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WNT5A 在软骨发育和疾病中的双重功能。

Dual functions for WNT5A during cartilage development and in disease.

机构信息

Life Sciences Institute, Department of Oral Health Sciences, University of British Columbia, Vancouver, BC, Canada.

出版信息

Matrix Biol. 2013 Jun 24;32(5):252-64. doi: 10.1016/j.matbio.2013.02.005. Epub 2013 Mar 5.

Abstract

Mouse and human genetic data suggests that Wnt5a is required for jaw development but the specific role in facial skeletogenesis is unknown. We mapped expression of WNT5A in the developing chicken skull and found that the highest expression was in early Meckel's cartilage but by stage 35 expression was decreased to background. We focused on chondrogenesis by targeting a retrovirus expressing WNT5A to the mandibular prominence prior to cell differentiation. Unexpectedly, there were no phenotypes in the first 6days following injection; however later the mandibular bones and Meckel's cartilage were reduced or missing on the treated side. To examine the effects on cartilage differentiation we treated micromass cultures from mandibular mesenchyme with Wnt5a-conditioned media (CM). Similar to in vivo viral data, cartilage differentiates normally, but, after 6days of culture, nearly all Alcian blue staining is lost. Collagen II and aggrecan were also decreased in treated cultures. The matrix loss was correlated with upregulation of metalloproteinases, MMP1, MMP13, and ADAMTS5 (codes for Aggrecanase). Moreover, Marimastat, an MMP and Aggrecanase inhibitor rescued cartilage matrix in Wnt5a-CM treated cultures. The pathways mediating these cartilage and RNA changes were investigated using luciferase assays. Wnt5a-CM was a potent inhibitor of the canonical pathway and strongly activated JNK/PCP signaling. To determine whether the matrix loss is mediated by repression of canonical signaling or activation of the JNK pathway we treated mandibular cultures with either DKK1, an antagonist of the canonical pathway, or a small molecule that antagonizes JNK signaling (TCS JNK 6o). DKK1 slightly increased cartilage formation and therefore suggested that the endogenous canonical signaling represses chondrogenesis. To test this further we added an excess of Wnt3a-CM and found that far fewer cartilage nodules differentiated. Since DKK1 did not mimic the effects of Wnt5a we excluded the canonical pathway from mediating the matrix loss phenotype. The JNK antagonist partially rescued the Wnt5a phenotype supporting this non-canonical pathway as the main mediator of the cartilage matrix degradation. Our study reveals two new roles for WNT5A in development and disease: 1) to repress canonical Wnt signaling in cartilage blastema in order to promote normal differentiation and 2) in conditions of excess to stimulate degradation of mature cartilage matrix via non-canonical pathways.

摘要

鼠类和人类的遗传数据表明 Wnt5a 对于颌骨发育是必需的,但它在面部骨骼发生中的具体作用尚不清楚。我们在发育中的鸡颅骨中绘制了 WNT5A 的表达图谱,发现其在早期 Meckel 软骨中的表达最高,但在第 35 阶段表达降低至背景水平。我们通过将表达 WNT5A 的逆转录病毒靶向下颌前突来聚焦于软骨生成,在此之前细胞已经分化。出乎意料的是,注射后前 6 天没有出现表型;然而,后来治疗侧的下颌骨和 Meckel 软骨减少或缺失。为了研究对软骨分化的影响,我们用 Wnt5a 条件培养基(CM)处理下颌间质的微团培养物。与体内病毒数据相似,软骨正常分化,但在培养 6 天后,几乎所有的阿尔辛蓝染色都丢失了。在处理的培养物中,胶原 II 和聚集蛋白聚糖也减少了。基质丢失与金属蛋白酶 MMP1、MMP13 和 ADAMTS5(聚集蛋白聚糖酶的编码基因)的上调相关。此外,Marimastat,一种 MMP 和聚集蛋白聚糖酶抑制剂,可挽救 Wnt5a-CM 处理的培养物中的软骨基质。使用荧光素酶测定法研究了介导这些软骨和 RNA 变化的途径。Wnt5a-CM 强烈抑制经典途径,并强烈激活 JNK/PCP 信号通路。为了确定基质丢失是由经典信号通路的抑制还是 JNK 途径的激活介导,我们用 DKK1(经典途径的拮抗剂)或拮抗 JNK 信号通路的小分子(TCS JNK 6o)处理下颌培养物。DKK1 轻微增加了软骨形成,因此表明内源性经典信号通路抑制了软骨发生。为了进一步验证这一点,我们添加了过量的 Wnt3a-CM,发现分化的软骨结节更少。由于 DKK1 不能模拟 Wnt5a 的作用,我们排除了经典途径介导基质丢失表型。JNK 拮抗剂部分挽救了 Wnt5a 表型,支持该非经典途径作为成熟软骨基质降解的主要介导者。我们的研究揭示了 WNT5A 在发育和疾病中的两个新作用:1)抑制软骨芽中的经典 Wnt 信号,以促进正常分化;2)在过量的情况下,通过非经典途径刺激成熟软骨基质的降解。

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