2 research outputs found

    Disulfide bonds versus Trp路路路Trp pairs in irregular 尾-hairpins: NMR structure of vammin loop 3-derived peptides as a case study

    No full text
    9 pages, 6 figures, 1 table.-- PMID: 19294654 [PubMed].-- Supporting information (Suppl. figs SF1-SF2, tabs ST1-ST2) available at: http://www3.interscience.wiley.com/cgi-bin/fulltext/122264837/sm001.pdf?PLACEBO=IE.pdfWhere a noncovalent interaction is better than a covalent bond: The most stabilising cross-strand pairs were incorporated into an irregular 尾-hairpin, loop 3 of vammin. 1H and 13C NMR conformational analyses of these designed peptides indicated that an edge-to-face Trp路路路Trp interaction leads to a 尾-hairpin that is more stable than a disulfide bond.Structural studies on model peptides have led to a good understanding of the rules behind the formation and stability of regular 尾-hairpins. To test their applicability to the successful design of irregular 尾-hairpins with long loops and/or 尾-bulges at the strands, we mimicked loop 3 of vammin, a 4:6 尾-hairpin with a non-Gly 尾-bulge. The most stabilising cross-strand pairs, disulfide bonds or/and Trp路路路Trp pairs, were incorporated at non-hydrogen-bonded sites in peptides spanning the 69-80 region of vammin. According to NMR data, these modified peptides adopt 尾-hairpin conformations as intended by design. The Trp-containing peptides reproduce even the unusual positive 蠁 angle for the Gln residue, with the indole rings in the preferred edge-to-face orientation. For the first time the 尾-hairpin-stabilising capacities of a disulfide bond and a Trp路路路Trp pair are compared in the same model system. We found that the contribution to stability of the noncovalent indole-indole interaction is larger than that of the covalent disulfide bond, and that their combination gives rise to an even more stable 尾-hairpin.We thank financial support from CSIC Intramural projects 200580F0161 and 200580F0162 and from MICINN projects CTQ2008-00080/BQU and SAF2006-01205. C.M.S. acknowledges the CSIC I3P program for financial support from the European Social Fund.Peer reviewe

    Disulfide Bonds versus Trp鈰呪媴鈰匱rp Pairs in Irregular 尾-Hairpins: NMR Structure of Vammin Loop 3-Derived Peptides as a Case Study

    No full text
    9 pages, 6 figures, 1 table.-- PMID: 19294654 [PubMed].-- Supporting information (Suppl. figs SF1-SF2, tabs ST1-ST2) available at: http://www3.interscience.wiley.com/cgi-bin/fulltext/122264837/sm001.pdf?PLACEBO=IE.pdfWhere a noncovalent interaction is better than a covalent bond: The most stabilising cross-strand pairs were incorporated into an irregular 尾-hairpin, loop 3 of vammin. 1H and 13C NMR conformational analyses of these designed peptides indicated that an edge-to-face Trp路路路Trp interaction leads to a 尾-hairpin that is more stable than a disulfide bond.Structural studies on model peptides have led to a good understanding of the rules behind the formation and stability of regular 尾-hairpins. To test their applicability to the successful design of irregular 尾-hairpins with long loops and/or 尾-bulges at the strands, we mimicked loop 3 of vammin, a 4:6 尾-hairpin with a non-Gly 尾-bulge. The most stabilising cross-strand pairs, disulfide bonds or/and Trp路路路Trp pairs, were incorporated at non-hydrogen-bonded sites in peptides spanning the 69-80 region of vammin. According to NMR data, these modified peptides adopt 尾-hairpin conformations as intended by design. The Trp-containing peptides reproduce even the unusual positive 蠁 angle for the Gln residue, with the indole rings in the preferred edge-to-face orientation. For the first time the 尾-hairpin-stabilising capacities of a disulfide bond and a Trp路路路Trp pair are compared in the same model system. We found that the contribution to stability of the noncovalent indole-indole interaction is larger than that of the covalent disulfide bond, and that their combination gives rise to an even more stable 尾-hairpin.We thank financial support from CSIC Intramural projects 200580F0161 and 200580F0162 and from MICINN projects CTQ2008-00080/BQU and SAF2006-01205. C.M.S. acknowledges the CSIC I3P program for financial support from the European Social Fund.Peer reviewe
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