Molecular architecture and engineering of spider dragline silk protein  

Molecular architecture and engineering of spider dragline silk protein

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作  者:ZHANG Hengmu LIU Jinyuan 

机构地区:[1]Department of Biological Sciences and Biotechnology, Tsinghua University, Beijing 100084, China

出  处:《Progress in Natural Science:Materials International》2005年第9期769-776,共8页自然科学进展·国际材料(英文版)

基  金:SupportedbytheNationalHighTechnologyResearchandDevelopmentProgramofChina(GrantNos.2002AA212051,2002AA206007and2004AA222100)andtheNationalBasicResearchandDevelopmentProgram(GrantNo.2004CB117300)

摘  要:Spider dragline silk, which is produced in spider major ampullate gland, is a composite proteinacious fiber with highly repetitive Ala-Gly-rich domain. The unique combination of both high tensile strength and high elasticity makes spider dragline silk superior to almost any other natural or synthetic fibers. Cloning of the genes reveals that the silk is composed of at least two major proteins. Each protein component contains multiple repeats of modular structures that alternate between Ala-rich domains and Gly-rich domains. Molecular engineering not only opens a door to the production of spidroins but also provides a valuable experimental system to test and further establish the relationship between modular structures and mechanical properties. Here, based on our own studies, we review the latest progress of the modular structure and genetic engineering and outline the future prospects.Spider dragline silk, which is produced in spider major ampullate gland, is a composite proteinacious fiber with highly repetitive Ala-Gly-rich domain. The unique combination of both high tensile strength and high elasticity makes spider dragline silk superior to almost any other natural or synthetic fibers. Cloning of the genes reveals that the silk is composed of at least two major proteins. Each protein component contains multiple repeats of modular structures that alternate between Ala-rich domains and Gly-rich domains. Molecular engineering not only opens a door to the production of spidroins but also provides a valuable experimental system to test and further establish the relationship between modular structures and mechanical properties. Here, based on our own studies, we review the latest progress of the modular structure and genetic engineering and outline the future prospects.

关 键 词:SPIDER dragline silk protein modular structure molecular engineering. 

分 类 号:Q74[生物学—分子生物学]

 

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