Loss of Ten1 in mice induces telomere shortening and models human dyskeratosis congenita.

小鼠中 Ten1 的缺失会导致端粒缩短,并模拟人类先天性角化不良症

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作者:Sanz-Moreno Adrián, Becker Lore, Xie Kan, da Silva-Buttkus Patricia, Dragano Nathalia R V, Aguilar-Pimentel Antonio, Amarie Oana V, Calzada-Wack Julia, Kraiger Markus, Leuchtenberger Stefanie, Seisenberger Claudia, Marschall Susan, Rathkolb Birgit, Scifo Enzo, Liu Ting, Thanabalasingam Anoja, Sanchez-Vazquez Raul, Martinez Paula, Blasco Maria A, Savage Sharon A, Fuchs Helmut, Ehninger Dan, Gailus-Durner Valérie, de Angelis Martin Hrabê
Telomere length regulation is essential for genome stability as short telomeres can trigger cellular senescence and apoptosis constituting an integral aspect of biological aging. Telomere biology disorders (TBDs) such as dyskeratosis congenita (DC) are rare, inherited diseases with known mutations in at least 16 different genes encoding components of the telomere maintenance complexes. The precise role of TEN1, part of the CST complex (CTC1, STN1, and TEN1), and the consequences of its loss of function in vivo are not yet known. We investigated the first viable murine model of Ten1 deficiency created by CRISPR-Cas9-mediated exon 3 deletion. Ten1 homozygous knockout mice present with telomere attrition, short life span, skin hyperpigmentation, aplastic anemia, and cerebellar hypoplasia. Molecular analyses revealed a reduction of proliferating cells, increased apoptosis, and stem cell depletion with activation of the p53/p21 signaling pathway. Our data demonstrate that Ten1 deficiency causes telomere shortening and associates with accelerated aging.

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