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Chemotactic Peptide-induced Changes of Intermediate Filament Organization in Neutrophils During Granule Secretion: Role of Cyclic Guanosine Monophosphate

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Journal Mol Biol Cell
Date 1998 Oct 8
PMID 9763453
Citations 5
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Abstract

In neutrophils activated to secrete with formyl-methionyl-leucyl-phenylalanine, intermediate filaments are phosphorylated transiently by cyclic guanosine monophosphate (cGMP)-dependent protein kinase (G-kinase). cGMP regulation of vimentin organization was investigated. During granule secretion, cGMP levels were elevated and intermediate filaments were transiently assembled at the pericortex to areas devoid of granules and microfilaments. Microtubule and microfilament inhibitors affected intermediate filament organization, granule secretion, and cGMP levels. Cytochalasin D and nocodazole caused intermediate filaments to assemble at the nucleus, rather than at the pericortex. cGMP levels were elevated in neutrophils by both inhibitors; however, with cytochalasin D, cGMP was elevated earlier and granule secretion was excessive. Nocodazole did not affect normal cGMP elevations, but specific granule secretion was delayed. LY83583, a guanylyl cyclase antagonist, inhibited granule secretion and intermediate filament organization, but not microtubule or microfilament organization. Intermediate filament assembly at the pericortex and secretion were partially restored by 8-bromo-cGMP in LY83583-treated neutrophils, suggesting that cGMP regulates these functions. G-kinase directly induced intermediate filament assembly in situ, and protein phosphatase 1 disassembled filaments. However, in intact cells stimulated with formyl-methionyl-leucyl-phenylalanine, intermediate filament assembly is focal and transient, suggesting that vimentin phosphorylation is compartmentalized. We propose that, in addition to changes in microfilament and microtubule organization, granule secretion is also accompanied by changes in intermediate filament organization, and that cGMP regulates vimentin filament organization via activation of G-kinase.

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References
1.
Moore P, Bank H, Brissie N, SPICER S . Association of microfilament bundles with lysosomes in polymorphonuclear leukocytes. J Cell Biol. 1976; 71(2):659-66. PMC: 2109772. DOI: 10.1083/jcb.71.2.659. View

2.
Schliwa M, Pryzwansky K, Euteneuer U . Centrosome splitting in neutrophils: an unusual phenomenon related to cell activation and motility. Cell. 1982; 31(3 Pt 2):705-17. DOI: 10.1016/0092-8674(82)90325-7. View

3.
Arnold W, Mittal C, Katsuki S, Murad F . Nitric oxide activates guanylate cyclase and increases guanosine 3':5'-cyclic monophosphate levels in various tissue preparations. Proc Natl Acad Sci U S A. 1977; 74(8):3203-7. PMC: 431498. DOI: 10.1073/pnas.74.8.3203. View

4.
Malech H, Root R, Gallin J . Structural analysis of human neutrophil migration. Centriole, microtubule, and microfilament orientation and function during chemotaxis. J Cell Biol. 1977; 75(3):666-93. PMC: 2111577. DOI: 10.1083/jcb.75.3.666. View

5.
Hoffstein S, Weissmann G . Microfilaments and microtubules in calcium ionophore-induced secretion of lysosomal enzymes from human polymorphonuclear leukocytes. J Cell Biol. 1978; 78(3):769-81. PMC: 2110203. DOI: 10.1083/jcb.78.3.769. View