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提高胎儿血红蛋白:最近发现的调节因子和机制

Elevating fetal hemoglobin: recently discovered regulators and mechanisms.

作者信息

Khandros Eugene, Blobel Gerd A

机构信息

Division of Hematology, Children's Hospital of Philadelphia, Philadelphia, PA.

Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA.

出版信息

Blood. 2024 Aug 22;144(8):845-852. doi: 10.1182/blood.2023022190.

Abstract

It has been known for over half a century that throughout ontogeny, humans produce different forms of hemoglobin, a tetramer of α- and β-like hemoglobin chains. The switch from fetal to adult hemoglobin occurs around the time of birth when erythropoiesis shifts from the fetal liver to the bone marrow. Naturally, diseases caused by defective adult β-globin genes, such as sickle cell disease and β-thalassemia, manifest themselves as the production of fetal hemoglobin fades. Reversal of this developmental switch has been a major goal to treat these diseases and has been a driving force to understand its underlying molecular biology. Several review articles have illustrated the long and at times arduous paths that led to the discovery of the first transcriptional regulators involved in this process. Here, we survey recent developments spurred by the discovery of CRISPR tools that enabled for the first time high-throughput genetic screens for new molecules that impact the fetal-to-adult hemoglobin switch. Numerous opportunities for therapeutic intervention have thus come to light, offering hope for effective pharmacologic intervention for patients for whom gene therapy is out of reach.

摘要

半个多世纪以来,人们已经知道,在整个个体发育过程中,人类会产生不同形式的血红蛋白,它是由α类和β类血红蛋白链组成的四聚体。从胎儿血红蛋白向成人血红蛋白的转变发生在出生前后,此时红细胞生成从胎儿肝脏转移到骨髓。自然地,由成人β-珠蛋白基因缺陷引起的疾病,如镰状细胞病和β-地中海贫血,会随着胎儿血红蛋白生成的消退而显现出来。逆转这种发育转换一直是治疗这些疾病的主要目标,也是推动人们了解其潜在分子生物学的动力。几篇综述文章阐述了发现参与这一过程的首批转录调节因子所经历的漫长且有时艰辛的历程。在这里,我们概述了由CRISPR工具的发现所推动的最新进展,这些工具首次实现了针对影响胎儿到成人血红蛋白转换的新分子的高通量基因筛选。因此,出现了众多治疗干预的机会,为那些无法接受基因治疗的患者带来了有效药物干预的希望。

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