Department of Chemical Engineering and Delaware Biotechnology Institute, University of Delaware, Newark, DE 19711, USA.
Br J Haematol. 2011 Feb;152(4):469-84. doi: 10.1111/j.1365-2141.2010.08548.x. Epub 2011 Jan 12.
We propose that the aryl hydrocarbon receptor (AHR) is a novel transcriptional regulator of megakaryopoietic polyploidization. Functional evidence was obtained that AHR impacts in vivo megakaryocytic differentiation and maturation; compared to wild-type mice, AHR-null mice had lower platelet counts, fewer numbers of newly synthesized platelets, increased bleeding times and lower-ploidy megakaryocytes (Mks). AHR mRNA increased 3·6-fold during ex vivo megakaryocytic differentiation, but reduced or remained constant during parallel isogenic granulocytic or erythroid differentiation. We interrogated the role of AHR in megakaryopoiesis using a validated Mk model of megakaryopoiesis, the human megakaryoblastic leukaemia CHRF cell line. Upon CHRF Mk differentiation, AHR mRNA and protein levels increased, AHR protein shifted from the cytoplasm to the nucleus and AHR binding to its consensus DNA binding sequence increased. Protein and mRNA levels of the AHR transcriptional target HES1 also increased. Mk differentiation of CHRF cells where AHR or HES1 was knocked-down using RNAi resulted in lower ploidy distributions and cells that were incapable of reaching ploidy classes ≥16n. AHR knockdown also resulted in increased DNA synthesis of lower ploidy cells, without impacting apoptosis. Together, these data support a role for AHR in Mk polyploidization and in vivo platelet function, and warrant further detailed investigations.
我们提出芳香烃受体 (AHR) 是巨核细胞多倍体化的新型转录调节因子。获得的功能证据表明,AHR 影响体内巨核细胞分化和成熟;与野生型小鼠相比,AHR 缺失型小鼠的血小板计数较低,新合成的血小板数量较少,出血时间延长,低倍体巨核细胞 (Mks) 较多。AHR mRNA 在体外巨核细胞分化过程中增加了 3.6 倍,但在平行同种粒细胞或红细胞分化过程中减少或保持不变。我们使用经过验证的巨核细胞生成 Mk 模型,即人巨核母细胞白血病 CHRF 细胞系,研究了 AHR 在巨核细胞生成中的作用。在 CHRF Mk 分化过程中,AHR mRNA 和蛋白水平增加,AHR 蛋白从细胞质转移到细胞核,AHR 与其共有 DNA 结合序列的结合增加。AHR 转录靶标 HES1 的蛋白和 mRNA 水平也增加。使用 RNAi 敲低 CHRF 细胞中的 AHR 或 HES1 会导致较低的倍性分布,并且无法达到 ≥16n 的倍性等级。AHR 敲低还会导致较低倍性细胞的 DNA 合成增加,而不影响细胞凋亡。这些数据共同支持 AHR 在 Mk 多倍体化和体内血小板功能中的作用,并需要进一步详细研究。