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海绵硅蛋白研究进展 被引量:1

Progress in silicatein from sponges
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摘要 海绵是生物进化过程中最古老的多细胞动物,其中大部分能够利用二氧化硅在常温水环境下合成形状、大小和结构极为丰富的硅质骨骼。随着近年来人们发现其骨骼的基本组成单位骨针具有优异的光导性能和机械性能,海绵生物硅化过程及仿生纳米和微米硅质生物材料合成的研究成为生物技术和材料科学的热点。在海绵生物硅化过程中,一类被称为硅蛋白(Silicatein)的蛋白质表现出了特殊的催化活性,也因此得到了生物学家、化学家和材料学家的关注。以下将对硅蛋白的国际研究现状进行了评述,以期促进国内相关领域的研究。 Sponges (Porifera) are the oldest living metazoan in the world,among which most of them (Demospongia) can produce silicic skeleton from orthosilicic acid in the seawater under the natural environmental conditions.These biosilicic materials exhibit good mechanical and optical properties as well as good biocompatibility.During the biosilicification process of sponges,a protein,named as silicatein,plays an important role and has attracted great attention from biologist,chemists and material scientists.This mini review highlights the discovery of silicateins and its function as both an enzymatic catalyst and an organic template for biosilicification. The studies since 1999 were briefly introduced on the application of silicatein as a biocatalyst and template for synthesis of silica-based and other inorganic materials. It is expected to stimulate the interests in the related researches in China.
出处 《生物工程学报》 CAS CSCD 北大核心 2009年第12期1882-1886,共5页 Chinese Journal of Biotechnology
基金 国家高技术研究发展计划(863计划)(No.2006AA09Z435)资助~~
关键词 海绵硅质骨针 硅蛋白 生物硅化 生物硅质材料 spicule silicatein biosilicification biosilic material
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  • 1Brummer F. Living inside a glass box--silica in diatoms//Mtiller E, ed. Silicon Biomineralization (33). Berlin: Springer, 2003: 3-10.
  • 2Martin-Jezequel V, Lopez PJ. Silicon--a central metabolite for diatom growth and morphogenesis//Muller E, ed. Silicon Biomineralization (33). Berlin: Springer, 2003: 99-124.
  • 3Lee J J, Leedale GF, Bradbury P. An Illustrated Guide to the Protozoa. 2nd ed. Lawrence: Society of Protozoologists, 2000: 1-1432.
  • 4Simpson TL, Volcani BE. Silicon and Siliceous Structures in Biological Systems. New York: Springer, 1981.
  • 5Maldonado M, Carmona C, Velasquez Z, et al. Siliceous sponges as a silicon sink: an overlooked aspect of benthopelagic coupling in the marine silicon cycle. Limnol Oceanogr, 2005, 50(3): 799-809.
  • 6Brutchey RL, Morse DE. Silicatein and the translation of its molecular mechanism of biosilicification into low temperature nanomaterial synthesis. Chem Rew, 2008, 108 (11): 4915-4934.
  • 7Zaremba CM, Stucky GD. Biosilicates and biomimetic silicate synthesis. Curr Opin Solid St M, 1996, 1(3): 425-429.
  • 8Cattaneo-Vietti R, Bavestrello G, Cerrano C, et al. Optical fibers in an antarctic sponge. Nature, 1996, 383(6599): 397-398.
  • 9Sarikaya M, Fong H, Sopp JM, et al. Biomimetics: nanomechanical design of materials through biology. 15th ASCE Engineering Mechanics Conference, 2002.
  • 10Uriz MJ, Turon X, Becerro MA, et al. Siliceous spicules and skeleton frameworks in sponges: origin, diversity, ultrastructural patterns, and biological functions. Microsc Res Tech, 2003, 62(4): 279-299.

二级参考文献36

  • 1杜家纬.生命科学与仿生学[J].生命科学,2004,16(5):317-323. 被引量:15
  • 2曲翊,张卫,李华,虞星炬,金美芳.Cultivation of marine sponges[J].Chinese Journal of Oceanology and Limnology,2005,23(2):194-198. 被引量:3
  • 3Kisailus D, Truong Q, Amemiya Y, et al. Self-assembled bifunctional surface mimics an enzymatic and templating protein for the synthesis of a metal oxide semiconductor[ J ]. Proceedings of the National Academy of Sciences of the United States of America,2006, 103(15) : 5 652-5 657.
  • 4Cha J N, Stueky G D, Morse D E, et al. Biomimetic synthesis of ordered silica structures mediated by block eopolypeptides [ J ].Nature, 2000, 403 : 289-292.
  • 5Krasko A, Lorenz B, Batel R, et al. Expression of silicatein and collagen genes in the marine sponge Suberites domuncula is controlled by silicate and myotrophin [ J ]. European Journal of Biochemistry, 2000, 267:4 878-4887.
  • 6Krasko A, Sehr der H C, Batel R, et al, Iron induces proliferation and morphogenesis in primmorphs from the marine sponge Suberites domuncula[ J], DNA and Cell Biology, 2002, 21 ( 1 ) :67 -80.
  • 7Uriz M J, Turon X, Becerro M A. Silica deposition in Demosponges: Spiculogenesis in Crambe erambe[ J]. Cell and Tissue Research, 2000, 301: 299-309.
  • 8李锦和.中国海域污着生物中的海绵[J].海洋科学集刊,1986,26:73-116.
  • 9Xue Song, ZhangHaitao, Wu Peichun, et al. Study on bioaetivity of extracts from marine sponges in Chinese sea[J]. Jonrnal of Experimental Marine Biology and Ecology, 2004, 298: 71-78.
  • 10Zhang Wei, Xue Song, Zhao Quanyu, et al. Biopotentials of marine sponges from China oceans: Past and future[ J ]. Biomolecular Engineering, 2003, 20: 413-419.

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