...
首页> 外文期刊>The Journal of biological chemistry >Comparative Proteomic Analysis of Normal and Collagen IX Null Mouse Cartilage Reveals Altered Extracellular Matrix Composition and Novel Components of the Collagen IX Interactome
【24h】

Comparative Proteomic Analysis of Normal and Collagen IX Null Mouse Cartilage Reveals Altered Extracellular Matrix Composition and Novel Components of the Collagen IX Interactome

机译:正常和胶原IX无效鼠标软骨的对比蛋白质组学分析显示出改变的细胞外基质组成和胶原蛋白酶蛋白酶的新组分

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The cartilage extracellular matrix is essential for endochondral bone development and joint function. In addition to the major aggrecan/collagen II framework, the interacting complex of collagen IX, matrilin-3, and cartilage oligomeric matrix protein (COMP) is essential for cartilage matrix stability, as mutations in Col9a1, Col9a2, Col9a3, Comp, and Matn3 genes cause multiple epiphyseal dysplasia, in which patients develop early onset osteoarthritis. In mice, collagen IX ablation results in severely disturbed growth plate organization, hypocellular regions, and abnormal chondrocyte shape. This abnormal differentiation is likely to involve altered cell-matrix interactions but the mechanism is not known. To investigate the molecular basis of the collagen IX null phenotype we analyzed global differences in protein abundance between wild-type and knock-out femoral head cartilage by capillary HPLC tandem mass spectrometry. We identified 297 proteins in 3-day cartilage and 397 proteins in 21-day cartilage. Components that were differentially abundant between wild-type and collagen IX-deficient cartilage included 15 extracellular matrix proteins. Collagen IX ablation was associated with dramatically reduced COMP and matrilin-3, consistent with known interactions. Matrilin-1, matrilin-4, epiphycan, and thrombospondin-4 levels were reduced in collagen IX null cartilage, providing the first in vivo evidence for these proteins belonging to the collagen IX interactome. Thrombospondin-4 expression was reduced at the mRNA level, whereas matrilin-4 was verified as a novel collagen IX-binding protein. Furthermore, changes in TGFβ-induced protein βig-h3 and fibronectin abundance were found in the collagen IX knock-out but not associated with COMP ablation, indicating specific involvement in the abnormal collagen IX null cartilage. In addition, the more widespread expression of collagen XII in the collagen IX-deficient cartilage suggests an attempted compensatory response to the absence of collagen IX. Our differential proteomic analysis of cartilage is a novel approach to identify candidate matrix protein interactions in vivo, underpinning further analysis of mutant cartilage lacking other matrix components or harboring disease-causing mutations.
机译:软骨细胞外基质对于子宫内骨开发和关节功能至关重要。除了主要的聚糖/胶原II框架之外,胶原IX,matrilin-3和软骨寡聚基蛋白(COMP)的相互作用络合物对于软骨基质稳定性是必不可少的,如Col9a1,col9a2,col9a3,comp和matn3中的突变基因导致多种骨骺发育不良,其中患者发展早期发病骨关节炎。在小鼠中,胶原蛋白的渗透导致生长板组织,短细胞区域和异常的软骨细胞形状。这种异常分化可能涉及改变的细胞矩阵相互作用,但是该机制是未知的。为了探讨胶原蛋白IX无效表型的分子基础,我们通过毛细管HPLC串联质谱法分析了野生型和敲除股骨头软骨之间的蛋白质丰富的全局差异。我们在3天软骨中鉴定了297个蛋白质和397例蛋白在21天软骨。在野生型和胶原蛋白IX缺乏软骨之间差异丰富的组分包括15个细胞外基质蛋白。胶原蛋白IX消融与显着减少的Comp和Matrilin-3有关,与已知的相互作用一致。胶原IX含氟松软软骨减少了基质素-1,母蛋白-4,副磷酸,β-4水平,为属于胶原蛋白IX蛋白酶的这些蛋白质提供第一个体内证据。在mRNA水平下降低了血栓样蛋白-4表达,而Matrilin-4被验证为新型胶原IX结合蛋白。此外,在胶原IX敲除,但没有与Comp Comperation相关的胶原IX敲除,表明特异性胶原蛋白IX零软骨的特异性涉及特异性蛋白βIG-H3和纤连蛋白丰度的变化。此外,胶原蛋白XII在胶原蛋白IX缺乏的软骨中的更广泛表达表明对没有胶原蛋白IX的不存在的试图补偿反应。我们对软骨的差异蛋白质组学分析是鉴定体内候选基质蛋白相互作用的新方法,进一步分析缺乏其他基质组分或携带疾病引起的抗病突变的突变软骨。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号