Pawlikowska Patrycja, Fouchet Pierre, Vainchenker William, Rosselli Filippo, Naim Valeria
Université Paris Sud, Orsay, France; Centre national de la recherche scientifique UMR 8200, Institut de Cancérologie Gustave Roussy, Villejuif, France; Equipe Labellisée par La Ligue Contre le Cancer; Institut de Cancérologie Gustave Roussy, Villejuif, France;
Université Paris Sud, Orsay, France; Commissariat à l'énergie atomique et aux énergies alternatives, Institut de radiobiologie cellulaire et moléculaire, Laboratoire de recherche sur la réparation et la transcription dans les cellules souches, Fontenay-aux-Roses, France; Institut national de la santé et de la recherche médicale U967, Université Paris Diderot, Fontenay-aux-Roses, France; and.
Blood. 2014 Dec 4;124(24):3613-23. doi: 10.1182/blood-2014-01-551457. Epub 2014 Sep 26.
Fanconi anemia (FA) is an inherited chromosomal instability syndrome that is characterized by progressive bone marrow failure. One of the main causes of morbidity and mortality in FA is a bleeding tendency, resulting from low platelet counts. Platelets are the final products of megakaryocyte (MK) maturation. Here, we describe a previously unappreciated role of Fanconi anemia group A protein (Fanca) during the endomitotic process of MK differentiation. Fanca deficiency leads to the accumulation of MKs with low nuclear ploidy and to decreased platelet production. We show, for the first time, that Fanca(-/-) mice are characterized by limited number and proliferative capacity of MK progenitors. Defective megakaryopoiesis of Fanca(-/-) cells is associated with the formation of nucleoplasmic bridges and increased chromosomal instability, indicating that inaccurate endoreplication and karyokinesis occur during MK polyploidization. Sustained DNA damage forces Fanca(-/-) MKs to enter a senescence-like state. Furthermore, inhibition of the Rho-associated kinase, a regulator of cytokinesis, improves the polyploidization of Fanca(-/-) MKs but greatly increases their genomic instability and diminishes their differentiation potential, supporting the notion that accumulation of DNA damage through endomitotic cycles affects MK maturation. Our study indicates that Fanca expression during endomitosis is crucial for normal megakaryopoiesis and platelet production.
范可尼贫血(FA)是一种遗传性染色体不稳定综合征,其特征为进行性骨髓衰竭。FA发病和死亡的主要原因之一是血小板计数低导致的出血倾向。血小板是巨核细胞(MK)成熟的终末产物。在此,我们描述了范可尼贫血A组蛋白(Fanca)在MK分化的核内有丝分裂过程中一个以前未被认识到的作用。Fanca缺陷导致低核倍性的MK积累,并导致血小板生成减少。我们首次表明,Fanca(-/-)小鼠的特征是MK祖细胞数量有限且增殖能力受限。Fanca(-/-)细胞的巨核细胞生成缺陷与核质桥的形成和染色体不稳定增加有关,表明在MK多倍体化过程中发生了不准确的核内复制和核分裂。持续的DNA损伤迫使Fanca(-/-)MK进入类似衰老的状态。此外,抑制细胞分裂的调节因子Rho相关激酶可改善Fanca(-/-)MK的多倍体化,但会大大增加其基因组不稳定性并降低其分化潜能,支持通过核内有丝分裂周期积累DNA损伤会影响MK成熟这一观点。我们的研究表明,核内有丝分裂期间Fanca的表达对于正常的巨核细胞生成和血小板产生至关重要。