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SPARC 的分子进化:酸性模块缺失和在星状海葵 Nematostella vectensis 内胚层中的表达。

Molecular evolution of SPARC: absence of the acidic module and expression in the endoderm of the starlet sea anemone, Nematostella vectensis.

机构信息

Laboratory of Tissue Repair and Regeneration, Matrix Dynamics Group, University of Toronto, 150 College Street, Toronto, ON, Canada.

出版信息

Dev Genes Evol. 2009 Oct;219(9-10):509-21. doi: 10.1007/s00427-009-0313-9. Epub 2009 Dec 31.

Abstract

The matricellular glycoprotein SPARC is composed of three functional domains that are evolutionarily conserved in organisms ranging from nematodes to mammals: a Ca(2+)-binding glutamic acid-rich acidic domain at the N-terminus (domain I), a follistatin-like module (domain II), and an extracellular Ca(2+)-binding (EC) module that contains two EF-hands and two collagen-binding epitopes (domain III). We report that four SPARC orthologs (designated nvSPARC1-4) are expressed by the genome of the starlet anemone Nematostella vectensis, a diploblastic basal cnidarian composed of an ectoderm and endoderm separated by collagen-based mesoglea. We also report that domain I is absent from all N. vectensis SPARC orthologs. In situ hybridization data indicate that N. vectensis SPARC mRNAs are restricted to the endoderm during post-gastrula development. The absence of the Ca(2+)-binding N-terminal domain in cnidarians and conservation of collagen-binding epitopes suggests that SPARC first evolved as a collagen-binding matricellular glycoprotein, an interaction likely to be dependent on the binding of Ca(2+)-ions to the two EF-hands in the EC domain. We propose that further Ca(2+)-dependent activities emerged with the acquisition of an acidic N-terminal module in triplobastic organisms.

摘要

基质细胞糖蛋白 SPARC 由三个功能结构域组成,这三个结构域在从线虫到哺乳动物的生物体中是进化保守的:N 端富含 Ca2+结合谷氨酸的酸性结构域(结构域 I)、卵泡抑素样结构域(结构域 II)和含有两个 EF 手和两个胶原结合表位的细胞外 Ca2+结合(EC)结构域(结构域 III)。我们报告说,星状海葵 Nematostella vectensis 的基因组表达了四个 SPARC 同源物(命名为 nvSPARC1-4),这是一种由外胚层和内胚层组成的二胚层基腔肠动物,由基于胶原的间质将两者隔开。我们还报告说,所有 N. vectensis SPARC 同源物均缺乏结构域 I。原位杂交数据表明,N. vectensis SPARC mRNAs 在原肠胚后发育过程中仅局限于内胚层。在刺胞动物中缺乏 Ca2+结合的 N 端结构域和保守的胶原结合表位表明,SPARC 最初是作为一种胶原结合的基质细胞糖蛋白进化而来的,这种相互作用可能依赖于 Ca2+离子与 EC 结构域中的两个 EF 手的结合。我们提出,在三胚层生物中获得酸性 N 端模块后,出现了进一步的 Ca2+依赖性活性。

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