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Bmp signaling maintains a mesoderm progenitor cell state in the mouse tailbud

机译:BMP信号传导在鼠标尾巴中维持Mesoderm祖细胞状态

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摘要

Caudal somites are generated from a pool of progenitor cells located in the tailbud region. These progenitor cells form the presomitic mesoderm that gradually differentiates into somites under the action of the segmentation clock. The signals responsible for tailbud mesoderm progenitor pool maintenance during axial elongation are still elusive. Here, we show that Bmp signaling is sufficient to activate the entire mesoderm progenitor gene signature in primary cultures of caudal mesoderm cells. Bmp signaling acts through the key regulatory genes brachyury (T) and Nkx1-2 and contributes to the activation of several other regulators of the mesoderm progenitor gene network. In the absence of Bmp signaling, tailbud mesoderm progenitor cells acquire aberrant gene expression signatures of the heart, blood, muscle and skeletal embryonic lineages. Treatment of embryos with the Bmp inhibitor noggin confirmed the requirement for Bmp signaling for normal T expression and the prevention of abnormal lineage marker activation. Together, these results identify Bmp signaling as a non-cell-autonomous signal necessary for mesoderm progenitor cell homeostasis.
机译:从位于尾坝区域中的祖细胞库中产生尾部。这些祖细胞形成预先分割时钟的作用逐渐区分细胞的预甲状腺细胞。负责Tailbud Mesoderm祖先池池维护的信号仍然难以捉摸。在这里,我们表明BMP信号传导足以激活尾状细胞胚层细胞的原代培养中的整个中胚层祖细胞基因签名。 BMP信号传导通过关键调节基因Brachyury(T)和NKX1-2,有助于激活Mesoderm祖细胞基因网络的其他几个调节因子。在没有BMP信号传导的情况下,Tailbud Mesoderm祖细胞获取心脏,血液,肌肉和骨骼胚胎谱系的异常基因表达签名。用BMP抑制剂Noggin治疗胚胎证实了对BMP信号传导的正常T表达和预防异常谱系标记活化的要求。这些结果一起鉴定BMP信号作为中胚层祖细胞稳态所必需的非细胞自主信号。

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