategies for the treatment of X-DC.
机译:X连锁性角化不全先天性(X-DC)是由管家核仁蛋白dyskerin中的突变引起的。与X-DC相关的氨基酸变化非常不均一。与健康的年龄匹配对照组相比,从X-DC患者中分离出的外周血单个核细胞和成纤维细胞具有较低的稳态端粒酶RNA(TER)水平和较短的端粒。以前,我们显示了重组TER的逆转录病毒表达,以及重组端粒酶逆转录酶的表达,在X-DC患者细胞中恢复了端粒的维持和增殖能力。使用罕见的X-DC同工型(▵L37和A386T dyskerin),我们发现X-DC中观察到的端粒维持缺陷完全是由于TER的稳态水平降低所致。与疾病相关的稳态TER水平降低导致端粒维持不足。在这里,我们在编码最常见(A353V dyskerin)和临床上较严重(K314R和A353V dyskerin)X-DC亚型的其他主要X-DC患者细胞系中证实了这些发现。使用源自这些患者的细胞系,我们还检查了其他铰链-ACA基序RNA的稳态水平,未发现它们体内积累的差异。我们首次显示,来自不同X-DC细胞的端粒酶全酶复合物具有正常的催化活性。我们的数据证实,dyskerin可以促进TER在体内的稳定性,支持TER补充策略的发展,以治疗X-DC。

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