Diversity in the disulfide folding pathways of cystine knot peptides

被引:0
|
作者
Norelle L. daly
Richard J. clark
Ulf Göransson
David J. craik
机构
[1] University of Queensland,Institute for Molecular Bioscience
来源
Letters in Peptide Science | 2003年 / 10卷
关键词
circular proteins; cyclotides; kalata B1; protein folding;
D O I
暂无
中图分类号
学科分类号
摘要
The plant cyclotides are a fascinating family of circular proteins that contain a cyclic cystine knot motif (CCK). This unique family was discovered only recently but contains over 50 known sequences to date. Various biological activities are associated with these peptides including antimicrobial and insecticidal activity. The knotted topology and cyclic nature of the cyclotides poses interesting questions about the folding mechanisms and how the knotted arrangement of disulfide bonds is formed. Some studies have been performed on related inhibitor cystine knot (ICK) containing peptides, but little is known about the folding mechanisms of CCK molecules. We have examined the oxidative refolding and reductive unfolding of the prototypic member of the cyclotide family, kalata B1. Analysis of the rates of formation of the intermediates along the reductive unfolding pathway highlights the stability conferred by the cystine knot motif. Significant differences are observed between the folding of kalata B1 and an acyclic cystine knot protein, EETI-II, suggesting that the circular backbone has a significant influence in directing the folding pathway.
引用
收藏
页码:523 / 531
页数:8
相关论文
共 50 条
  • [31] Localization of disulfide bonds in the cystine knot domain of human von Willebrand factor
    Katsumi, A
    Tuley, EA
    Bodó, I
    Sadler, JE
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (33) : 25585 - 25594
  • [32] Chemical disulfide mapping identifies an inhibitor cystine knot in the agouti signaling protein
    Yu, Bin
    Millhauser, Glenn L.
    FEBS LETTERS, 2007, 581 (29): : 5561 - 5565
  • [33] The cystine knot promotes folding and not thermodynamic stability in vascular endothelial growth factor
    Muller, YA
    Heiring, C
    Misselwitz, R
    Welfle, K
    Welfle, H
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (45) : 43410 - 43416
  • [34] A new family of cystine knot peptides from the seeds of Momordica cochinchinensis
    Chan, Lai Yue
    He, Wenjun
    Tan, Ninghua
    Zeng, Guangzhi
    Craik, David J.
    Daly, Norelle L.
    PEPTIDES, 2013, 39 : 29 - 35
  • [35] Intracellular folding pathway of the cystine knot-containing glycoprotein hormone α-subunit
    Darling, RJ
    Wilken, JA
    Ruddon, RW
    Bedows, E
    BIOCHEMISTRY, 2001, 40 (02) : 577 - 585
  • [36] Functional evolution of scorpion venom peptides with an inhibitor cystine knot fold
    Gao, Bin
    Harvey, Peta J.
    Craik, David J.
    Ronjat, Michel
    De Waard, Michel
    Zhu, Shunyi
    BIOSCIENCE REPORTS, 2013, 33 : 513 - U163
  • [37] Cystine-knot peptides: emerging tools for cancer imaging and therapy
    Ackerman, Shelley E.
    Currier, Nicolas V.
    Bergen, Jamie M.
    Cochran, Jennifer R.
    EXPERT REVIEW OF PROTEOMICS, 2014, 11 (05) : 561 - 572
  • [38] SYNTHESES OF CYSTINE-PEPTIDES BY A NEW DISULFIDE BOND FORMING REACTION
    AKAJI, K
    FUJINO, K
    TATSUMI, T
    KIMURA, T
    FUJIWARA, Y
    KISO, Y
    JOURNAL OF PHARMACOBIO-DYNAMICS, 1992, 15 (03): : S44 - S44
  • [40] Molecular diversity and evolution of cystine knot toxins of the tarantula Chilobrachys jingzhao
    J. Chen
    M. Deng
    Q. He
    E. Meng
    L. Jiang
    Z. Liao
    M. Rong
    S. Liang
    Cellular and Molecular Life Sciences, 2008, 65 : 2431 - 2444