Department of Neuroscience, College of Medicine, The Ohio State University, 4190 Graves Hall, 333 West 10th Ave, Columbus, Ohio, 43210.
Glia. 2017 Oct;65(10):1640-1655. doi: 10.1002/glia.23185. Epub 2017 Jul 13.
Müller glia-derived progenitor cells (MGPCs) have the capability to regenerate neurons in the retinas of different vertebrate orders. The formation of MGPCs is regulated by a network of cell-signaling pathways. The purpose of this study was to investigate how BMP/Smad1/5/8- and TGFβ/Smad2/3-signaling are coordinated to influence the formation of MGPCs in the chick model system. We find that pSmad1/5/8 is selectively up-regulated in the nuclei of Müller glia following treatment with BMP4, FGF2, or NMDA-induced damage, and this up-regulation is blocked by a dorsomorphin analogue DMH1. By comparison, Smad2/3 is found in the nuclei of Müller glia in untreated retinas, and becomes localized to the cytoplasm following NMDA- or FGF2-treatment. These findings suggest a decrease in TGFβ- and increase in BMP-signaling when MGPCs are known to form. In both NMDA-damaged and FGF2-treated retinas, inhibition of BMP-signaling suppressed the proliferation of MGPCs, whereas inhibition of TGFβ-signaling stimulated the proliferation of MGPCs. Consistent with these findings, TGFβ2 suppressed the formation of MGPCs in NMDA-damaged retinas. Our findings indicate that BMP/TGFβ/Smad-signaling is recruited into the network of signaling pathways that controls the formation of proliferating MGPCs. We conclude that signaling through BMP4/Smad1/5/8 promotes the formation of MGPCs, whereas signaling through TGFβ/Smad2/3 suppresses the formation of MGPCs.
Müller 胶质细胞衍生的祖细胞(MGPC)具有在不同脊椎动物中再生视网膜神经元的能力。MGPC 的形成受细胞信号通路网络的调节。本研究旨在探讨 BMP/Smad1/5/8 和 TGFβ/Smad2/3 信号如何协调以影响鸡模型系统中 MGPC 的形成。我们发现,BMP4、FGF2 或 NMDA 诱导损伤处理后,pSmad1/5/8 选择性地上调 Müller 胶质细胞的核内,且该上调被 Dorsomorphin 类似物 DMH1 阻断。相比之下,Smad2/3 在未处理的视网膜中发现于 Müller 胶质细胞的核内,并且在 NMDA 或 FGF2 处理后定位于细胞质。这些发现表明,当 MGPC 已知形成时,TGFβ 信号降低和 BMP 信号增加。在 NMDA 损伤和 FGF2 处理的视网膜中,BMP 信号抑制 MGPC 的增殖,而 TGFβ 信号抑制 MGPC 的增殖。与这些发现一致,TGFβ2 抑制 NMDA 损伤的视网膜中 MGPC 的形成。我们的研究结果表明,BMP/TGFβ/Smad 信号被招募到控制增殖性 MGPC 形成的信号通路网络中。我们得出结论,BMP4/Smad1/5/8 信号促进 MGPC 的形成,而 TGFβ/Smad2/3 信号抑制 MGPC 的形成。