Negative regulation of mast cell signaling and function by the adaptor LAB/NTAL

. 2004 Oct 18 ; 200 (8) : 1001-13. [epub] 20041011

Jazyk angličtina Země Spojené státy americké Médium print-electronic

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/pmid15477348

Engagement of the Fcepsilon receptor I (FcepsilonRI) on mast cells and basophils initiates signaling pathways leading to degranulation. Early activation events include tyrosine phosphorylation of two transmembrane adaptor proteins, linker for activation of T cells (LAT) and non-T cell activation linker (NTAL; also called LAB; a product of Wbscr5 gene). Previous studies showed that the secretory response was partially inhibited in bone marrow-derived mast cells (BMMCs) from LAT-deficient mice. To clarify the role of NTAL in mast cell degranulation, we compared FcepsilonRI-mediated signaling events in BMMCs from NTAL-deficient and wild-type mice. Although NTAL is structurally similar to LAT, antigen-mediated degranulation responses were unexpectedly increased in NTAL-deficient mast cells. The earliest event affected was enhanced tyrosine phosphorylation of LAT in antigen-activated cells. This was accompanied by enhanced tyrosine phosphorylation and enzymatic activity of phospholipase C gamma1 and phospholipase C gamma2, resulting in elevated levels of inositol 1,4,5-trisphosphate and free intracellular Ca2+. NTAL-deficient BMMCs also exhibited an enhanced activity of phosphatidylinositol 3-OH kinase and Src homology 2 domain-containing protein tyrosine phosphatase-2. Although both LAT and NTAL are considered to be localized in membrane rafts, immunogold electron microscopy on isolated membrane sheets demonstrated their independent clustering. The combined data show that NTAL is functionally and topographically different from LAT.

Zobrazit více v PubMed

Kinet, J.P. 1999. The high-affinity IgE receptor (FcɛRI): from physiology to pathology. Annu. Rev. Immunol. 17:931–972. PubMed

Brdička, T., M. Imrich, P. Angelisová, N. Brdičková, O. Horváth, J. Sˇpička, I. Hilgert, P. Lusková, P. Dráber, P. Novák, et al. 2002. Non-T cell activation linker (NTAL): a transmembrane adaptor protein involved in immunoreceptor signaling. J. Exp. Med. 196:1617–1626. PubMed PMC

Janssen, E., M. Zhu, W. Zhang, S. Koonpaew, and W. Zhang. 2003. LAB: a new membrane-associated adaptor molecule in B cell activation. Nat. Immunol. 4:117–123. PubMed

Harder, T., and K.R. Engelhardt. 2004. Membrane domains in lymphocytes—from lipid rafts to protein scaffolds. Traffic. 5:265–275. PubMed

Janssen, E., M. Zhu, B. Craven, and W. Zhang. 2004. Linker for activation of B cells: a functional equivalent of a mutant linker for activation of T cells deficient in phospholipase C-γ1 binding. J. Immunol. 172:6810–6819. PubMed

Tkaczyk, C., V. Horejsi, I. Shoko, P. Draber, L.E. Samelson, A.B. Satterthwaite, D.H. Nahm, D.D. Metcalfe, and A.M. Gilfillan. 2004. NTAL phosphorylation is a pivotal link between the signaling cascades leading to human mast cell degranulation following kit activation and FcɛRI aggregation. Blood. 104:207–214. PubMed

Saitoh, S., R. Arudchandran, T.S. Manetz, W. Zhang, C.L. Sommers, P.E. Love, J. Rivera, and L.E. Samelson. 2000. LAT is essential for FcɛRI-mediated mast cell activation. Immunity. 12:525–535. PubMed

Parravicini, V., M. Gadina, M. Kovarova, S. Odom, C. Gonzalez-Espinosa, Y. Furumoto, S. Saitoh, L.E. Samelson, J.J. O'Shea, and J. Rivera. 2002. Fyn kinase initiates complementary signals required for IgE-dependent mast cell degranulation. Nat. Immunol. 3:741–748. PubMed

Tolar, P., L. Dráberová, and P. Dráber. 1997. Protein tyrosine kinase Syk is involved in Thy-1 signaling in rat basophilic leukemia cells. Eur. J. Immunol. 27:3389–3397. PubMed

Tolar, P., M. Tumová, and P. Dráber. 2001. New monoclonal antibodies recognizing the adaptor protein LAT. Folia Biol. (Praha). 47:215–217. PubMed

Rivera, J., J.-P. Kinet, J. Kim, C. Pucillo, and H. Metzger. 1988. Studies with a monoclonal antibody to the β subunit of the receptor with high affinity for immunoglobulin E. Mol. Immunol. 25:647–661. PubMed

Rudolph, A.K., P.D. Burrows, and M.R. Wabl. 1981. Thirteen hybridomas secreting hapten-specific immunoglobulin E from mice with Iga or Igb heavy chain haplotype. Eur. J. Immunol. 11:527–529. PubMed

Liu, F.-T., J.W. Bohn, E.L. Ferry, H. Yamanoto, C.A. Molinaro, L.A. Sherman, N.R. Klinman, and D.H. Katz. 1980. Monoclonal dinitrophenyl-specific murine IgE antibody: preparation, isolation, and characterization. J. Immunol. 124:2728–2737. PubMed

Kovářová, M., P. Tolar, R. Arudchandran, L. Dráberová, J. Rivera, and P. Dráber. 2001. Structure-function analysis of Lyn kinase association with lipid rafts and initiation of early signaling events after Fcɛ receptor I aggregation. Mol. Cell. Biol. 21:8318–8328. PubMed PMC

Kress, C., S. Vandormael-Pournin, P. Baldacci, M. Cohen-Tannoudji, and C. Babinet. 1998. Nonpermissiveness for mouse embryonic stem (ES) cell derivation circumvented by a single backcross to 129/Sv strain: establishment of ES cell lines bearing the Omd conditional lethal mutation. Mamm. Genome. 9:998–1001. PubMed

Schwenk, F., U. Baron, and K. Rajewsky. 1995. A cre-transgenic mouse strain for the ubiquitous deletion of loxP-flanked gene segments including deletion in germ cells. Nucleic Acids Res. 23:5080–5081. PubMed PMC

Nunez-Cruz, S., E. Aguado, S. Richelme, B. Chetaille, A.M. Mura, M. Richelme, L. Pouyet, E. Jouvin-Marche, L. Xerri, B. Malissen, and M. Malissen. 2003. LAT regulates γδ T cell homeostasis and differentiation. Nat. Immunol. 4:999–1008. PubMed

Yamaguchi, M., C.S. Lantz, H.C. Oettgen, I.M. Katona, T. Fleming, I. Miyajima, J.P. Kinet, and S.J. Galli. 1997. IgE enhances mouse mast cell FcɛRI expression in vitro and in vivo: evidence for a novel amplification mechanism in IgE-dependent reactions. J. Exp. Med. 185:663–672. PubMed PMC

Demo, S.D., E. Masuda, A.B. Rossi, B.T. Throndset, A.L. Gerard, E.H. Chan, R.J. Armstrong, B.P. Fox, J.B. Lorens, D.G. Payan, et al. 1999. Quantitative measurement of mast cell degranulation using a novel flow cytometric annexin-V binding assay. Cytometry. 36:340–348. PubMed

Surviladze, Z., L. Dráberová, M. Kovářová, M. Boubelík, and P. Dráber. 2001. Differential sensitivity to acute cholesterol lowering of activation mediated via the high-affinity IgE receptor and Thy-1 glycoprotein. Eur. J. Immunol. 31:1–10. PubMed

Dráberová, L., L. Dudková, M. Boubelík, H. Tolarová, F. Sˇmíd, and P. Dráber. 2003. Exogenous administration of gangliosides inhibits FcɛRI-mediated mast cell degranulation by decreasing the activity of phospholipase Cγ. J. Immunol. 171:3585–3593. PubMed

Dráberová, L. 1990. Cyclosporin A inhibits rat mast cell activation. Eur. J. Immunol. 20:1469–1473. PubMed

Tolarová, H., L. Dráberová, P. Heneberg, and P. Dráber. 2004. Involvement of filamentous actin in setting the threshold for degranulation in mast cells. Eur. J. Immunol. 34:1627–1636. PubMed

Wilson, B.S., J.R. Pfeiffer, and J.M. Oliver. 2000. Observing FcɛRI signaling from the inside of the mast cell membrane. J. Cell Biol. 149:1131–1142. PubMed PMC

Wilson, B.S., S.L. Steinberg, K. Liederman, J.R. Pfeiffer, Z. Surviladze, J. Zhang, L.E. Samelson, L.H. Yang, P.G. Kotula, and J.M. Oliver. 2004. Markers for detergent-resistant lipid rafts occupy distinct and dynamic domains in native membranes. Mol. Biol. Cell. 15:2580–2592. PubMed PMC

Gu, H., K. Saito, L.D. Klaman, J. Shen, T. Fleming, Y. Wang, J.C. Pratt, G. Lin, B. Lim, J.-P. Kinet, and B.G. Neel. 2001. Essential role for Gab2 in the allergic response. Nature. 412:186–190. PubMed

Xie, Z.H., I. Ambudkar, and R.P. Siraganian. 2002. The adapter molecule Gab2 regulates FcɛRI-mediated signal transduction in mast cells. J. Immunol. 168:4682–4691. PubMed

Wu, C.J., D.M. O'Rourke, G.S. Feng, G.R. Johnson, Q. Wang, and M.I. Greene. 2001. The tyrosine phosphatase SHP-2 is required for mediating phosphatidylinositol 3-kinase/Akt activation by growth factors. Oncogene. 20:6018–6025. PubMed

Zhang, S.Q., W.G. Tsiaras, T. Araki, G. Wen, L. Minichiello, R. Klein, and B.G. Neel. 2002. Receptor-specific regulation of phosphatidylinositol 3′-kinase activation by the protein tyrosine phosphatase Shp2. Mol. Cell. Biol. 22:4062–4072. PubMed PMC

Putney, J.W., Jr., L.M. Broad, F.J. Braun, J.P. Lievremont, and G.S. Bird. 2001. Mechanisms of capacitative calcium entry. J. Cell Sci. 114:2223–2229. PubMed

Wilson, B.S., J.R. Pfeiffer, Z. Surviladze, E.A. Gaudet, and J.M. Oliver. 2001. High resolution mapping of mast cell membranes reveals primary and secondary domains of FcɛRI and LAT. J. Cell Biol. 154:645–658. PubMed PMC

Zhang, W., C.L. Sommers, D.N. Burshtyn, C.C. Stebbins, J.B. DeJarnette, R.P. Trible, A. Grinberg, H.C. Tsay, H.M. Jacobs, C.M. Kessler, et al. 1999. Essential role of LAT in T cell development. Immunity. 10:323–332. PubMed

Finco, T.S., T. Kadlecek, W. Zhang, L.E. Samelson, and A. Weiss. 1998. LAT is required for TCR-mediated activation of PLCγ1 and the Ras pathway. Immunity. 9:617–626. PubMed

Zhang, W., B.J. Irvin, R.P. Trible, R.T. Abraham, and L.E. Samelson. 1999. Functional analysis of LAT in TCR-mediated signaling pathways using a LAT-deficient Jurkat cell line. Int. Immunol. 11:943–950. PubMed

Tailor, P., T. Jascur, S. Williams, M. von Willebrand, C. Couture, and T. Mustelin. 1996. Involvement of Src-homology-2-domain-containing protein-tyrosine phosphatase 2 in T cell activation. Eur. J. Biochem. 237:736–742. PubMed

Nejnovějších 20 citací...

Zobrazit více v
Medvik | PubMed

Enhanced Membrane Fluidization and Cholesterol Displacement by 1-Heptanol Inhibit Mast Cell Effector Functions

. 2023 Aug 15 ; 12 (16) : . [epub] 20230815

Pentacyclic triterpenoid ursolic acid interferes with mast cell activation via a lipid-centric mechanism affecting FcεRI signalosome functions

. 2022 Nov ; 298 (11) : 102497. [epub] 20220915

ORMDL2 Deficiency Potentiates the ORMDL3-Dependent Changes in Mast Cell Signaling

. 2020 ; 11 () : 591975. [epub] 20210211

Cytoskeletal Protein 4.1R Is a Positive Regulator of the FcεRI Signaling and Chemotaxis in Mast Cells

. 2019 ; 10 () : 3068. [epub] 20200114

Positive and Negative Regulatory Roles of C-Terminal Src Kinase (CSK) in FcεRI-Mediated Mast Cell Activation, Independent of the Transmembrane Adaptor PAG/CSK-Binding Protein

. 2018 ; 9 () : 1771. [epub] 20180802

Mast Cell Activation and Microtubule Organization Are Modulated by Miltefosine Through Protein Kinase C Inhibition

. 2018 ; 9 () : 1563. [epub] 20180709

Tetraspanins and Transmembrane Adaptor Proteins As Plasma Membrane Organizers-Mast Cell Case

. 2016 ; 4 () : 43. [epub] 20160510

Signal transduction and chemotaxis in mast cells

. 2016 May 05 ; 778 () : 11-23. [epub] 20150502

Ethanol Inhibits High-Affinity Immunoglobulin E Receptor (FcεRI) Signaling in Mast Cells by Suppressing the Function of FcεRI-Cholesterol Signalosome

. 2015 ; 10 (12) : e0144596. [epub] 20151214

Transmembrane adaptor protein PAG/CBP is involved in both positive and negative regulation of mast cell signaling

. 2014 Dec 01 ; 34 (23) : 4285-300. [epub] 20140922

Multiple regulatory roles of the mouse transmembrane adaptor protein NTAL in gene transcription and mast cell physiology

. 2014 ; 9 (8) : e105539. [epub] 20140825

Cross-talk between tetraspanin CD9 and transmembrane adaptor protein non-T cell activation linker (NTAL) in mast cell activation and chemotaxis

. 2013 Apr 05 ; 288 (14) : 9801-9814. [epub] 20130226

Mast cell chemotaxis - chemoattractants and signaling pathways

. 2012 ; 3 () : 119. [epub] 20120525

1,2-propanediol-trehalose mixture as a potent quantitative real-time PCR enhancer

. 2011 Apr 18 ; 11 () : 41. [epub] 20110418

Transmembrane adaptor proteins in the high-affinity IgE receptor signaling

. 2011 ; 2 () : 95. [epub] 20120111

Down-regulation of protein-tyrosine phosphatases activates an immune receptor in the absence of its translocation into lipid rafts

. 2010 Apr 23 ; 285 (17) : 12787-802. [epub] 20100215

Najít záznam

Citační ukazatele

Nahrávání dat ...

    Možnosti archivace