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Integration of BMP/Wnt Signaling to Control Clonal Growth of Limbal Epithelial Progenitor Cells by Niche Cells

机译:BMP / Wnt信号的整合通过小生境细胞控制角膜上皮祖细胞的克隆生长

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摘要

Both BMP and Wnt signaling control stem cells in bulge/dermal papilla, intestinal crypt, and bone marrow. To explore their roles in the limbal niche, which govern corneal epithelial homeostasis, we established an in vitro model of sphere growth by reunion between single limbal epithelial progenitor cells (LEPCs) and aggregates of limbal niche cells (LNCs) in 3D Matrigel. Compared to LEPCs alone, spheres formed by LEPC+LNC exhibited higher clonal growth and less corneal epithelial differentiation. Furthermore, pSmad1/5/8 was in the nucleus of LEPCs, but not LNCs, and correlated with upregulation of BMP1, BMP3, BMP4, all three BMP receptors, and BMP target genes. Inactivation of BMP signaling in LNCs was correlated with upregulation of noggin preferentially expressed by LNCs. Additionally, β-catenin was stabilized in the perinuclear cytoplasm in LEPCs and correlated with upregulation of Wnt7A and FZD5 preferentially expressed by LEPCs. Inactivation of Wnt signaling in LNCs was correlated with upregulation of DKK1/2 by LNCs. Addition of XAV939 that expectedly downregulated perinuclear β-catenin in LEPCs led to significant reduction of epithelial clonal growth, but upregulated all three BMP receptors and downregulated LNC-derived noggin, resulting in activation of BMP signaling in LNCs. Addition of noggin that expectedly downregulated nuclear localization of pSmad1/5/8 in LEPCs led to nuclear localization of β-catenin in larger LEPCs but membrane relocation of β-catenin in smaller LEPCs and significant upregulation of DKK1/2. Hence, balancing acts between Wnt signaling and BMP signaling exist not only within LEPCs but also between LEPCs and LNCs to regulate clonal growth of LEPCs.
机译:BMP和Wnt信号均控制膨大/真皮乳头,肠道隐窝和骨髓中的干细胞。为了探索它们在支配角膜上皮稳态的角膜缘生境中的作用,我们建立了单个3D基质胶中的单个角膜缘上皮祖细胞(LEPC)与角膜缘生境细胞(LNC)聚集体团聚的体外球体生长模型。与单独的LEPC相比,LEPC + LNC形成的球体显示出更高的克隆生长和更少的角膜上皮分化。此外,pSmad1 / 5/8位于LEPC的核中,而不位于LNC的核中,并且与BMP1,BMP3,BMP4,所有三个BMP受体和BMP靶基因的上调相关。 LNC中BMP信号的失活与LNC优先表达的头蛋白的上调相关。此外,β-catenin在LEPCs的核周细胞质中稳定,并与LEPCs优先表达的Wnt7A和FZD5的上调相关。 LNC中Wnt信号的失活与LNC上调DKK1 / 2有关。 XAV939的添加预计会下调LEPC中的核周β-连环蛋白导致上皮克隆生长的显着降低,但会上调所有三个BMP受体并下调LNC衍生的头蛋白,从而导致LNC中BMP信号的激活。增加预期会降低LEPCs中pSmad1 / 5/8核定位的头蛋白导致较大LEPC中β-catenin的核定位,但导致较小LEPCs中β-catenin的膜重定位和DKK1 / 2的显着上调。因此,Wnt信号和BMP信号之间的平衡作用不仅存在于LEPC内部,而且存在于LEPC和LNC之间,以调节LEPC的克隆生长。

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