POU4F2/BRN3B过表达促进视网膜神经节细胞样投射神经元的发生。

IF 3.7 2区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Development Pub Date : 2025-03-01 Epub Date: 2025-03-03 DOI:10.1242/dev.204297
Viviane Medeiros Oliveira-Valença, Jacqueline Marie Roberts, Vitória Melo Fernandes-Cerqueira, Carolina Herkenhoff Colmerauer, Beatriz Cardoso de Toledo, Pedro Lucas Santos-França, Rafael Linden, Rodrigo Alves Portela Martins, Maurício Rocha-Martins, Alejandra Bosco, Monica Lynn Vetter, Mariana Souza da Silveira
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引用次数: 0

摘要

视网膜神经节细胞(RGCs)是视网膜的投射神经元,它们的死亡会导致不可逆的失明。在视网膜发育过程中,有几个因素控制了它们的发生,其中包括Atoh7作为RGC计划的主要协调者和下游目标,包括Pou4f因子,它们反过来调节终端分化的关键方面。POU4F家族基因的缺失导致RGC分化缺陷,轴突发育异常,最终导致RGC死亡,证实了POU4F因子对RGC发育和存活的要求,在调控RGC轴突生长和寻路中起关键作用。在这里,我们在体内研究了晚期视网膜祖细胞(晚期RPCs)中的异位Pou4f2表达是否足以诱导具有RGC特性的细胞的产生,包括长距离轴突投射。我们发现,Pou4f2过表达产生的rgc样细胞与早期发育过程中正常产生的rgc具有相同的形态和转录特征,并将轴突突起延伸至大脑。总之,这些结果表明,单独的POU4F2足以促进视网膜祖细胞在其发育窗口外的投射神经元的关键特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
POU4F2 overexpression promotes the genesis of retinal ganglion cell-like projection neurons from late progenitors.

Retinal ganglion cells (RGCs) are the projection neurons of the retina, and their death promotes an irreversible blindness. Several factors were described to control their genesis during retinal development. These include Atoh7, a major orchestrator of the RGC program, and downstream targets of this transcription factor, including Pou4f factors, that in turn regulate key aspects of terminal differentiation. The absence of POU4F family genes results in defects in RGC differentiation, aberrant axonal elaboration and, ultimately, RGC death. This confirms the requirement of POU4F factors for RGC development and survival, with a crucial role in regulating RGC axon outgrowth and pathfinding. Here, we have investigated in vivo whether ectopic Pou4f2 expression in late retinal progenitor cells (late RPCs) is sufficient to induce the generation of cells with RGC properties, including long-range axon projections. We show that Pou4f2 overexpression generates RGC-like cells that share morphological and transcriptional features with RGCs that are normally generated during early development and extend axonal projections up to the brain. In conclusion, these results show that POU4F2 alone is sufficient to promote the crucial properties of projection neurons that arise from retinal progenitors outside their developmental window.

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来源期刊
Development
Development 生物-发育生物学
CiteScore
6.70
自引率
4.30%
发文量
433
审稿时长
3 months
期刊介绍: Development’s scope covers all aspects of plant and animal development, including stem cell biology and regeneration. The single most important criterion for acceptance in Development is scientific excellence. Research papers (articles and reports) should therefore pose and test a significant hypothesis or address a significant question, and should provide novel perspectives that advance our understanding of development. We also encourage submission of papers that use computational methods or mathematical models to obtain significant new insights into developmental biology topics. Manuscripts that are descriptive in nature will be considered only when they lay important groundwork for a field and/or provide novel resources for understanding developmental processes of broad interest to the community. Development includes a Techniques and Resources section for the publication of new methods, datasets, and other types of resources. Papers describing new techniques should include a proof-of-principle demonstration that the technique is valuable to the developmental biology community; they need not include in-depth follow-up analysis. The technique must be described in sufficient detail to be easily replicated by other investigators. Development will also consider protocol-type papers of exceptional interest to the community. We welcome submission of Resource papers, for example those reporting new databases, systems-level datasets, or genetic resources of major value to the developmental biology community. For all papers, the data or resource described must be made available to the community with minimal restrictions upon publication. To aid navigability, Development has dedicated sections of the journal to stem cells & regeneration and to human development. The criteria for acceptance into these sections is identical to those outlined above. Authors and editors are encouraged to nominate appropriate manuscripts for inclusion in one of these sections.
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