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β-珠蛋白生成障碍性贫血的动物模型:效用与局限性

Animal models of β-hemoglobinopathies: utility and limitations.

作者信息

McColl Bradley, Vadolas Jim

机构信息

Cell and Gene Therapy Laboratory, Murdoch Childrens Research Institute, Royal Children's Hospital, Parkville, VIC, Australia.

出版信息

J Blood Med. 2016 Nov 4;7:263-274. doi: 10.2147/JBM.S87955. eCollection 2016.

Abstract

The structural and functional conservation of hemoglobin throughout mammals has made the laboratory mouse an exceptionally useful organism in which to study both the protein and the individual globin genes. Early researchers looked to the globin genes as an excellent model in which to examine gene regulation - bountifully expressed and displaying a remarkably consistent pattern of developmental activation and silencing. In parallel with the growth of research into expression of the globin genes, mutations within the β-globin gene were identified as the cause of the β-hemoglobinopathies such as sickle cell disease and β-thalassemia. These lines of enquiry stimulated the development of transgenic mouse models, first carrying individual human globin genes and then substantial human genomic fragments incorporating the multigenic human β-globin locus and regulatory elements. Finally, mice were devised carrying mutant human β-globin loci on genetic backgrounds deficient in the native mouse globins, resulting in phenotypes of sickle cell disease or β-thalassemia. These years of work have generated a group of model animals that display many features of the β-hemoglobinopathies and provided enormous insight into the mechanisms of gene regulation. Substantive differences in the expression of human and mouse globins during development have also come to light, revealing the limitations of the mouse model, but also providing opportunities to further explore the mechanisms of globin gene regulation. In addition, animal models of β-hemoglobinopathies have demonstrated the feasibility of gene therapy for these conditions, now showing success in human clinical trials. Such models remain in use to dissect the molecular events of globin gene regulation and to identify novel treatments based upon the reactivation of developmentally silenced γ-globin. Here, we describe the development of animal models to investigate globin switching and the β-hemoglobinopathies, a field that has paralleled the emergence of modern molecular biology and clinical genetics.

摘要

血红蛋白在所有哺乳动物中的结构和功能保守性,使得实验室小鼠成为研究该蛋白质及单个珠蛋白基因的极为有用的生物体。早期研究人员将珠蛋白基因视为研究基因调控的绝佳模型——该基因大量表达,并呈现出发育激活和沉默的显著一致模式。在对珠蛋白基因表达研究不断深入的同时,β -珠蛋白基因内的突变被确定为镰状细胞病和β -地中海贫血等β -血红蛋白病的病因。这些研究思路推动了转基因小鼠模型的发展,最初是携带单个人类珠蛋白基因,随后是携带包含多基因人类β -珠蛋白基因座及调控元件的大量人类基因组片段。最后,设计出在缺乏天然小鼠珠蛋白的遗传背景下携带突变人类β -珠蛋白基因座的小鼠,从而产生镰状细胞病或β -地中海贫血的表型。这些年的工作产生了一组具有许多β -血红蛋白病特征的模型动物,并为基因调控机制提供了巨大的见解。人类和小鼠珠蛋白在发育过程中表达的实质性差异也已显现,这揭示了小鼠模型的局限性,但也为进一步探索珠蛋白基因调控机制提供了机会。此外,β -血红蛋白病的动物模型已证明针对这些病症进行基因治疗的可行性,目前在人类临床试验中已取得成功。此类模型仍在用于剖析珠蛋白基因调控的分子事件,并基于重新激活发育沉默的γ -珠蛋白来识别新的治疗方法。在此,我们描述用于研究珠蛋白转换和β -血红蛋白病的动物模型的发展历程,这一领域与现代分子生物学和临床遗传学的出现并行发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cf8/5104300/2d7dbc3ee475/jbm-7-263Fig1.jpg

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