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Identification in Lupin Seed of a Serine- Endopeptidase Activity Cleaving between Twin Arginine Pairs and Causing Limited Proteolysis of Seed Storage Proteins

Identification in Lupin Seed of a Serine- Endopeptidase Activity Cleaving between Twin Arginine Pairs and Causing Limited Proteolysis of Seed Storage Proteins
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摘要 The occurrence of twin-arginine motifs (-R-R-) in the amino acid sequences of animal pro-proteins frequently defines the cleavage site(s) for their structural/functional maturation. No information is available on the presence and possible biological meaning of these motifs in the seed storage proteins. In this work, a novel endopeptidase activity with cleavage specificity to twin-arginine pairs has been detected in mature dry Lupinus albus seeds. The endopeptidase was tested with a number of endogenous and exogenous protein substrates, which were selected according to the pres- ence of one or more twin-arginine residue motifs in their amino acid sequences. The observed hydrolysis patterns were limited and highly specific. Partial proteolysis led to stable polypeptide fragments that were characterized by 1- and 2-D electrophoresis. Selected polypeptides were submitted to N-terminal amino acid sequencing and mass spectrometry anal- yses, These approaches, supported by bioinformatic analysis of the available sequences, allowed the conclusion that the polypeptide cleavage events had occurred at the peptide bonds comprised between twin-arginine residue pairs with all tested protein substrates. The endopeptidase activity was inhibited by 4-(2-AminoEthyl)Benzene-Sulphonyl Fluoride hy- drochloride (AEBSF), leupeptin, and serine proteinase protein inhibitors, while it was not affected by pepstatin, trans- EpoxysuccinyI-L-leucylamido(4-guanidino)butane (E64), and ethylenediaminetetraacetic acid (EDTA), thus qualifying the Arg-Arg cleaving enzyme as a serine endopeptidase. The structural features of storage proteins from lupin and other legume seeds strongly support the hypothesis that the occurrence of an endopeptidase activity cleaving -R-R- bonds may be functional to facilitate their degradation at germination and possibly generate polypeptide fragments with specific biological activity. The occurrence of twin-arginine motifs (-R-R-) in the amino acid sequences of animal pro-proteins frequently defines the cleavage site(s) for their structural/functional maturation. No information is available on the presence and possible biological meaning of these motifs in the seed storage proteins. In this work, a novel endopeptidase activity with cleavage specificity to twin-arginine pairs has been detected in mature dry Lupinus albus seeds. The endopeptidase was tested with a number of endogenous and exogenous protein substrates, which were selected according to the pres- ence of one or more twin-arginine residue motifs in their amino acid sequences. The observed hydrolysis patterns were limited and highly specific. Partial proteolysis led to stable polypeptide fragments that were characterized by 1- and 2-D electrophoresis. Selected polypeptides were submitted to N-terminal amino acid sequencing and mass spectrometry anal- yses, These approaches, supported by bioinformatic analysis of the available sequences, allowed the conclusion that the polypeptide cleavage events had occurred at the peptide bonds comprised between twin-arginine residue pairs with all tested protein substrates. The endopeptidase activity was inhibited by 4-(2-AminoEthyl)Benzene-Sulphonyl Fluoride hy- drochloride (AEBSF), leupeptin, and serine proteinase protein inhibitors, while it was not affected by pepstatin, trans- EpoxysuccinyI-L-leucylamido(4-guanidino)butane (E64), and ethylenediaminetetraacetic acid (EDTA), thus qualifying the Arg-Arg cleaving enzyme as a serine endopeptidase. The structural features of storage proteins from lupin and other legume seeds strongly support the hypothesis that the occurrence of an endopeptidase activity cleaving -R-R- bonds may be functional to facilitate their degradation at germination and possibly generate polypeptide fragments with specific biological activity.
出处 《Molecular Plant》 SCIE CAS CSCD 2012年第5期1011-1019,共9页 分子植物(英文版)
关键词 Lupinus albus leguminous seeds twin-arginine residues PROTEOLYSIS storage proteins proteolytic conver-sion N-terminal amino acid sequence analysis. Lupinus albus leguminous seeds twin-arginine residues proteolysis storage proteins proteolytic conver-sion N-terminal amino acid sequence analysis.
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参考文献33

  • 1Altschul, S.F., Madden, T.L., Schaffer, A.A., Zhang, J., Zhang, Z., Miller, W? and Lipman, DJ. (1997). Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucl. Acid Res. 25, 3389-3402.
  • 2Arnold, K., Kiefer, F., Kopp, J., Battey, J.N., Podvinec, M., Westbrook, J.O., Berman, H.M., Bordoli, L., and Schwede, T. (2009). The Protein Model Portal. J. Struct. Funct. Genomics. 10, 1-8.
  • 3Becker, K.L. (2001). Principles and Practice of Endocrinology and Metabolism (Philadelphia: Lippincott Williams and Wilkins Publisher).
  • 4Bradford, M.M. (1976). A rapid and sensitive method for the quantitation of micrograms quantities of proteins utilising the principle of protein-dye binding. Anal. Biochem. 72, 248-254.
  • 5Brakch, N., Rholam, M., Simonetti, M? and Cohen, P. (2000). Favourable side-chain orientation of cleavage site dibasic residues of prohormone in proteolytic processing by prohormone conver-tase. Eur. J. Biochem. 267, 1626-1632.
  • 6Casey, R. (1999). Distribution and some properties of seed globulins. In Seed Proteins, Shewry P.R. Casey, R., eds (Amsterdam: Kluwer Academic Publishers), pp. 159-169.
  • 7Chesneau, V., Pierotti, A.R., Barre, N? Creminon, C., Tougard, C., and Cohen, P. (1994). Isolation and characterization of a dibasic selective metalloendopeptidase from rat testes that cleaves at the amino terminus of arginine residues. J. Biol. Chem. 269, 2056-2061.
  • 8Diefenbach-Jagger, H., Brenner, C., Kemp, B.E., Baron, W., McLean, J., Martin, T.J., and Moseley, J.M. (1995). Arg21 is the preferred kexin cleavage site in parathyroid-hormone-related protein. Eur. J. Biochem. 229, 91-98.
  • 9Duranti, M? Consonni, A., Magni, C., Sessa, F., and Scarafoni, A. (2008). The major proteins of lupin seed: characterisation and molecular properties for use as functional and nutraceutical ingredients. Trends Food Sci. Technol. 19, 624-633.
  • 10Duranti, M., Gatehouse, J.A., Boulter, D., and Cerletti, P. (1987). In vitro proteolytic processing of pea and jack bean storage proteins by an endopeptidase from lupin seed. Phytochemistry. 26, 627-631.

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