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利用斑马鱼剖析造血作用与疾病

Dissecting hematopoiesis and disease using the zebrafish.

作者信息

Amatruda J F, Zon L I

机构信息

Department of Adult Oncology, Dana-Farber Cancer Institute, 44 Binney Street, Boston, Massachusetts, 02115, USA.

出版信息

Dev Biol. 1999 Dec 1;216(1):1-15. doi: 10.1006/dbio.1999.9462.

Abstract

The study of blood has often defined paradigms that are relevant to the biology of other vertebrate organ systems. As examples, stem cell physiology and the structure of the membrane cytoskeleton were first described in hematopoietic cells. Much of the reason for these successes resides in the ease with which blood cells can be isolated and manipulated in vitro. The cell biology of hematopoiesis can also be illuminated by the study of human disease states such as anemia, immunodeficiency, and leukemia. The sequential development of the blood system in vertebrates is characterized by ventral mesoderm induction, hematopoietic stem cell specification, and subsequent cell lineage differentiation. Some of the key regulatory steps in this process have been uncovered by studies in mouse, chicken, and Xenopus. More recently, the genetics of the zebrafish (Danio rerio) have been employed to define novel points of regulation of the hematopoietic program. In this review, we describe the advantages of the zebrafish system for the study of blood cell development and the initial success of the system in this pursuit. The striking similarity of zebrafish mutant phenotypes and human diseases emphasizes the utility of this model system for elucidating pathophysiologic mechanisms. New screens for lineage-specific mutations are beginning, and the availability of transgenics promises a better understanding of lineage-specific gene expression. The infrastructure of the zebrafish system is growing with an NIH-directed genome initiative, providing a detailed map of the zebrafish genome and an increasing number of candidate genes for the mutations. The zebrafish is poised to contribute greatly to our understanding of normal and disease-related hematopoiesis.

摘要

血液研究常常定义了与其他脊椎动物器官系统生物学相关的范式。例如,干细胞生理学和膜细胞骨架的结构最初是在造血细胞中描述的。这些成功的很大一部分原因在于血细胞在体外易于分离和操作。造血作用的细胞生物学也可以通过对人类疾病状态如贫血、免疫缺陷和白血病的研究来阐明。脊椎动物血液系统的连续发育以腹侧中胚层诱导、造血干细胞特化以及随后的细胞谱系分化为特征。这个过程中的一些关键调控步骤已通过对小鼠、鸡和非洲爪蟾的研究得以揭示。最近,斑马鱼(Danio rerio)的遗传学已被用于确定造血程序调控的新位点。在这篇综述中,我们描述了斑马鱼系统在研究血细胞发育方面的优势以及该系统在这一研究中的初步成功。斑马鱼突变体表型与人类疾病的惊人相似性强调了这个模型系统在阐明病理生理机制方面的实用性。针对谱系特异性突变的新筛选正在开始,转基因技术的应用有望更好地理解谱系特异性基因表达。随着美国国立卫生研究院主导的基因组计划,斑马鱼系统的基础设施正在不断发展,提供了斑马鱼基因组的详细图谱以及越来越多的突变候选基因。斑马鱼有望为我们理解正常和疾病相关的造血作用做出巨大贡献。

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