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增强体内线粒体功能可挽救 pRb 缺陷引起的 MDS 样贫血。

Enhancing mitochondrial function in vivo rescues MDS-like anemia induced by pRb deficiency.

机构信息

Division of Molecular Medicine and Gene Therapy, Lund Stem Cell Center, Lund University, Lund, Sweden.

Department of Clinical Sciences Lund, Pediatrics, Lund University, Skane University Hospital Lund, Lund, Sweden.

出版信息

Exp Hematol. 2020 Aug;88:28-41. doi: 10.1016/j.exphem.2020.06.006. Epub 2020 Jul 3.

Abstract

Erythropoiesis is intimately coupled to cell division, and deletion of the cell cycle regulator retinoblastoma protein (pRb) causes anemia in mice. Erythroid-specific deletion of pRb has been found to result in inefficient erythropoiesis because of deregulated coordination of cell cycle exit and mitochondrial biogenesis. However, the pathophysiology remains to be fully described, and further characterization of the link between cell cycle regulation and mitochondrial function is needed. To this end we further assessed conditional erythroid-specific deletion of pRb. This resulted in macrocytic anemia, despite elevated levels of erythropoietin (Epo), and an accumulation of erythroid progenitors in the bone marrow, a phenotype strongly resembling refractory anemia associated with myelodysplastic syndromes (MDS). Using high-fractionation fluorescence-activated cell sorting analysis for improved phenotypic characterization, we illustrate that erythroid differentiation was disrupted at the orthochromatic stage. Transcriptional profiling of sequential purified populations revealed failure to upregulate genes critical for mitochondrial function such as Pgc1β, Alas2, and Abcb7 specifically at the block, together with disturbed heme production and iron transport. Notably, deregulated ABCB7 causes ring sideroblastic anemia in MDS patients, and the mitochondrial co-activator PGC1β is heterozygously lost in del5q MDS. Importantly, the anemia could be rescued through enhanced PPAR signaling in vivo via either overexpression of Pgc1β or bezafibrate administration. In conclusion, lack of pRb results in MDS-like anemia with disrupted differentiation and impaired mitochondrial function at the orthochromatic erythroblast stage. Our findings reveal for the first time a role for pRb in heme and iron regulation, and indicate that pRb-induced anemia can be rescued in vivo through therapeutic enhancement of PPAR signaling.

摘要

红细胞生成与细胞分裂密切相关,细胞周期调节因子视网膜母细胞瘤蛋白(pRb)的缺失会导致小鼠贫血。研究发现,红细胞特异性缺失 pRb 会导致红细胞生成效率低下,这是由于细胞周期退出和线粒体生物发生的协调失调。然而,其病理生理学仍有待充分描述,需要进一步研究细胞周期调节与线粒体功能之间的联系。为此,我们进一步评估了条件性红细胞特异性缺失 pRb。这导致巨细胞性贫血,尽管促红细胞生成素(Epo)水平升高,并且骨髓中红细胞祖细胞积累,这种表型与骨髓增生异常综合征(MDS)相关的难治性贫血非常相似。我们使用高分离荧光激活细胞分选分析进行改进的表型特征描述,说明红细胞分化在正染期受到干扰。对连续纯化的群体进行转录谱分析表明,基因表达关键基因(如 Pgc1β、Alas2 和 Abcb7)在特定阶段无法上调,同时血红素生成和铁转运受到干扰。值得注意的是,ABCB7 的失调会导致 MDS 患者出现环形铁幼粒细胞性贫血,而 MDS 患者中 PGC1β 的线粒体共激活因子存在杂合丢失。重要的是,通过体内增强过氧化物酶体增殖物激活受体(PPAR)信号,可以通过过表达 Pgc1β 或贝扎贝特给药来挽救贫血。总之,pRb 的缺失会导致 MDS 样贫血,在正染期红细胞分化和线粒体功能受损。我们的研究结果首次揭示了 pRb 在血红素和铁调节中的作用,并表明通过治疗性增强 PPAR 信号可以在体内挽救 pRb 诱导的贫血。

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