Department of Hematology, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Cell Biol Int. 2021 Apr;45(4):869-881. doi: 10.1002/cbin.11534. Epub 2020 Dec 31.
Circular RNAs (circRNA) are closely associated with the pathogenesis of various hematological diseases. However, little is known about the potential functions of circRNAs in essential thrombocythemia (ET) development. The circRNA profile alterations in the bone marrow of ET patients were mainly investigated in this study. The sizes of exosomes derived from human bone marrow tissues were validated by the nanoparticle tracking analysis (NTA) method. CD63 and TSG101 expressions in exosomes were analyzed by western blot analysis. The profiles and differential expression of circRNAs in bone-derived exosomes were characterized by high-throughput sequencing. Herein, circular structures and expression of circRNAs were verified by Sanger sequencing and real-time polymerase chain reaction, respectively. The circRNA-miRNA-mRNA networks were predicted using the Cytoscape software. And we detected the effect of circ_0014614 on the transformation of K562 cells into megakaryocytes. Exosomes derived from the bone marrow of ET patients and healthy volunteers showed a diameter between 70 and 140 nm and expressed high CD63 and TSG101. Meanwhile, the circRNA profiles were significantly altered in bone marrow-derived exosomes from ET patients, among which circDAP3, circASXL1, and circRUNX1 were significantly downregulated in ET patients, thus conferring a new insight into the role of circRNAs in the pathogenesis of ET. Besides this, circRNA-encoding genes and miRNA-mRNA networks targeted by this three circRNA were involved in various biological processes and signaling pathways. And circ_0014614 could inhibit K562 cells' differentiation into megakaryocytes. The predictions of the potential function of these three differentially expressed circRNAs along with their interaction with specific miRNAs could provide a basis for circRNA-based ET diagnosis and treatment.
环状 RNA(circRNA)与各种血液系统疾病的发病机制密切相关。然而,关于 circRNA 在原发性血小板增多症(ET)发展中的潜在功能知之甚少。本研究主要研究了 ET 患者骨髓中 circRNA 谱改变。通过纳米颗粒跟踪分析(NTA)方法验证了来源于人骨髓组织的外泌体的大小。通过 Western blot 分析分析了外泌体中的 CD63 和 TSG101 表达。通过高通量测序对骨源性外泌体中的 circRNA 谱进行了特征描述和差异表达分析。在此,通过 Sanger 测序和实时聚合酶链反应分别验证了 circRNA 的环状结构和表达。使用 Cytoscape 软件预测了 circRNA-miRNA-mRNA 网络。并检测了 circ_0014614 对 K562 细胞向巨核细胞转化的影响。ET 患者和健康志愿者的骨髓来源的外泌体显示出 70 至 140nm 的直径,并表达高 CD63 和 TSG101。同时,ET 患者骨髓来源的外泌体中的 circRNA 谱显著改变,其中 circDAP3、circASXL1 和 circRUNX1 在 ET 患者中明显下调,从而为 circRNA 在 ET 发病机制中的作用提供了新的见解。除此之外,circRNA 编码基因和 miRNA-mRNA 网络靶向这三个 circRNA 参与了各种生物过程和信号通路。并且 circ_0014614 可以抑制 K562 细胞向巨核细胞分化。这三个差异表达的 circRNA 的潜在功能的预测及其与特定 miRNA 的相互作用可以为基于 circRNA 的 ET 诊断和治疗提供基础。