4.6 Article

Enzymatic and Structural Characterization of the Major Endopeptidase in the Venus Flytrap Digestion Fluid

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 291, Issue 5, Pages 2271-2287

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M115.672550

Keywords

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Funding

  1. European agency [FP7-PEOPLE-2011-ITN-290246, FP7-HEALTH-2012-306029-2, BFU2012-32862, MDM-2014-0435, BIO2013-49320-EXP, 2014SGR9]
  2. Danish agency [FP7-PEOPLE-2011-ITN-290246, FP7-HEALTH-2012-306029-2, BFU2012-32862, MDM-2014-0435, BIO2013-49320-EXP, 2014SGR9]
  3. Spanish agency [FP7-PEOPLE-2011-ITN-290246, FP7-HEALTH-2012-306029-2, BFU2012-32862, MDM-2014-0435, BIO2013-49320-EXP, 2014SGR9]
  4. Catalan agency [FP7-PEOPLE-2011-ITN-290246, FP7-HEALTH-2012-306029-2, BFU2012-32862, MDM-2014-0435, BIO2013-49320-EXP, 2014SGR9]

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Carnivorous plants primarily use aspartic proteases during digestion of captured prey. In contrast, the major endopeptidases in the digestive fluid of the Venus flytrap (Dionaea muscipula) are cysteine proteases (dionain-1 to -4). Here, we present the crystal structure of mature dionain-1 in covalent complex with inhibitor E-64 at 1.5 angstrom resolution. The enzyme exhibits an overall protein fold reminiscent of other plant cysteine proteases. The inactive glycosylated pro-form undergoes autoprocessing and self-activation, optimally at the physiologically relevant pH value of 3.6, at which the protective effect of the pro-domain is lost. The mature enzyme was able to efficiently degrade a Drosophila fly protein extract at pH 4 showing high activity against the abundant Lys- and Arg-rich protein, myosin. The substrate specificity of dionain-1 was largely similar to that of papain with a preference for hydrophobic and aliphatic residues in subsite S-2 and for positively charged residues in S-1. A tentative structure of the pro-domain was obtained by homology modeling and suggested that a pro-peptide Lys residue intrudes into the S-2 pocket, which is more spacious than in papain. This study provides the first analysis of a cysteine protease from the digestive fluid of a carnivorous plant and confirms the close relationship between carnivorous action and plant defense mechanisms.

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