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后生动物身体结构演化的分子基础:海洋海绵纲动物中细胞外基质介导的形态发生

The molecular basis for the evolution of the metazoan bodyplan: extracellular matrix-mediated morphogenesis in marine demosponges.

作者信息

Wiens Matthias, Mangoni Alfonso, D'Esposito Monica, Fattorusso Ernesto, Korchagina Natalia, Schröder Heinz C, Grebenjuk Vladislav A, Krasko Anatoli, Batel Renato, Müller Isabel M, Müller Werner E G

机构信息

Institut für Physiologische Chemie, Abteilung Angewandte Molekularbiologie, Universität, Duesbergweg 6, D-55099 Mainz, Germany.

出版信息

J Mol Evol. 2003;57 Suppl 1:S60-75. doi: 10.1007/s00239-003-0008-1.

Abstract

Molecular data on development/differentiation and on comparative genomics allow insights into the genetic basis of the evolution of a bodyplan. Sponges (phylum Porifera) are animals that are the (still extant) stem group with the hypothetical Urmetazoa as the earliest common ancestor of all metazoans; they possess the basic features of the characteristic metazoan bodyplan also valid for the animals of the crown taxa. Here we describe three homeobox genes from the demosponge Suberites domuncula whose deduced proteins (HOXa1_SUBDO, HOXb1_SUBDO, HOXc1_SUBDO) are to be grouped with the Antennapedia class of homeoproteins (subclasses TIx-Hox11 and NK-2). In addition, a cDNA encoding a LIM/homeobox protein has been isolated which comprises high sequence similarity to the related LIM homeodomain (HD) proteins in its LIM as well as in its HD domains. To elucidate the potential function of these proteins in the sponge a new in vitro system was developed. Primmorphs which are formed from dissociated cells were grown on a homologous galectin matrix. This galectin cDNA was cloned and the recombinant protein was used for the preparation of the matrix. The galectin/polylysine matrix induced in primmorphs the formation of channels, one major morphogenetic process in sponges. Under such conditions the expression of the gene encoding the LIM/homeobox protein is strongly upregulated, while the expression of the other homeobox genes remains unchanged or is even downregulated. Competition experiments with galactosylceramides isolated from S. domuncula were performed. They revealed that a beta-galactosylceramide, named Sdgal-1, prevented the expression of the LIM gene on the galectin matrix, while Sdgal-2, a diglycosylceramide having a terminal alpha-glycosidically linked galactose, caused no effect on the formation of channels in primmorphs or on LIM expression. This study demonstrates for the first time that an extracellular matrix molecule, galectin, induces a morphogenetic process in sponges which is very likely caused by a LIM/homeobox protein. Furthermore, a new model is introduced (galectin-caused channel formation in sponge primmorphs) to investigate basic pathways, thus allowing new insights into the functional molecular evolution of Metazoa.

摘要

关于发育/分化以及比较基因组学的分子数据,有助于深入了解身体结构进化的遗传基础。海绵动物(多孔动物门)是动物界中现存的干群,其假想的原后生动物是所有后生动物最早的共同祖先;它们拥有特征性后生动物身体结构的基本特征,这一特征同样适用于冠群分类中的动物。在此,我们描述了来自寻常海绵纲的Suberites domuncula的三个同源异型框基因,其推导的蛋白质(HOXa1_SUBDO、HOXb1_SUBDO、HOXc1_SUBDO)应归类于同源异型蛋白的触角足蛋白类(TIx - Hox11和NK - 2亚类)。此外,还分离出了一个编码LIM/同源异型框蛋白的cDNA,该蛋白在其LIM结构域和同源异型结构域与相关的LIM同源结构域(HD)蛋白具有高度序列相似性。为阐明这些蛋白在海绵中的潜在功能,开发了一种新的体外系统。由解离细胞形成的原肠胚在同源半乳糖凝集素基质上生长。该半乳糖凝集素cDNA被克隆,其重组蛋白用于制备基质。半乳糖凝集素/聚赖氨酸基质在原肠胚中诱导通道形成,这是海绵中的一个主要形态发生过程。在这种条件下,编码LIM/同源异型框蛋白的基因表达强烈上调,而其他同源异型框基因的表达保持不变或甚至下调。进行了从Suberites domuncula分离的半乳糖神经酰胺的竞争实验。结果表明,一种名为Sdgal - 1的β - 半乳糖神经酰胺可阻止LIM基因在半乳糖凝集素基质上的表达,而Sdgal - 2,一种具有末端α - 糖苷键连接的半乳糖的二糖神经酰胺,对原肠胚中通道的形成或LIM表达没有影响。这项研究首次证明,一种细胞外基质分子——半乳糖凝集素,可在海绵中诱导一种形态发生过程,这很可能是由一种LIM/同源异型框蛋白引起的。此外,还引入了一个新模型(海绵原肠胚中半乳糖凝集素引起的通道形成)来研究基本途径,从而为后生动物的功能分子进化提供新的见解。

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