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A Cascade of 24 Histatins (Histatin 3 Fragments) in Human Saliva.

Authors :
Castagnola, Massimo
Inzitari, Rosanna
Rossetti, Diana Valeria
Olmi, Chiara
Cabras, Tiziana
Piras, Vincenzo
Nicolussi, Paola
Sanna, Maria Teresa
Pellegrini, Mariagiuseppina
Giardina, Bruno
Messana, Irene
Source :
Journal of Biological Chemistry. 10/1/2004, Vol. 279 Issue 40, p41436-41443. 8p.
Publication Year :
2004

Abstract

The systematic search by tandem mass spectrometry of human saliva from four different subjects, of 136 possible fragments originated from histatin 3, allowed the detection of 24 different peptides. They include, with the exception of histatin 4, all the known histatin 3 fragments, namely histatins 5–12 and the peptides corresponding to 15–24, 26–32, 29–32 residues, and 13 new fragments corresponding to 1–11, 1–12, 1–13, 5–13, 6–11, 6–13, 7–11, 7–12, 7–13, 14–24, 14–25, 15–25, and 28–32 residues of histatin 3. On the contrary, none of 119 possible fragments of histatin 1, including histatin 2, was detected. The results suggest that the genesis of histatin 3-related peptides, being under the principal action of trypsin-like activities, is probably not a random process but rather follows a sequential fragmentation pathway. Lack of detection of C-terminal fragments, with the exception of 26–32, 28–32, and 29–32 fragments, suggested that arginine 25 should be the first cleavage site, generating histatin 6 and 26–32 fragments. The genesis of 28–32 and 29–32 fragments and histatin 5 should implicate a subsequent exo-protease action. Similarly, lack of detection of fragments having Lys-5 and Arg-6 at the N terminus and Arg-25 at the C terminus strongly suggested that sequences KRKF (11–14 residues) and AKR (4–6 residues) should be the second and the third cleavage sites, respectively. Lys-17 and Arg-22 are not cleaved at all. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219258
Volume :
279
Issue :
40
Database :
Academic Search Index
Journal :
Journal of Biological Chemistry
Publication Type :
Academic Journal
Accession number :
14789493
Full Text :
https://doi.org/10.1074/jbc.M404322200