首页> 美国卫生研究院文献>Oncotarget >RRD-251 enhances all-trans retinoic acid (RA)-induced differentiation of HL-60 myeloblastic leukemia cells
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RRD-251 enhances all-trans retinoic acid (RA)-induced differentiation of HL-60 myeloblastic leukemia cells

机译:RRD-251增强全反式维甲酸(RA)诱导的HL-60粒细胞白血病细胞分化

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摘要

All-trans-retinoic acid (RA) is known to induce terminal granulocytic differentiation and cell cycle arrest of HL-60 cells. Responding to an RA-induced cytosolic signaling machine, c-Raf translocates to the nucleus, providing propulsion for RA-induced differentiation. This novel mechanism is not understood, but presumably reflects c-Raf binding with nuclear gene regulatory proteins. RRD-251 is a small molecule that prevents the interaction of c-Raf and RB, the retinoblastoma tumor suppressor protein. The involvement of c-Raf and RB in RA-induced differentiation motivates interest in the effects of combined RA and RRD-251 treatment on leukemic cell differentiation.We demonstrate that RRD-251 enhances RA-induced differentiation. Mechanistically, we find that nuclear translocated c-Raf associates with pS608 RB. RA causes loss of pS608 RB, where cells with hypophosphorylated S608 RB are G0/G1 restricted. Corroborating the pS608 RB hypophosphorylation, RB sequestration of E2F increased with concomitant loss of cdc6 expression, which is known to be driven by E2F. Hypophosphorylation of S608 RB releases c-Raf from RB sequestration to bind other nuclear targets. Release of c-Raf from RB sequestration results in enhanced association with GSK-3 which is phosphorylated at its S21/9 inhibitory sites. c-Raf binding to GSK-3 is associated with dissociation of GSK-3 and RARα, thereby relieving RARα of GSK-3 inhibition. RRD-251 amplifies each of these RA-induced events. Consistent with the posited enhancement of RARα transcriptional activity by RRD-251, RRD-251 increases the RARE-driven CD38 expression per cell. The RA/c-Raf/GSK-3/RARα axis emerges as a novel differentiation regulatory mechanism susceptible to RRD-251, suggesting enhancing RA-effects with RRD-251 in therapy.
机译:众所周知,全反式维甲酸(RA)可以诱导HL-60细胞的终末粒细胞分化和细胞周期停滞。响应RA诱导的胞质信号转导机制,c-Raf易位至细胞核,为RA诱导的分化提供动力。这种新颖的机制尚不清楚,但大概反映了c-Raf与核基因调节蛋白的结合。 RRD-251是一种小分子,可防止c-Raf与视网膜母细胞瘤肿瘤抑制蛋白RB相互作用。 c-Raf和RB参与RA诱导的分化,激发了人们对RA和RRD-251联合治疗白血病细胞分化的影响的兴趣。我们证明RRD-251增强了RA诱导的分化。从机理上讲,我们发现核易位的c-Raf与pS608 RB有关。 RA导致pS608 RB丢失,其中具有磷酸化S608 RB的细胞受到G0 / G1限制。证实pS608 RB的磷酸化不足,E2F的RB螯合增加,伴随着cdc6表达的损失,这是由E2F驱动的。 S608 RB的低磷酸化使RB螯合释放c-Raf以结合其他核靶标。从RB螯合释放c-Raf导致与GSK-3的结合增强,GSK-3在其S21 / 9抑制位点被磷酸化。 c-Raf与GSK-3的结合与GSK-3和RARα的解离有关,从而减轻了RARα对GSK-3的抑制作用。 RRD-251放大了这些RA诱发的事件。与RRD-251引起的RARα转录活性的增强一致,RRD-251增加了每个细胞的RARE驱动的CD38表达。 RA / c-Raf / GSK-3 /RARα轴作为一种新型的分化调节机制而出现,易于受到RRD-251的影响,这表明RRD-251在治疗中可增强RA的作用。

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