The Tisch Cancer Institute and Myeloproliferative Disease Research Consortium, Mount Sinai School of Medicine, New York, NY, USA.
Blood. 2011 Jul 14;118(2):425-36. doi: 10.1182/blood-2010-07-296921. Epub 2011 Feb 25.
Glucocorticoid receptor (GR) agonists increase erythropoiesis in vivo and in vitro. To clarify the effect of the dominant negative GRβ isoform (unable to bind STAT-5) on erythropoiesis, erythroblast (EB) expansion cultures of mononuclear cells from 18 healthy (nondiseased) donors (NDs) and 16 patients with polycythemia vera (PV) were studied. GRβ was expressed in all PV EBs but only in EBs from 1 ND. The A3669G polymorphism, which stabilizes GRβ mRNA, had greater frequency in PV (55%; n = 22; P = .0028) and myelofibrosis (35%; n = 20) patients than in NDs (9%; n = 22) or patients with essential thrombocythemia (6%; n = 15). Dexamethasone stimulation of ND cultures increased the number of immature EBs characterized by low GATA1 and β-globin expression, but PV cultures generated great numbers of immature EBs with low levels of GATA1 and β-globin irrespective of dexamethasone stimulation. In ND EBs, STAT-5 was not phosphorylated after dexamethasone and erythropoietin treatment and did not form transcriptionally active complexes with GRα, whereas in PV EBs, STAT-5 was constitutively phosphorylated, but the formation of GR/STAT-5 complexes was prevented by expression of GRβ. These data indicate that GRβ expression and the presence of A3669G likely contribute to development of erythrocytosis in PV and provide a potential target for identification of novel therapeutic agents.
糖皮质激素受体 (GR) 激动剂可增加体内和体外的红细胞生成。为了阐明无法结合 STAT-5 的显性负 GRβ 同工型 (unable to bind STAT-5) 对红细胞生成的影响,研究了来自 18 名健康(无疾病)供体 (ND) 和 16 名真性红细胞增多症 (PV) 患者的单个核细胞红系母细胞 (EB) 扩增培养物。所有 PV EB 中均表达 GRβ,但仅在 1 个 ND 的 EB 中表达。可稳定 GRβ mRNA 的 A3669G 多态性在 PV(55%;n = 22;P =.0028)和骨髓纤维化(35%;n = 20)患者中的频率高于 ND(9%;n = 22)或原发性血小板增多症(6%;n = 15)患者。地塞米松刺激 ND 培养物增加了不成熟 EB 的数量,这些 EB 的特征是低 GATA1 和β-珠蛋白表达,但 PV 培养物产生了大量低水平 GATA1 和β-珠蛋白的不成熟 EB,而与地塞米松刺激无关。在 ND EB 中,地塞米松和促红细胞生成素治疗后 STAT-5 未磷酸化,也未与 GRα 形成转录活性复合物,而在 PV EB 中,STAT-5 持续磷酸化,但 GRβ 的表达阻止了 GR/STAT-5 复合物的形成。这些数据表明,GRβ 表达和 A3669G 的存在可能导致 PV 红细胞增多症的发展,并为鉴定新型治疗剂提供了潜在的靶标。