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骨针形成和非骨针形成的太平洋海绵中的硅蛋白基因。

Silicatein genes in spicule-forming and nonspicule-forming Pacific demosponges.

机构信息

Pacific Institute of Bioorganic Chemistry, Far East Branch of Russian Academy of Sciences, Vladivostok, Russia.

出版信息

Mar Biotechnol (NY). 2010 Aug;12(4):403-9. doi: 10.1007/s10126-009-9225-y. Epub 2009 Oct 8.

Abstract

Silicatein genes are known to be involved in siliceous spicule formation in marine sponges. Proteins encoded by these genes, silicateins, were recently proposed for nanobiotechnological applications. We studied silicatein genes of marine sponges Latrunculia oparinae collected in the west Pacific region, shelf of Kuril Islands. Five silicatein genes, LoSilA1, LoSilA1a, LoSilA2, and LoSilA3 (silicatein-alpha group), LoSilB (silicatein-beta group), and one cathepsin gene, LoCath, were isolated from the sponge L. oparinae for the first time. The deduced amino acid sequence of L. oparinae silicateins showed high-sequence identity with silicateins described previously. LoCath contains the catalytic triad of amino acid residues Cys-His-Asn characteristic for cathepsins as well as motifs typical for silicateins. A phylogenetic analysis places LoCath between sponge silicateins-beta and L-cathepsins suggesting that the LoCath gene represents an intermediate form between silicatein and cathepsin genes. Additionally, we identified, for the first time, silicatein genes (AcSilA and AcSilB) in nonspicule-forming marine sponge, Acsmall a, Cyrillicnthodendrilla sp. The results suggest that silicateins could participate also in the function(s) unrelated to spiculogenesis.

摘要

已知硅酸基因参与海洋海绵中硅质骨针的形成。这些基因编码的蛋白质,硅酸,最近被提议用于纳米生物技术应用。我们研究了在西太平洋千岛群岛大陆架收集的海洋海绵 Latrunculia oparinae 的硅酸基因。首次从海绵 L. oparinae 中分离出 5 个硅酸基因,LoSilA1、LoSilA1a、LoSilA2、LoSilA3(硅酸-α 组)、LoSilB(硅酸-β 组)和 1 个组织蛋白酶基因 LoCath。L. oparinae 硅酸的推导氨基酸序列与先前描述的硅酸具有高度的序列同一性。LoCath 包含天冬氨酸-组氨酸-丝氨酸作为组织蛋白酶特征的催化三联体以及典型的硅酸特征基序。系统发育分析将 LoCath 置于海绵硅酸-β 和 L-组织蛋白酶之间,表明 LoCath 基因代表硅酸和组织蛋白酶基因之间的中间形式。此外,我们首次在非骨针形成的海洋海绵 Cyrillicnthodendrilla sp. 中鉴定出硅酸基因(AcSilA 和 AcSilB)。结果表明,硅酸也可能参与与骨针发生无关的功能。

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