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A single-cell interactome of human tooth germ from growing third molar elucidates signaling networks regulating dental development

机译:来自生长第三摩尔的人牙胚芽的单细胞互蛋白酶阐明了调节牙科开发的信号通信网络

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Development of dental tissue is regulated by extensive cell crosstalk based on various signaling molecules, such as bone morphogenetic protein (BMP) and fibroblast growth factor (FGF) pathways. However, an intact network of the intercellular regulation is still lacking. To gain an unbiased and comprehensive view of this dental cell interactome, we applied single-cell RNA-seq on immature human tooth germ of the growing third molar, discovered refined cell subtypes, and applied multiple network analysis to identify the central signaling pathways. We found that immune cells made up over 80% of all tooth germ cells, which exhibited profound regulation on dental cells via Transforming growth factor-β, Tumor necrosis factor (TNF) and Interleukin-1. During osteoblast differentiation, expression of genes related to extracellular matrix and mineralization was continuously elevated by signals from BMP and FGF family. As for the self-renewal of apical papilla stem cell, BMP-FGFR1-MSX1 pathway directly regulated the G0-to-S cell cycle transition. We also confirmed that Colony Stimulating Factor 1 secreted from pericyte and TNF Superfamily Member 11 secreted from osteoblast regulated a large proportion of genes related to osteoclast transformation from macrophage and monocyte. We constructed the intercellular signaling networks that regulated the essential developmental process of human tooth, which served as a foundation for future dental regeneration engineering and the understanding of oral pathology.
机译:牙科组织的发展是基于各种信号分子的广泛细胞串扰调节,例如骨形态发生蛋白(BMP)和成纤维细胞生长因子(FGF)途径。然而,仍然缺乏细胞间调节的完整网络。为了获得这种牙科细胞互联蛋白的无偏见和综合观点,我们在生长的第三磨牙的未成熟的人牙胚芽上施加单细胞RNA-SEQ,发现精制细胞亚型,并施加多个网络分析以识别中央信号通路。我们发现免疫细胞占所有牙齿生殖细胞的80%以上,通过转化生长因子-β,肿瘤坏死因子和白细胞介素-1在牙科细胞上表现出深刻的调节。在成骨细胞分化期间,通过BMP和FGF家族的信号连续升高与细胞外基质和矿化有关的基因的表达。至于顶端乳头干细胞的自我更新,BMP-FGFR1-MSX1途径直接调节G0-〜S细胞周期转变。我们还证实,从骨赘分泌的来自周季和TNF超家族成员11分泌的殖民刺激因子1调节与巨噬细胞和单核细胞的骨细胞转化有关的大部分基因。我们构建了调节人类牙齿的基本发展过程的细胞间信号网络,这是未来牙科再生工程的基础和对口腔病理学的理解。

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