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Dynamics of skeleton formation in the Lake Baikal sponge Lubomirskia baicalensis. Part Ⅱ. Molecular biological studies

机译:贝加尔湖海绵Lubomirskia baicalensis的骨架形成动力学。第二部分。分子生物学研究

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In a preceding study it has been reported that the freshwater sponge Lubomirskia baicalensis, living in Lake Baikal (East Siberia), is composed of spicules forming a characteristic pattern which follows radiate accretive growth. Here we report that the spicules are synthesized by the enzyme silicatein, a protein which is related to cathepsin L. The cDNAs for silicatein and the related cathepsin L were isolated and used as probes to show that the mRNA levels of silicatein in the bases of the spicule skeleton of the animals are low, while the mRNA level of cathepsin L in this region exceeds that of the growing zone. This is the first comprehensive study on the importance of the axial filament/silicatein as an essential structural and functional component determining the growth and stability of demosponge spicules.
机译:在先前的研究中,已有报道说,生活在贝加尔湖(西伯利亚东部)的淡水海绵Lubomirskia baicalensis由针尖组成,这些针尖形成随辐射增生而变化的特征性模式。在这里我们报告说,这些针状体是由一种与组织蛋白酶L相关的蛋白硅酸盐酶合成的。分离出了硅酸盐蛋白和相关组织蛋白酶L的cDNA,并将其用作探针,以显示该酶的碱基中硅酸盐的mRNA水平。动物的针状骨骨架低,而该区域中组织蛋白酶L的mRNA水平超过了生长区。这是关于轴向长丝/硅酸盐作为决定脱骨海绵针生长和稳定性的必要结构和功能成分的重要性的首次综合研究。

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