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RNA结合蛋白对白血病干细胞进化和功能的定向调控。

RNA binding protein-directed control of leukemic stem cell evolution and function.

作者信息

Joshi Pratik, Keyvani Chahi Ava, Liu Lina, Moreira Steven, Vujovic Ana, Hope Kristin J

机构信息

Department of Medical Biophysics University of Toronto Toronto Canada.

Princess Margaret Cancer Center University Health Network Toronto Canada.

出版信息

Hemasphere. 2024 Aug 22;8(8):e116. doi: 10.1002/hem3.116. eCollection 2024 Aug.

Abstract

Strict control over hematopoietic stem cell decision making is essential for healthy life-long blood production and underpins the origins of hematopoietic diseases. Acute myeloid leukemia (AML) in particular is a devastating hematopoietic malignancy that arises from the clonal evolution of disease-initiating primitive cells which acquire compounding genetic changes over time and culminate in the generation of leukemic stem cells (LSCs). Understanding the molecular underpinnings of these driver cells throughout their development will be instrumental in the interception of leukemia, the enabling of effective treatment of pre-leukemic conditions, as well as the development of strategies to target frank AML disease. To this point, a number of precancerous myeloid disorders and age-related alterations are proving as instructive models to gain insights into the initiation of LSCs. Here, we explore this myeloid dysregulation at the level of post-transcriptional control, where RNA-binding proteins (RBPs) function as core effectors. Through regulating the interplay of a myriad of RNA metabolic processes, RBPs orchestrate transcript fates to govern gene expression in health and disease. We describe the expanding appreciation of the role of RBPs and their post-transcriptional networks in sustaining healthy hematopoiesis and their dysregulation in the pathogenesis of clonal myeloid disorders and AML, with a particular emphasis on findings described in human stem cells. Lastly, we discuss key breakthroughs that highlight RBPs and post-transcriptional control as actionable targets for precision therapy of AML.

摘要

严格控制造血干细胞的分化决策对于终身健康的血液生成至关重要,也是造血疾病发病的基础。急性髓系白血病(AML)尤其具有毁灭性,它起源于疾病起始原始细胞的克隆进化,这些细胞随着时间的推移获得复合性基因变化,最终产生白血病干细胞(LSC)。了解这些驱动细胞在整个发育过程中的分子基础,将有助于拦截白血病、有效治疗白血病前期病症以及制定针对显性AML疾病的治疗策略。至此,一些癌前髓系疾病和与年龄相关的改变正被证明是了解LSC起始的有指导意义的模型。在这里,我们在转录后控制水平上探讨这种髓系失调,其中RNA结合蛋白(RBP)起着核心效应器的作用。通过调节众多RNA代谢过程的相互作用,RBP协调转录本的命运,以在健康和疾病状态下控制基因表达。我们描述了人们对RBP及其转录后网络在维持健康造血中的作用以及它们在克隆性髓系疾病和AML发病机制中的失调的认识不断增加,特别强调了在人类干细胞中描述的发现。最后,我们讨论了一些关键突破,这些突破突出了RBP和转录后控制作为AML精准治疗的可操作靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a09/11339706/fdde10a00ed2/HEM3-8-e116-g004.jpg

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