Impaired primitive erythropoiesis and defective vascular development in Trim71-KO embryos.

IF 3.3 2区 生物学 Q1 BIOLOGY
Life Science Alliance Pub Date : 2025-02-05 Print Date: 2025-04-01 DOI:10.26508/lsa.202402956
Tobias Beckröge, Bettina Jux, Hannah Seifert, Hannah Theobald, Elena De Domenico, Stefan Paulusch, Marc Beyer, Andreas Schlitzer, Elvira Mass, Waldemar Kolanus
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引用次数: 0

Abstract

The transition of an embryo from gastrulation to organogenesis requires precisely coordinated changes in gene expression, but the underlying mechanisms remain unclear. The RNA-binding protein Trim71 is essential for development and serves as a potent regulator of post-transcriptional gene expression. Here, we show that global deficiency of Trim71 induces severe defects in mesoderm-derived cells at the onset of organogenesis. Murine Trim71-KO embryos displayed impaired primitive erythropoiesis, yolk sac vasculature, heart function, and circulation, explaining the embryonic lethality of these mice. Tie2 Cre Trim71 conditional knockout did not induce strong defects, showing that Trim71 expression in endothelial cells and their immediate progenitors is dispensable for embryonic survival. scRNA-seq of E7.5 global Trim71-KO embryos revealed that transcriptomic changes arise already at gastrulation, showing a strong up-regulation of the mesodermal pioneer transcription factor Eomes. We identify Eomes as a direct target of Trim71-mediated mRNA repression via the NHL domain, demonstrating a functional link between these important regulatory genes. Taken together, our data suggest that Trim71-dependent control of gene expression at gastrulation establishes a framework for proper development during organogenesis.

Trim71-KO胚胎的原始红细胞功能受损和血管发育缺陷。
胚胎从原肠胚发育到器官发生的转变需要基因表达的精确协调变化,但其潜在机制尚不清楚。rna结合蛋白Trim71对发育至关重要,是转录后基因表达的有效调节剂。在这里,我们发现Trim71的整体缺乏在器官发生开始时诱导了中胚层来源细胞的严重缺陷。小鼠Trim71-KO胚胎显示出原始红细胞生成、卵黄囊血管系统、心脏功能和循环受损,解释了这些小鼠的胚胎致命性。Tie2 Cre Trim71条件敲除未诱导强烈缺陷,表明内皮细胞及其直系祖细胞中Trim71的表达对于胚胎存活是不可或缺的。对E7.5个全球Trim71-KO胚胎的scrna测序显示,在原肠胚形成时已经出现了转录组学变化,显示中胚层先驱转录因子Eomes的强烈上调。我们通过NHL结构域确定Eomes是trim71介导的mRNA抑制的直接靶标,证明了这些重要调控基因之间的功能联系。综上所述,我们的数据表明,原肠形成过程中依赖trim71的基因表达控制为器官发生过程中的正常发育建立了框架。
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来源期刊
Life Science Alliance
Life Science Alliance Agricultural and Biological Sciences-Plant Science
CiteScore
5.80
自引率
2.30%
发文量
241
审稿时长
10 weeks
期刊介绍: Life Science Alliance is a global, open-access, editorially independent, and peer-reviewed journal launched by an alliance of EMBO Press, Rockefeller University Press, and Cold Spring Harbor Laboratory Press. Life Science Alliance is committed to rapid, fair, and transparent publication of valuable research from across all areas in the life sciences.
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