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BMP Signaling and Skeletogenesis

机译:BMP信号传导和骨骼生成

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摘要

Bone morphogenetic proteins (BMPs) are members of the transforming growth factor (TGF)-β superfamily of signal molecules that mediate many diverse biological processes ranging from early embryonic tissue patterning to postnatal tissue homeostasis. BMPs trigger cell responses mainly through the canonical signaling pathway where in-tracellular Smads play central roles in delivering the extracellular signals to the nucleus. While the same Smads are used by BMPs in all types of cells, different transcription factors account in part for the functional diversity of BMPs. These transcription factors are recruited by Smads to regulate the expression of specific subsets of target genes depending on the cell types. Among the transcription factors are Hox proteins. Experimental gain and loss-of-function studies as well as naturally occurring mutations in Hox genes demonstrate their central roles in embryonic skeletal patterning. In addition to the interactions with Smads observed for several Hox proteins, there is also evidence that the expression of a number of Hox genes is regulated by BMPs. It is suggested that Hox proteins play an important role in the BMP pathway.
机译:骨形态发生蛋白(BMP)是信号分子转化生长因子(TGF)-β超家族的成员,该家族介导许多不同的生物学过程,从早期胚胎组织构图到产后组织稳态。 BMP主要通过经典的信号传导途径触发细胞反应,其中细胞内Smads在将细胞外信号传递至细胞核中起着核心作用。尽管BMP在所有类型的细胞中都使用相同的Smad,但不同的转录因子部分解释了BMP的功能多样性。这些转录因子由Smads募集,取决于细胞类型来调节靶基因特定子集的表达。转录因子中有Hox蛋白。实验性的功能获得和丧失功能研究以及Hox基因的天然突变证明了它们在胚胎骨骼模式中的核心作用。除了在几种Hox蛋白中观察到的与Smads的相互作用之外,还有证据表明许多Hox基因的表达受BMP调节。提示Hox蛋白在BMP途径中起重要作用。

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