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动物中类 Astacin 金属蛋白酶的进化及其在发育中的功能。

Evolution of astacin-like metalloproteases in animals and their function in development.

作者信息

Möhrlen Frank, Maniura Melanie, Plickert Günter, Frohme Marcus, Frank Uri

机构信息

Department of Zoology and Martin Ryan Marine Science Institute, National University of Ireland, Galway, Ireland.

出版信息

Evol Dev. 2006 Mar-Apr;8(2):223-31. doi: 10.1111/j.1525-142X.2006.00092.x.

Abstract

Astacin-like metalloproteases are ubiquitous in the animal kingdom but their phylogenetic relationships and ancient functions within the Metazoa are unclear. We have cloned and characterized four astacin-like cDNAs from the marine hydroid Hydractinia echinata and performed a database search for related genes in the draft genome sequence of the sea anemone Nematostella vectensis. These sequences and those of higher animals' astacins were subjected to phylogenetic analysis revealing five clusters within the Eumetazoa. The bone morphogenetic protein-1/tolloid-like astacins were represented in all eumetazoan phyla studied. The meprins were only found in vertebrates and cnidarians. Two clusters were taxon-specific, and one cluster represented astacins, which probably evolved after the split of the Cnidaria. Interestingly, grouping of astacins according to the protease catalytic domain alone resulted in clusters of proteins with similar overall domain architecture. The Hydractinia astacins were expressed in distinct cells during metamorphosis and some also during wound healing. Previously characterized cnidarian astacins also act during development. Based on our phylogeny, however, we propose that the developmental function of most of them is not homologous to the developmental function assigned to higher animals' astacins.

摘要

类虾红素金属蛋白酶在动物界广泛存在,但它们在后生动物中的系统发育关系和古老功能尚不清楚。我们从海洋水螅虫海葵克隆并鉴定了四个类虾红素cDNA,并在海葵星状海葵的基因组序列草图中对相关基因进行了数据库搜索。将这些序列与高等动物的虾红素序列进行系统发育分析,结果显示真后生动物中有五个聚类。骨形态发生蛋白-1/类原肠胚蛋白样虾红素在所有研究的真后生动物门中都有代表。膜金属蛋白酶仅在脊椎动物和刺胞动物中发现。两个聚类是特定分类群的,一个聚类代表虾红素,它可能在刺胞动物分化后进化而来。有趣的是,仅根据蛋白酶催化结构域对虾红素进行分组,会导致具有相似总体结构域架构的蛋白质聚类。海葵虾红素在变态过程中的不同细胞中表达,有些在伤口愈合过程中也有表达。先前鉴定的刺胞动物虾红素在发育过程中也起作用。然而,根据我们的系统发育分析,我们认为它们中的大多数发育功能与赋予高等动物虾红素的发育功能不同源。

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