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Wnt9a信号传导对于软骨形成过程中关节完整性和Ihh的调节是必需的。

Wnt9a signaling is required for joint integrity and regulation of Ihh during chondrogenesis.

作者信息

Später Daniela, Hill Theo P, O'sullivan Roderick J, Gruber Michaela, Conner David A, Hartmann Christine

机构信息

Institute of Molecular Pathology, Dr Bohr-Gasse 7, A-1030 Vienna, Austria.

出版信息

Development. 2006 Aug;133(15):3039-49. doi: 10.1242/dev.02471. Epub 2006 Jul 3.

DOI:10.1242/dev.02471
PMID:16818445
Abstract

Joints, which separate skeleton elements, serve as important signaling centers that regulate the growth of adjacent cartilage elements by controlling proliferation and maturation of chondrocytes. Accurate chondrocyte maturation is crucial for endochondral ossification and for the ultimate size of skeletal elements, as premature or delayed maturation results predominantly in shortened elements. Wnt9a has previously been implicated as being a player in joint induction, based on gain-of function experiments in chicken and mouse. We show that loss of Wnt9a does not affect joint induction, but results to synovial chondroid metaplasia in some joints. This phenotype can be enhanced by removal of an additional Wnt gene, Wnt4, suggesting that Wnts are playing a crucial role in directing bi-potential chondro-synovioprogenitors to become synovial connective tissue, by actively suppressing their chondrogenic potential. Furthermore, we show that Wnt9a is a temporal and spatial regulator of Indian hedgehog (Ihh), a central player of skeletogenesis. Loss of Wnt9a activity results in transient downregulation of Ihh and reduced Ihh-signaling activity at E12.5-E13.5. The canonical Wnt/beta-catenin pathway probably mediates regulation of Ihh expression in prehypertrophic chondrocytes by Wnt9a, because embryos double-heterozygous for Wnt9a and beta-catenin show reduced Ihh expression, and in vivo chromatin immunoprecipitation demonstrates a direct interaction between the beta-catenin/Lef1 complex and the Ihh promoter.

摘要

关节将骨骼元素分隔开,作为重要的信号中心,通过控制软骨细胞的增殖和成熟来调节相邻软骨元素的生长。准确的软骨细胞成熟对于软骨内骨化和骨骼元素的最终大小至关重要,因为过早或延迟成熟主要导致骨骼元素缩短。基于在鸡和小鼠中的功能获得实验,Wnt9a先前被认为是关节诱导中的一个参与者。我们发现Wnt9a的缺失并不影响关节诱导,但会导致一些关节出现滑膜软骨化生。通过去除另一个Wnt基因Wnt4,这种表型可以增强,这表明Wnts通过积极抑制双能软骨-滑膜祖细胞的软骨生成潜能,在引导其成为滑膜结缔组织中起着关键作用。此外,我们表明Wnt9a是印度刺猬因子(Ihh)的时空调节因子,Ihh是骨骼发生的核心参与者。Wnt9a活性的丧失导致Ihh在E12.5 - E13.5时短暂下调,Ihh信号活性降低。经典的Wnt/β-连环蛋白途径可能介导Wnt9a对肥大前软骨细胞中Ihh表达的调节,因为Wnt9a和β-连环蛋白双杂合子胚胎显示Ihh表达降低,并且体内染色质免疫沉淀证明β-连环蛋白/Lef1复合物与Ihh启动子之间存在直接相互作用。

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