Quantifying the fraction of alanine residues in an -helical conformation in hornet silk using solid-state NMR
نویسنده
چکیده
Here, we demonstrate the first successful isotope labeling of Ala carbons in hornet silk produced by the larvae of Vespa (Vespinae, Vespidae) mandarinia. This labeled hornet silk was examined by high-resolution 13C solid-state NMR, and it was found that the fraction of Ala residues in a-helical conformations compared with Ala residues in the overall conformation of hornet silk can be quantitatively determined from Ala Ca NMR peaks. The value for this a-helical Ala fraction is close to that of the fraction of Ala residues in coiled-coil structures estimated in the four major hornet silk proteins by coiled-coil prediction analysis. This result indicates that most of the Ala residues in a-helices occur in those a-helices with a coiled-coil structure, and that the number of Ala residues in a-helices without a coiled-coil structure is small. Moreover, coiled-coil prediction analysis indicated that the potential coiled-coil domains are located only in the central portion of the protein chains of the major hornet silk proteins. From these results, we confirmed that the a-helical conformation mostly forms in the central portion of the hornet silk chains, whereas the ends of the protein chains are nearly devoid of a-helical structure. We deduce that the ends of the protein chains would preferentially adopt a b-sheet conformation. Polymer Journal (2012) 44, 876–881; doi:10.1038/pj.2012.93; published online 23 May 2012
منابع مشابه
Film formation and structural characterization of silk of the hornet Vespa simillima xanthoptera Cameron.
We extracted silk produced by the larva of the hornet Vespa simillima xanthoptera Cameron from its nest. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) analysis of the extracted hornet silk showed four major components with molecular weights between 35 and 60 kDa. The main amino acid components of the hornet silk protein were Ala (33.5%), Ser (16.9%), Asp (8.5%) and Glu (8...
متن کاملThe molecular structure of spider dragline silk: folding and orientation of the protein backbone.
The design principles of spider dragline silk, nature's high-performance fiber, are still largely unknown, in particular for the noncrystalline glycine-rich domains, which form the bulk of the material. Here we apply two-dimensional solid-state NMR to determine the distribution of the backbone torsion angles (phi,psi) as well as the orientation of the polypeptide backbone toward the fiber at bo...
متن کاملAn experimental and theoretical investigation of the chemical shielding tensors of (13)C(alpha) of alanine, valine, and leucine residues in solid peptides and in proteins in solution.
We have carried out a solid-state magic-angle sample-spinning (MAS) nuclear magnetic resonance (NMR) spectroscopic investigation of the (13)C(alpha) chemical shielding tensors of alanine, valine, and leucine residues in a series of crystalline peptides of known structure. For alanine and leucine, which are not branched at the beta-carbon, the experimental chemical shift anisotropy (CSA) spans (...
متن کاملOrientational order of Australian spider silks as determined by solid-state NMR.
A simple solid-state NMR method was used to study the structure of (13)C- and (15)N-enriched silk from two Australian orb-web spider species, Nephila edulis and Argiope keyserlingi. Carbon-13 and (15)N spectra from alanine- or glycine-labeled oriented dragline silks were acquired with the fiber axis aligned parallel or perpendicular to the magnetic field. The fraction of oriented component was ...
متن کاملA two-dimensional spin-diffusion NMR study on the local structure of a water-soluble model peptide for Nephila clavipes dragline silk (MaSp1) before and after spinning
INTRODUCTION The dragline silk of the golden orb web spider Nephila clavipes has received significant attention because of its remarkable mechanical properties, which include toughness and high tensile strength.1,2 This silk contains two structural proteins designated as major ampullate spidroin 1 (MaSp1) and major ampullate spidroin 2 (MaSp2).3,4 The dominant MaSp1 can be described as AB block...
متن کامل