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1.
Nagatake Granule exocytosis in a cultured human natural killer cell-rich population induced by KI562 target cells and by PMA/A23187 // Cell. Immunol., 1995. Vol. 161, N 2.-С.295-298

2.
Nagatake Granule exocytosis in a cultured human natural killer cell-rich population induced by KI562 target cells and by PMA/A23187 // Cell. Immunol., 1995. Vol. 161, N 2.-С.295-298

3.
'бета'[1] Integrin cross-linking inhibits CD16-induced phospholipase D and secretory phospholipase A[2] activity and granule exocytosis in human NK cells: Role of phospholipase D in CD16-triggered degranulation // J. Immunol., 1999. Vol. 162, N 4.-С.2064-2072

4.
Lollike Membrane capacitance techniques to monitor granule exocytosis in neutrophils // J. Immunol. Meth., 1999. Vol. 232, N 1-2.-С.111-120

5.
Lollike Membrane capacitance techniques to monitor granule exocytosis in neutrophils // J. Immunol. Meth., 1999. Vol. 232, N 1-2.-С.111-120

6.
Campos-Toimil Real-time studies of zymogen granule exocytosis in intact rat pancreatic acinar cells // J. Physiol., 2000. Vol. 528, N 2.-С.317-326

7.
Catalfamo The role of granule exocytosis in T cell chemokine secretion // Scand. J. Immunol., 2001. Vol. 54, прил. 1.-С.F40

8.
Lyubchenko Taras A. The actin cytoskeleton and cytotoxic T lymphocytes: Evidence for multiple roles that could affect granule exocytosis-dependent tartet cell killing // J. Physiol., 2003. Vol. 547, N 3.-С.835-847

9.
Lyubchenko Taras A. The actin cytoskeleton and cytotoxic T lymphocytes: Evidence for multiple roles that could affect granule exocytosis-dependent tartet cell killing // J. Physiol., 2003. Vol. 547, N 3.-С.835-847

10.
Abdel-Latif Neutrophil primary granule release and maximal superoxide generation depend on Rac2 in a common signalling pathway // Can. J. Physiol. and Pharmacol., 2005. Vol. 83, N 1.-С.69-75

11.
Calcineurin activation is only calcium-dependent step in cytotoxic T lymphocyte granule exocytosis // J. Biol. Chem., 2007. Vol. 282, N 25.-С.18009-18017

12.
Calcineurin activation is only calcium-dependent step in cytotoxic T lymphocyte granule exocytosis // J. Biol. Chem., 2007. Vol. 282, N 25.-С.18009-18017

13.
Wiseman Dean A. Stimulus-induced S-nitrosylation of syntaxin 4 impacts insulin granule exocytosis // J. Biol. Chem., 2011. Vol. 286, N 18.-С.16344-16354

14.
Wiseman Dean A. Stimulus-induced S-nitrosylation of syntaxin 4 impacts insulin granule exocytosis // J. Biol. Chem., 2011. Vol. 286, N 18.-С.16344-16354

15.
Dynamin-related protein-1 controls fusion pore dynamics during platelet granule exocytosis // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2013. Vol. 33, N 3.-С.481-488

16.
76 and 14 kDa polypeptides, two major components released from amphibian urinary bladder epithelium. Localization and potential role // Biol. Chem., 1989. Vol. 66, N 1- 2.-С.131-143

17.
Smith Robert J. Recombinant human granulocyte-macrophage colony-stimulating factor induces granule exocytosis from human polymorphonuclear neutrophils // Inframmation, 1990. Vol. 14, N 1.-С.82-92

 




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