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klf1 和 klf17 基因在斑马鱼原始红细胞生成中的协同作用。

Cooperative contributions of the klf1 and klf17 genes in zebrafish primitive erythropoiesis.

机构信息

Laboratory for Developmental Biology, Center for Medical Education and Sciences, Graduate School of Medical Science, University of Yamanashi, 1110 Shimokato, Chuo, Yamanashi, 409-3898, Japan.

出版信息

Sci Rep. 2023 Aug 10;13(1):12279. doi: 10.1038/s41598-023-39196-1.

Abstract

Krüppel-like transcription factors (Klfs), which are characterized by the three conserved C-terminal zinc fingers, are involved in various biological processes, such as haematopoiesis and angiogenesis. However, how the Klf family of transcription factors cooperate in organogenesis remains elusive. During zebrafish embryogenesis, both klf1 and klf17 are expressed in the intermediate cell mass (ICM), where primitive erythroid cells are produced. Using CRISPR-Cas9 genome editing technology, we established klf1-klf17 double mutant zebrafish to investigate the functionally interactive roles of the klf1 and klf17 genes. The klf1-klf17 mutant exhibited a diminished number of circulating primitive erythroid cells at 2 days postfertilization (dpf), while klf1 or klf17 single mutants and wild-type embryos produced comparable numbers of primitive erythroid cells. Circulating erythroid cells from the klf1-klf17 mutant possessed larger nuclei at 2 dpf than wild-type cells, suggesting the impairment of primitive erythroid cell maturation. The expression of the erythroid cell maturation markers band3 and mitoferrin, but not the haematopoietic progenitor markers c-myb and scl, was decreased in the klf1-klf17 mutant at 1 dpf. Thus, these results illustrate the cooperative function of klf1 and klf17 in the maturation processes of zebrafish primitive erythroid cells.

摘要

Krüppel 样转录因子(Klfs),其特征是三个保守的 C 端锌指,参与各种生物学过程,如造血和血管生成。然而,Klf 家族转录因子如何在器官发生中合作仍然难以捉摸。在斑马鱼胚胎发生过程中,klf1 和 klf17 都在中间细胞团(ICM)中表达,原始红细胞就在那里产生。我们使用 CRISPR-Cas9 基因组编辑技术,建立了 klf1-klf17 双突变斑马鱼,以研究 klf1 和 klf17 基因的功能交互作用。klf1-klf17 突变体在受精后 2 天(dpf)时循环的原始红细胞数量减少,而 klf1 或 klf17 单突变体和野生型胚胎产生的原始红细胞数量相当。klf1-klf17 突变体中的循环红细胞在 2 dpf 时比野生型细胞具有更大的核,表明原始红细胞成熟受损。klf1-klf17 突变体在 1 dpf 时,红细胞成熟标志物 band3 和 mitoferrin 的表达降低,但造血祖细胞标志物 c-myb 和 scl 的表达没有降低。因此,这些结果说明了 klf1 和 klf17 在斑马鱼原始红细胞成熟过程中的协同功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10c8/10415360/67b4ab41fb8d/41598_2023_39196_Fig1_HTML.jpg

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