Department of Hematology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou 450052, PR China.
Department of Hematology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou 450052, PR China.
Int J Biol Macromol. 2023 May 15;237:123990. doi: 10.1016/j.ijbiomac.2023.123990. Epub 2023 Mar 9.
This research sought to elucidate the mechanism underlying the self-renewal capacity of leukemic stem cells (LSCs) to offer new insights into the treatment of acute myeloid leukemia (AML). The expression of HOXB-AS3 and YTHDC1 in the AML samples was screened and verified in THP-1 cells and LSCs. The relationship between HOXB-AS3 and YTHDC1 was determined. HOXB-AS3 and YTHDC1 were knocked down through cell transduction to examine the effect of HOXB-AS3 and YTHDC1 on LSCs isolated from THP-1 cells. Tumor formation in mice was used to verify fore experiments. HOXB-AS3 and YTHDC1 were robustly induced in AML, in correlation with adverse prognosis in patients with AML. We found YTHDC1 bound HOXB-AS3 and regulated its expression. Overexpression of YTHDC1 or HOXB-AS3 promoted the proliferation of THP-1 cells and LSCs and impaired their apoptosis, increasing the number of LSCs in the blood and bone marrow of AML mice. YTHDC1 could upregulate the expression of HOXB-AS3 spliceosome NR_033205.1 via the m6A modification of HOXB-AS3 precursor RNA. By this mechanism, YTHDC1 accelerated the self-renewal of LSCs and the subsequent AML progression. This study identifies a crucial role for YTHDC1 in the regulation of LSC self-renewal in AML and suggests a new perspective for AML treatment.
本研究旨在阐明白血病干细胞(LSCs)自我更新能力的机制,为急性髓系白血病(AML)的治疗提供新的见解。在 THP-1 细胞和 LSCs 中筛选并验证了 AML 样本中 HOXB-AS3 和 YTHDC1 的表达。确定了 HOXB-AS3 和 YTHDC1 之间的关系。通过细胞转导敲低 HOXB-AS3 和 YTHDC1,观察 HOXB-AS3 和 YTHDC1 对从 THP-1 细胞分离的 LSCs 的影响。使用小鼠肿瘤形成来验证前实验。HOXB-AS3 和 YTHDC1 在 AML 中强烈诱导,与 AML 患者的不良预后相关。我们发现 YTHDC1 结合 HOXB-AS3 并调节其表达。YTHDC1 或 HOXB-AS3 的过表达促进 THP-1 细胞和 LSCs 的增殖,并损害其凋亡,增加 AML 小鼠血液和骨髓中 LSCs 的数量。YTHDC1 可以通过 HOXB-AS3 前体 RNA 的 m6A 修饰上调 HOXB-AS3 剪接体 NR_033205.1 的表达。通过这种机制,YTHDC1 加速了 LSCs 的自我更新和随后的 AML 进展。本研究确定了 YTHDC1 在 AML 中调节 LSC 自我更新中的关键作用,并为 AML 治疗提供了新的视角。