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对斑马鱼幼血小板独特基因进行的背负式敲低筛选,在血小板生成过程中鉴定出八个新基因。

Piggyback knockdown screening of unique genes of zebrafish young thrombocytes identifies eight novel genes in thrombopoiesis.

作者信息

Fallatah Weam, Mary Jabila, Dhinoja Sanchi, Vallabhaneni Sravani, Jagadeeswaran Pudur

机构信息

Department of Biological Sciences, University of North Texas, 1511 West Sycamore Street, 76203, Denton, TX, United States.

出版信息

Sci Rep. 2025 Feb 12;15(1):5180. doi: 10.1038/s41598-025-88866-9.

Abstract

Platelet production, or thrombopoiesis, is a critical process involving the differentiation of hematopoietic stem cells into megakaryocytes, which release platelets into circulation. This study employed a comprehensive screening approach through a piggyback knockdown strategy targeting 394 protein-encoding genes expressed explicitly in young thrombocytes. This approach led us to identify eight candidate genes associated with thrombopoiesis, including spi1b, a transcription factor that potentially regulates thrombocyte development. The sequencing of spi1b mutant progeny harboring a termination codon after Arg254 within the conserved ETS transcription factor domain confirmed the lethality of homozygous mutations, highlighting the essential role of Spi1b in embryonic development. Comparative analysis revealed homology between zebrafish Spi1b and human SPI1, suggesting evolutionary conservation of thrombopoiesis regulatory mechanisms. Additionally, analysis of spi1b knockdown zebrafish and the mutant demonstrated increased bleeding, further emphasizing the importance of spi1b in maintaining hemostasis. Our study provides novel insights into the regulatory networks governing thrombopoiesis and identifies Spi1b as a critical regulator of young thrombocyte development in zebrafish. Further investigations into the functional roles of identified genes in thrombocyte biology may elucidate mechanisms underlying thrombopoiesis and inform therapeutic strategies for bleeding disorders.

摘要

血小板生成,即血栓形成,是一个关键过程,涉及造血干细胞分化为巨核细胞,巨核细胞将血小板释放到循环系统中。本研究采用了一种全面的筛选方法,通过搭载式敲低策略,针对在年轻血小板中特异性表达的394个蛋白质编码基因。这种方法使我们鉴定出八个与血小板生成相关的候选基因,包括spi1b,一种可能调节血小板发育的转录因子。对在保守的ETS转录因子结构域内第254位精氨酸后带有终止密码子的spi1b突变后代进行测序,证实了纯合突变的致死性,突出了Spi1b在胚胎发育中的重要作用。比较分析揭示了斑马鱼Spi1b与人类SPI1之间的同源性,表明血小板生成调节机制的进化保守性。此外,对spi1b敲低的斑马鱼和突变体的分析表明出血增加,进一步强调了spi1b在维持止血中的重要性。我们的研究为控制血小板生成的调控网络提供了新的见解,并确定Spi1b是斑马鱼年轻血小板发育的关键调节因子。对已鉴定基因在血小板生物学中的功能作用进行进一步研究,可能会阐明血小板生成的潜在机制,并为出血性疾病的治疗策略提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4429/11822207/ee5f498c984f/41598_2025_88866_Fig1_HTML.jpg

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