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造血干细胞对 Acd 庇护基因失活非常敏感。

Hematopoietic stem cells are acutely sensitive to Acd shelterin gene inactivation.

出版信息

J Clin Invest. 2014 Jan;124(1):353-66. doi: 10.1172/JCI67871. Epub 2013 Dec 9.

Abstract

The shelterin complex plays dual functions in telomere homeostasis by recruiting telomerase and preventing the activation of a DNA damage response at telomeric ends. Somatic stem cells require telomerase activity, as evidenced by progressive stem cell loss leading to bone marrow failure in hereditary dyskeratosis congenita. Recent work demonstrates that dyskeratosis congenita can also arise from mutations in specific shelterin genes, although little is known about shelterin functions in somatic stem cells. We found that mouse hematopoietic stem cells (HSCs) are acutely sensitive to inactivation of the shelterin gene Acd, encoding TPP1. Homozygosity for a hypomorphic acd allele preserved the emergence and expansion of fetal HSCs but led to profoundly defective function in transplantation assays. Upon complete Acd inactivation, HSCs expressed p53 target genes, underwent cell cycle arrest, and were severely depleted within days, leading to hematopoietic failure. TPP1 loss induced increased telomeric fusion events in bone marrow progenitors. However, unlike in epidermal stem cells, p53 deficiency did not rescue TPP1-deficient HSCs, indicating that shelterin dysfunction has unique effects in different stem cell populations. Because the consequences of telomere shortening are progressive and unsynchronized, acute loss of shelterin function represents an attractive alternative for studying telomere crisis in hematopoietic progenitors.

摘要

庇护复合物通过招募端粒酶和防止端粒末端的 DNA 损伤反应激活,在端粒稳态中发挥双重功能。体细胞干细胞需要端粒酶活性,这一点可以从遗传性角化不良性先天性骨髓衰竭导致的进行性干细胞丧失中得到证明。最近的研究工作表明,角化不良性先天性也可能是由特定庇护复合物基因的突变引起的,尽管对庇护复合物在体细胞干细胞中的功能知之甚少。我们发现,小鼠造血干细胞(HSCs)对庇护复合物基因 Acd(编码 TPP1)的失活非常敏感。acd 纯合子等位基因的杂合性保留了胎儿 HSCs 的出现和扩增,但导致移植实验中功能严重缺陷。当 Acd 完全失活时,HSCs 表达 p53 靶基因,发生细胞周期停滞,并在数天内严重耗竭,导致造血衰竭。TPP1 缺失诱导骨髓祖细胞中更多的端粒融合事件。然而,与表皮干细胞不同,p53 缺陷不能挽救 TPP1 缺陷的 HSCs,表明庇护复合物功能障碍对不同的干细胞群体具有独特的影响。由于端粒缩短的后果是渐进的和不同步的,庇护复合物功能的急性丧失代表了研究造血祖细胞中端粒危机的一种有吸引力的替代方法。

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