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罗思蒙德-汤姆森综合征解旋酶RECQL4对造血作用至关重要。

The Rothmund-Thomson syndrome helicase RECQL4 is essential for hematopoiesis.

作者信息

Smeets Monique F, DeLuca Elisabetta, Wall Meaghan, Quach Julie M, Chalk Alistair M, Deans Andrew J, Heierhorst Jörg, Purton Louise E, Izon David J, Walkley Carl R

出版信息

J Clin Invest. 2014 Aug;124(8):3551-65. doi: 10.1172/JCI75334. Epub 2014 Jun 24.

DOI:10.1172/JCI75334
PMID:24960165
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4109528/
Abstract

Mutations within the gene encoding the DNA helicase RECQL4 underlie the autosomal recessive cancer-predisposition disorder Rothmund-Thomson syndrome, though it is unclear how these mutations lead to disease. Here, we demonstrated that somatic deletion of Recql4 causes a rapid bone marrow failure in mice that involves cells from across the myeloid, lymphoid, and, most profoundly, erythroid lineages. Apoptosis was markedly elevated in multipotent progenitors lacking RECQL4 compared with WT cells. While the stem cell compartment was relatively spared in RECQL4-deficent mice, HSCs from these animals were not transplantable and even selected against. The requirement for RECQL4 was intrinsic in hematopoietic cells, and loss of RECQL4 in these cells was associated with increased replicative DNA damage and failed cell-cycle progression. Concurrent deletion of p53, which rescues loss of function in animals lacking the related helicase BLM, did not rescue BM phenotypes in RECQL4-deficient animals. In contrast, hematopoietic defects in cells from Recql4Δ/Δ mice were fully rescued by a RECQL4 variant without RecQ helicase activity, demonstrating that RECQL4 maintains hematopoiesis independently of helicase activity. Together, our data indicate that RECQL4 participates in DNA replication rather than genome stability and identify RECQL4 as a regulator of hematopoiesis with a nonredundant role compared with other RecQ helicases.

摘要

编码DNA解旋酶RECQL4的基因发生突变是常染色体隐性遗传性癌症易感疾病罗思蒙德-汤姆森综合征的病因,不过目前尚不清楚这些突变是如何导致疾病的。在此,我们证明了Recql4的体细胞缺失会导致小鼠迅速出现骨髓衰竭,涉及髓系、淋巴系细胞,尤其是红细胞系细胞。与野生型细胞相比,缺乏RECQL4的多能祖细胞中的细胞凋亡明显增加。虽然在RECQL4缺陷小鼠中干细胞区室相对未受影响,但这些动物的造血干细胞无法移植,甚至会被淘汰。造血细胞对RECQL4的需求是内在的,这些细胞中RECQL4的缺失与复制性DNA损伤增加和细胞周期进程受阻有关。同时缺失p53可挽救缺乏相关解旋酶BLM的动物的功能丧失,但不能挽救RECQL4缺陷动物的骨髓表型。相比之下,Recql4Δ/Δ小鼠细胞中的造血缺陷可被一种没有RecQ解旋酶活性的RECQL4变体完全挽救,这表明RECQL4独立于解旋酶活性维持造血功能。总之,我们的数据表明RECQL4参与DNA复制而非基因组稳定性,并将RECQL4确定为造血的调节因子,与其他RecQ解旋酶相比具有非冗余作用。

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