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Page 14 of 17  Stojkovska Docevska et al. Rare Dis Orphan Drugs J 2023;2:14  https://dx.doi.org/10.20517/rdodj.2023.09

                    1990;29:5304-8.  DOI  PubMed
               45.       Wolters PJ, Pham CT, Muilenburg DJ, Ley TJ, Caughey GH. Dipeptidyl peptidase I is essential for activation of mast cell chymases,
                    but not tryptases, in mice. J Biol Chem 2001;276:18551-6.  DOI
               46.       Pham CT, Ley TJ. Dipeptidyl peptidase I is required for the processing and activation of granzymes A and B in vivo. Proc Natl Acad
                    Sci U S A 1999;96:8627-32.  DOI  PubMed  PMC
               47.       Freer ST, Kraut J, Robertus JD, Wright HT, Xuong NH. Chymotrypsinogen: 2.5-angstrom crystal structure, comparison with alpha-
                    chymotrypsin, and implications for zymogen activation. Biochemistry 1970;9:1997-2009.  DOI  PubMed
               48.       Reiling KK, Krucinski J, Miercke LJ, Raymond WW, Caughey GH, Stroud RM. Structure of human pro-chymase: a model for the
                    activating transition of granule-associated proteases. Biochemistry 2003;42:2616-24.  DOI  PubMed
               49.       Gullberg U, Andersson E, Garwicz D, Lindmark A, Olsson I. Biosynthesis, processing and sorting of neutrophil proteins: insight into
                    neutrophil granule development. Eur J Haematol 1997;58:137-53.  DOI  PubMed
               50.       Garwicz D, Lindmark A, Persson A, Gullberg U. On the role of the proform-conformation for processing and intracellular sorting of
                    human cathepsin G. Blood 1998;92:1415-22.  DOI  PubMed
               51.       Garwicz D, Lennartsson A, Jacobsen SE, Gullberg U, Lindmark A. Biosynthetic profiles of neutrophil serine proteases in a human
                    bone marrow-derived cellular myeloid differentiation model. Haematologica 2005;90:38-44.  PubMed
               52.       Brinkmann V, Reichard U, Goosmann C, et al. Neutrophil extracellular traps kill bacteria. Science 2004;303:1532-5.  DOI
               53.       Korkmaz B, Horwitz MS, Jenne DE, Gauthier F. Neutrophil elastase, proteinase 3, and cathepsin G as therapeutic targets in human
                    diseases. Pharmacol Rev 2010;62:726-59.  DOI  PubMed  PMC
               54.       Ruffell B, Affara NI, Cottone L, et al. Cathepsin C is a tissue-specific regulator of squamous carcinogenesis. Genes Dev
                    2013;27:2086-98.  DOI  PubMed  PMC
               55.       Wolters PJ, Raymond WW, Blount JL, Caughey GH. Regulated expression, processing, and secretion of dog mast cell dipeptidyl
                    peptidase I. J Biol Chem 1998;273:15514-20.  DOI  PubMed
               56.       Dikov MM, Springman EB, Yeola S, Serafin WE. Processing of procarboxypeptidase A and other zymogens in murine mast cells. J
                    Biol Chem 1994;269:25897-904.  DOI  PubMed
               57.       Gullberg U, Lindmark A, Nilsson E, Persson A, Olsson I. Processing of human cathepsin G after transfection to the rat basophilic/
                    mast cell tumor line RBL. J Biol Chem 1994;269:25219-25.  DOI
               58.       McEuen AR, Ashworth DM, Walls AF. The conversion of recombinant human mast cell prochymase to enzymatically active
                    chymase by dipeptidyl peptidase I is inhibited by heparin and histamine. Eur J Biochem 1998;253:300-8.  DOI  PubMed
               59.       Le QT, Min HK, Xia HZ, Fukuoka Y, Katunuma N, Schwartz LB. Promiscuous processing of human alphabeta-protryptases by
                    cathepsins L, B, and C. J Immunol 2011;186:7136-43.  DOI  PubMed  PMC
               60.       Le QT, Gomez G, Zhao W, et al. Processing of human protryptase in mast cells involves cathepsins L, B, and C. J Immunol
                    2011;187:1912-8.  DOI  PubMed  PMC
               61.       Clair J, Pham CT, Villalta SA, Caughey GH, Wolters PJ. Mast cell dipeptidyl peptidase I mediates survival from sepsis. J Clin Invest
                    2004;113:628-34.  DOI  PubMed  PMC
               62.       Jenne D, Rey C, Haefliger JA, Qiao BY, Groscurth P, Tschopp J. Identification and sequencing of cDNA clones encoding the
                    granule-associated serine proteases granzymes D, E, and F of cytolytic T lymphocytes. Proc Natl Acad Sci U S A 1988;85:4814-8.
                    DOI  PubMed  PMC
               63.       Caputo A, Garner R, Winkler U, Hudig D, Bleackley R. Activation of recombinant murine cytotoxic cell proteinase-1 requires
                    deletion of an amino-terminal dipeptide. J Biol Chem 1993;268:17672-5.  DOI  PubMed
               64.       Brown GR, McGuire MJ, Thiele DL. Dipeptidyl peptidase I is enriched in granules of in vitro- and in vivo-activated cytotoxic T
                    lymphocytes. J Immunol 1993;150:4733-42.  DOI  PubMed
               65.       Mcguire M, Lipsky P, Thiele D. Generation of active myeloid and lymphoid granule serine proteases requires processing by the
                    granule thiol protease dipeptidyl peptidase I. J Biol Chem 1993;268:2458-67.  DOI  PubMed
               66.       Grossman WJ, Verbsky JW, Tollefsen BL, Kemper C, Atkinson JP, Ley TJ. Differential expression of granzymes A and B in human
                    cytotoxic lymphocyte subsets and T regulatory cells. Blood 2004;104:2840-8.  DOI
               67.       Pham CT, Thomas DA, Mercer JD, Ley TJ. Production of fully active recombinant murine granzyme B in yeast. J Biol Chem
                    1998;273:1629-33.  DOI
               68.       Alam S, Liu Q, Liu S, et al. Up-regulated cathepsin C induces macrophage M1 polarization through FAK-triggered p38 MAPK/NF-κ
                    B pathway. Exp Cell Res 2019;382:111472.  DOI
               69.       Dai J, Liu J, Zhang Q, et al. Cathepsin C is involved in macrophage M1 polarization via p38/MAPK pathway in sudden cardiac death.
                    Cardiovasc Ther 2021;2021:6139732.  DOI  PubMed  PMC
               70.       Liu Q, Zhang Y, Liu S, et al. Cathepsin C promotes microglia M1 polarization and aggravates neuroinflammation via activation of
                      2+
                    Ca -dependent PKC/p38MAPK/NF-κB pathway. J Neuroinflamm 2019;16:1-18.  DOI  PubMed
               71.       Adkison AM, Kelley DG, Pham CTN, et al. Dipeptidyl peptidase I activates neutrophil-derived serine proteases and regulates the
                    development of acute experimental arthritis find the latest version: dipeptidyl peptidase I activates neutrophil-derived serine proteases
                    and regulates the development. J Clin Invest 2002;109:363-71.  DOI
               72.       Chu Y, Guo Y, Walls AF, Zhou X. The regulatory role of dipeptidyl peptidase I on the activation of immune granulocytes. Cell Biol
                    Int 2017;41:1093-102.  DOI
               73.       Pagano MB, Bartoli MA, Ennis TL, et al. Critical role of dipeptidyl peptidase I in neutrophil recruitment during the development of
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