Engineered disulfides improve mechanical properties of recombinant spider silk

被引:39
作者
Grip, S. [1 ,2 ]
Johansson, J. [1 ]
Hedhammar, M. [1 ]
机构
[1] Swedish Univ Agr Sci, Ctr Biomed, Dept Anat Physiol & Biochem, S-75123 Uppsala, Sweden
[2] Swedish Univ Agr Sci, Dept Biomed Sci & Vet Publ Hlth, S-75007 Uppsala, Sweden
关键词
dragline silk; major ampullate spidroin; site-directed mutagenesis; disulfide bond; CONSERVED C-TERMINI; TENSILE DEFORMATION; DRAGLINE SILK; KINETIC-MODEL; CROSS-LINKING; PROTEIN; FIBERS; VARIABILITY; POLYMERS; FIBROIN;
D O I
10.1002/pro.111
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nature's high-performance polymer, spider silk, is composed of specific proteins, spidroins, which form solid fibers. So far, fibers made from recombinant spidroins have failed in replicating the extraordinary mechanical properties of the native material. A recombinant miniature spidroin consisting of four poly-Ala/Gly-rich tandem repeats and a nonrepetitive C-terminal domain (4RepCT) can be isolated in physiological buffers and undergoes self assembly into macrofibers. Herein, we have made a first attempt to improve the mechanical properties of 4RepCT fibers by selective introduction of AA -> CC mutations and by letting the fibers form under physiologically relevant redox conditions. Introduction of AA -> CC mutations in the first poly-Ala block in the miniature spidroin increases the stiffness and tensile strength without changes in ability to form fibers, or in fiber morphology. These improved mechanical properties correlate with degree of disulfide formation. AA -> CC mutations in the forth poly-Ala block, however, lead to premature aggregation of the protein, possibly due to disulfide bonding with a conserved Cys in the C-terminal domain. Replacement of this Cys with a Ser, lowers thermal stability but does not interfere with dimerization, fiber morphology or tensile strength. These results show that mutagenesis of 4RepCT can reveal spidroin structure-activity relationships and generate recombinant fibers with improved mechanical properties.
引用
收藏
页码:1012 / 1022
页数:11
相关论文
共 65 条
[1]   Spider silk fibres in artificial nerve constructs promote peripheral nerve regeneration [J].
Allmeling, C. ;
Jokuszies, A. ;
Reimers, K. ;
Kall, S. ;
Choi, C. Y. ;
Brandes, G. ;
Kasper, C. ;
Scheper, T. ;
Guggenheim, M. ;
Vogt, P. M. .
CELL PROLIFERATION, 2008, 41 (03) :408-420
[2]   Use of spider silk fibres as an innovative material in a biocompatible artificial nerve conduit [J].
Allmeling, Christina ;
Jokuszies, Andreas ;
Reimers, Kerstin ;
Kall, Susanne ;
Vogt, Peter M. .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2006, 10 (03) :770-777
[3]   CROSS-LINKS IN RESILIN IDENTIFIED AS DITYROSINE + TRITYROSINE [J].
ANDERSEN, SO .
BIOCHIMICA ET BIOPHYSICA ACTA, 1964, 93 (01) :213-&
[4]   Regional differences in degree of resilin cross-linking in the desert locust, Schistocerca gregaria [J].
Andersen, SO .
INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2004, 34 (05) :459-466
[5]   Aqueous processing and fiber spinning of recombinant spider silks [J].
Arcidiacono, S ;
Mello, CM ;
Butler, M ;
Welsh, E ;
Soares, JW ;
Allen, A ;
Ziegler, D ;
Laue, T ;
Chase, S .
MACROMOLECULES, 2002, 35 (04) :1262-1266
[6]   Blueprint for a High-Performance Biomaterial: Full-Length Spider Dragline Silk Genes [J].
Ayoub, Nadia A. ;
Garb, Jessica E. ;
Tinghitella, Robin M. ;
Collin, Matthew A. ;
Hayashi, Cheryl Y. .
PLOS ONE, 2007, 2 (06)
[7]   Polarized light microscopy, variability in spider silk diameters, and the mechanical characterization of spider silk [J].
Blackledge, TA ;
Cardullo, RA ;
Hayashi, CY .
INVERTEBRATE BIOLOGY, 2005, 124 (02) :165-173
[8]  
BOGUSH VG, 2008, J NEUROIMMUNE PHARM, P17
[9]   Properties of synthetic spider silk fibers based on Argiope aurantia MaSp2 [J].
Brooks, Amanda E. ;
Stricker, Shane M. ;
Joshi, Sangeeta B. ;
Kamerzell, Timothy J. ;
Middaugh, C. Russell ;
Lewis, Randolph V. .
BIOMACROMOLECULES, 2008, 9 (06) :1506-1510
[10]   Oriented nucleation of hydroxylapatite crystals on spider dragline silks [J].
Cao, Binrui ;
Mao, Chuanbin .
LANGMUIR, 2007, 23 (21) :10701-10705