首页> 外文期刊>Brain research >Differential mRNA expression of the related extracellular matrix glycoproteins SC1 and SPARC in the rat embryonic nervous system and skeletal structure.
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Differential mRNA expression of the related extracellular matrix glycoproteins SC1 and SPARC in the rat embryonic nervous system and skeletal structure.

机译:大鼠胚胎神经系统和骨骼结构中相关细胞外基质糖蛋白SC1和SPARC的差异mRNA表达。

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摘要

SPARC is a multifunctional extracellular matrix glycoprotein that shares partial sequence homology with SC1. These extracellular matrix molecules are thought to play important roles in modulating cellular interactions. In vitro, SPARC has been shown to exhibit anti-adhesive activity. In the present investigation, in situ hybridization is used to compare the expression patterns of SC1 and SPARC mRNA in the rat embryo. Results show that SC1 and SPARC expression is spatially and temporally regulated. SC1 mRNA is strongly expressed in the embryonic brain and spinal cord, whereas SPARC mRNA is enriched in craniofacial cartilage and skeletal structures. This differential expression pattern in the rat embryo suggests that SC1 plays an important role in the developing nervous system, whereas SPARC participates primarily in events associated with skeletal development. However at embryonic day 17, SC1 and SPARC mRNA show parallel expression patterns in areas of the cerebellum undergoing cell migratory events.
机译:SPARC是一种多功能的细胞外基质糖蛋白,与SC1具有部分序列同源性。这些细胞外基质分子被认为在调节细胞相互作用中起重要作用。在体外,SPARC已显示出抗粘连活性。在本研究中,使用原位杂交来比较SC1和SPARC mRNA在大鼠胚胎中的表达模式。结果表明,SC1和SPARC的表达受到时空调节。 SC1 mRNA在胚胎脑和脊髓中强烈表达,而SPARC mRNA在颅面软骨和骨骼结构中富集。大鼠胚胎中的这种差异表达模式表明,SC1在发育中的神经系统中起重要作用,而SPARC主要参与与骨骼发育相关的事件。但是,在胚胎第17天,SC1和SPARC mRNA在经历细胞迁移事件的小脑区域显示出平行表达模式。

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