Lorda-Diez Carlos I, Montero Juan A, Garcia-Porrero Juan A, Hurle Juan M
Departamento de Anatomía y Biología Celular, Universidad de Cantabria/IFIMAV, Santander 39011, Spain.
BMC Dev Biol. 2010 Jun 21;10:69. doi: 10.1186/1471-213X-10-69.
Transforming growth factor beta proteins (Tgfbetas) are secreted cytokines with well-defined functions in the differentiation of the musculoskeletal system of the developing limb. Here we have studied in chicken embryos, whether these cytokines are implicated in the development of the embryonic limb bud at stages preceding tissue differentiation.
Immunohistochemical detection of phosphorylated Smad2 and Smad3 indicates that signaling by this pathway is active in the undifferentiated mesoderm and AER. Gene expression analysis shows that transcripts of tgfbeta2 and tgfbeta3 but not tgfbeta1 are abundant in the growing undifferentiated limb mesoderm. Transcripts of tgfbeta2 are also found in the AER, which is the signaling center responsible for limb outgrowth. Furthermore, we show that Latent Tgfbeta Binding protein 1 (LTBP1), which is a key extracellular modulator of Tgfbeta ligand bioavailability, is coexpressed with Tgfbetas in the early limb bud. Administration of exogenous Tgfbetas to limb buds growing in explant cultures provides evidence of these cytokines playing a role in the regulation of mesodermal limb proliferation. In addition, analysis of gene regulation in these experiments revealed that Tgfbeta signaling has no effect on the expression of master genes of musculoskeletal tissue differentiation but negatively regulates the expression of the BMP-antagonist Gremlin.
We propose the occurrence of an interplay between Tgfbeta and BMP signaling functionally associated with the regulation of early limb outgrowth by modulating limb mesenchymal cell proliferation.
转化生长因子β蛋白(Tgfbetas)是分泌型细胞因子,在发育中肢体的肌肉骨骼系统分化中具有明确的功能。在此,我们在鸡胚胎中研究了这些细胞因子在组织分化之前的胚胎肢芽发育过程中是否发挥作用。
磷酸化Smad2和Smad3的免疫组织化学检测表明,该信号通路在未分化的中胚层和顶外胚层嵴(AER)中具有活性。基因表达分析显示,tgfbeta2和tgfbeta3的转录本在生长中的未分化肢体中胚层中丰富,但tgfbeta1的转录本不丰富。tgfbeta2的转录本也存在于AER中,AER是负责肢体生长的信号中心。此外,我们表明,作为Tgfbeta配体生物利用度关键细胞外调节剂的潜伏Tgfbeta结合蛋白1(LTBP1),在早期肢芽中与Tgfbetas共表达。向外植体培养中生长的肢芽施用外源性Tgfbetas,为这些细胞因子在调节中胚层肢体增殖中发挥作用提供了证据。此外,这些实验中的基因调控分析表明,Tgfbeta信号传导对肌肉骨骼组织分化主控基因的表达没有影响,但对BMP拮抗剂Gremlin的表达具有负调控作用。
我们提出Tgfbeta和BMP信号传导之间存在相互作用,其功能与通过调节肢体间充质细胞增殖来调控早期肢体生长有关。