Conformational polymorphism, stability and aggregation in spider dragline silk proteins

Spider silk is spun in a complex and unique process, thought to depend on a hydriphobic conversion of a predominantly disordered to a β-sheet rich protein structures. To test this hypothesis we monitored the effect of cationic (DOTAC) and anionic (alkyl sulfate) detergents and of (ii) solvent polari...

全面介绍

书目详细资料
Main Authors: Dicko, C, Knight, D, Kenney, J, Vollrath, F
格式: Journal article
语言:English
出版: Elsevier 2005
主题:
实物特征
总结:Spider silk is spun in a complex and unique process, thought to depend on a hydriphobic conversion of a predominantly disordered to a β-sheet rich protein structures. To test this hypothesis we monitored the effect of cationic (DOTAC) and anionic (alkyl sulfate) detergents and of (ii) solvent polarity using a series of alcohols on the secondary structure transition in dilute solutions of native spidroin. Our results showed that the detergents hydrophilic head charge and hydrophobic tail length cooperatively induced either a transition to the β-sheet rich form or a stable helical state. Changing the solvent polarity showed that HFIP and TFE induced formation of stable helical forms whereas MeOH, EtOH and IsoP induced a kinetically driven formulation of β-sheet rich structure.