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跗足发育被 chordin-like 1 的异位表达在鸡胚肢芽中选择性地损害。

Autopodial development is selectively impaired by misexpression of chordin-like 1 in the chick limb.

机构信息

Orthopaedic Research Laboratories, Department of Orthopaedic Surgery, Boston Children's Hospital, Boston, MA 02115, USA.

出版信息

Dev Biol. 2013 Sep 1;381(1):159-69. doi: 10.1016/j.ydbio.2013.06.003. Epub 2013 Jun 10.

Abstract

Chordin-like 1 (CHRDL1) is a secreted bone morphogenetic protein (BMP) antagonist expressed in mesenchymal tissues whose function in development of the skeleton has not been examined in detail. Here we show Chrdl1 is dynamically expressed in the early distal limb bud mesenchyme, with expression becoming downregulated as development proceeds. Chrdl1 expression is largely excluded from the critical signaling center of the posterior limb bud, the Zone of Polarizing Activity (ZPA), as has been described for the BMP antagonist Gremlin (GREM1) (Scherz et al., 2004, Science, 305, 396-399). Unlike Grem1, Chrdl1 is expressed in the hindlimb by a small subset of ZPA cells and their descendants suggesting divergent regulation and function between the various BMP antagonists. Ectopic expression of Chrdl1 throughout the avian limb bud using viral misexpression resulted in an oligodactyly phenotype with loss of digits from the anterior limb, although the development of more proximal elements of the zeugopod and stylopod were unaffected. Overgrowths of soft tissue and syndactyly were also observed, resulting from impaired apoptosis and failure of the anterior mesenchyme to undergo SOX9-dependent chondrogenesis, instead persisting as an interdigital-like soft tissue phenotype. Sonic hedgehog (SHH) and fibroblast growth factor (FGF) signaling were upregulated and persisted later in development, however these changes were only detected late in limb development at timepoints when endogenous Grem1 would normally be downregulated and increasing BMP signaling would cause termination of Shh and Fgf expression. Our results suggest that the early stages of the GREM1-SHH-FGF signaling network are resistant to Chrdl1-overexpression, leading to normal formation of proximal limb structures, but that later Bmp expression, impaired by ectopic CHRDL1, is essential for formation of the correct complement of digits.

摘要

Chordin-like 1 (CHRDL1) 是一种分泌型骨形态发生蛋白 (BMP) 拮抗剂,在间充质组织中表达,但其在骨骼发育中的功能尚未详细研究。在这里,我们显示 Chrdl1 在早期远端肢芽间质中动态表达,随着发育的进行,表达下调。Chrdl1 表达在肢体芽的极化活动区(ZPA)的关键信号中心中基本被排除在外,正如 BMP 拮抗剂 Gremlin (GREM1) 所描述的那样(Scherz 等人,2004 年,《科学》,305,396-399)。与 Grem1 不同,Chrdl1 在小部分 ZPA 细胞及其后代中在 hindlimb 中表达,表明各种 BMP 拮抗剂之间存在不同的调节和功能。使用病毒表达错误表达在整个禽类肢芽中异位表达 Chrdl1 导致少指畸形表型,从前肢失去手指,尽管 zeugopod 和 stylopod 的更近端元件的发育不受影响。也观察到软组织过度生长和并指,这是由于细胞凋亡受损和前间质不能进行 SOX9 依赖性软骨形成,而是持续存在类似于指间的软组织表型。Sonic hedgehog (SHH) 和成纤维细胞生长因子 (FGF) 信号转导上调并在发育后期持续存在,然而这些变化仅在肢芽发育后期检测到,此时内源性 Grem1 通常下调,增加的 BMP 信号会导致 Shh 和 Fgf 表达终止。我们的结果表明,GREM1-SHH-FGF 信号网络的早期阶段对 Chrdl1 过表达具有抗性,导致近端肢体结构的正常形成,但 later Bmp 表达,被异位 CHRDL1 破坏,对于形成正确的数字互补至关重要。

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