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体外胚胎骨骼发生祖细胞分化过程中骨形态发生蛋白(BMP)信号传导的配体和阶段依赖性差异功能

Ligand- and stage-dependent divergent functions of BMP signaling in the differentiation of embryonic skeletogenic progenitors in vitro.

作者信息

Lorda-Diez Carlos I, Montero Juan A, Choe Senyon, Garcia-Porrero Juan A, Hurle Juan M

机构信息

Departamento de Anatomía y Biología Celular and IFIMAV, Universidad de Cantabria, Santander, Spain.

出版信息

J Bone Miner Res. 2014 Mar;29(3):735-48. doi: 10.1002/jbmr.2077.

Abstract

Bone morphogenetic proteins (BMPs) are key molecules in the differentiation of skeletal tissues. We have investigated whether differentiation of limb embryonic mesodermal progenitors into different connective tissue lineages depends on specific stimulation of distinct BMP ligands or on the differential response of target cells to a common BMP stimulus. We show that Bmp2,4,5,7 and Gdf5 exhibit differential expression domains during the formation of tendons, cartilages, and joint tissues in digit development, but their respective effects on digit progenitors cell cultures cannot sustain the divergent differentiation of these cells into tendons, joints, and cartilage. However, the influence of BMPs differs based on the culture length. Early cultures respond to any of the BMPs by inducing chondrogenic factors and inhibiting fibrogenic and osteogenic markers. Later, a second phase of the culture occurs when BMPs attenuate their prochondrogenic influence and promote the fibrogenic marker Scleraxis. At advanced culture stages, BMPs inhibit prochondrogenic and profibrogenic markers and promote osteogenic markers. The switch from the prochondrogenic to the profibrogenic response appears critically dependent on the basal expression of Noggin. Thus, the differential regulation of Scleraxis at these stages was abrogated by treatments with a BMP-analogous compound (AB204) that escapes NOGGIN antagonism. Gene regulation experiments in absence of protein synthesis during the first period of culture indicate that BMPs activate at the same time master chondrogenic and fibrogenic genes together with cofactors responsible for driving the signaling cascade toward chondrogenesis or fibrogenesis. Gene-silencing experiments indicate that Id2 is one of the factors limiting the profibrogenic influence of BMPs. We propose that connective tissues are dynamic structures composed of cartilage, fibrous tissue, and bone that form in successive steps from the differentiation of common progenitors. This sequential differentiation is regulated by BMPs through a process that is dependent on the basal expression of BMP cofactors or signaling modulators.

摘要

骨形态发生蛋白(BMPs)是骨骼组织分化中的关键分子。我们研究了肢体胚胎中胚层祖细胞向不同结缔组织谱系的分化是取决于不同BMP配体的特异性刺激,还是取决于靶细胞对共同BMP刺激的差异反应。我们发现,在手指发育过程中肌腱、软骨和关节组织形成期间,Bmp2、4、5、7和Gdf5表现出不同的表达域,但它们对指祖细胞培养物的各自作用无法维持这些细胞向肌腱、关节和软骨的不同分化。然而,BMPs的影响因培养时间长短而异。早期培养物对任何一种BMPs的反应是诱导软骨生成因子并抑制纤维生成和成骨标记物。后来,培养进入第二阶段,此时BMPs减弱其促软骨生成作用并促进纤维生成标记物硬骨素。在培养后期,BMPs抑制促软骨生成和促纤维生成标记物并促进成骨标记物。从促软骨生成反应向促纤维生成反应的转变似乎关键取决于Noggin的基础表达。因此,在这些阶段对硬骨素的差异调节被一种逃避Noggin拮抗作用的BMP类似化合物(AB204)处理所消除。在培养的第一阶段无蛋白质合成情况下进行的基因调控实验表明,BMPs同时激活主要的软骨生成和纤维生成基因以及负责驱动信号级联向软骨生成或纤维生成的辅因子。基因沉默实验表明,Id2是限制BMPs促纤维生成影响的因素之一。我们提出,结缔组织是由软骨、纤维组织和骨组成的动态结构,它们从共同祖细胞的分化中依次形成。这种顺序性分化由BMPs通过一个依赖于BMP辅因子或信号调节剂基础表达的过程来调节。

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