TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS

BUDDE P, BEWARDER N, WEINRICH V, SCHULZECK O, Frey J (1994)
JOURNAL OF BIOLOGICAL CHEMISTRY 269(48): 30636-30644.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
BUDDE, P; BEWARDER, N; WEINRICH, V; SCHULZECK, O; Frey, JürgenUniBi
Abstract / Bemerkung
Human B cells express two closely related immunoglobulin G receptors, FcRIIb1 and FcRIIb2, which differ by a 19 amino acid insertion in the cytoplasmic tail of FcRIIb1. The cytoplasmic tails of both isoforms contain a conserved sequence motif (AENTITYSLL) essential for mediating endocytosis via FcRIIb2. Truncation of this motif abolished endocytosis, while replacement of tyrosine (Tyr-(273)) in FcRIIba by phenylalanine had no effect on the amount and kinetics of ligand uptake. Co-crosslinking of FcRIIb1 or FcRIIb2 with the antigen receptor on B cells led to an abortive calcium signal. Neither isoform interfered with the early intracellular calcium mobilization, but both prevented the opening of a plasma membrane calcium channel essential for a sustained elevated intracellular calcium level. Modulation of calcium channel activity is mediated by the same sequence motif essential for endocytosis but requires the pres- ence of Tyr(292) in FcRIIb1 and Tyr(273) in, FcRIIb2. Co-crosslinking of FcRIIb1 with surface IgG is associated with tyrosine phosphorylation of Tyr(292), whereas Tyr(272) in FcRIIb2 was not phosphorylated. Thus, FcRIIb phosphorylation is probably not directly involved in the modulation of the calcium signal but may be essential for further diversification of signals transduced via the coexpressed isoforms FcRIIb1 and FcRIIb2.
Erscheinungsjahr
1994
Zeitschriftentitel
JOURNAL OF BIOLOGICAL CHEMISTRY
Band
269
Ausgabe
48
Seite(n)
30636-30644
ISSN
0021-9258
Page URI
https://pub.uni-bielefeld.de/record/1642066

Zitieren

BUDDE P, BEWARDER N, WEINRICH V, SCHULZECK O, Frey J. TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS. JOURNAL OF BIOLOGICAL CHEMISTRY. 1994;269(48):30636-30644.
BUDDE, P., BEWARDER, N., WEINRICH, V., SCHULZECK, O., & Frey, J. (1994). TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS. JOURNAL OF BIOLOGICAL CHEMISTRY, 269(48), 30636-30644.
BUDDE, P, BEWARDER, N, WEINRICH, V, SCHULZECK, O, and Frey, Jürgen. 1994. “TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS”. JOURNAL OF BIOLOGICAL CHEMISTRY 269 (48): 30636-30644.
BUDDE, P., BEWARDER, N., WEINRICH, V., SCHULZECK, O., and Frey, J. (1994). TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS. JOURNAL OF BIOLOGICAL CHEMISTRY 269, 30636-30644.
BUDDE, P., et al., 1994. TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS. JOURNAL OF BIOLOGICAL CHEMISTRY, 269(48), p 30636-30644.
P. BUDDE, et al., “TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS”, JOURNAL OF BIOLOGICAL CHEMISTRY, vol. 269, 1994, pp. 30636-30644.
BUDDE, P., BEWARDER, N., WEINRICH, V., SCHULZECK, O., Frey, J.: TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS. JOURNAL OF BIOLOGICAL CHEMISTRY. 269, 30636-30644 (1994).
BUDDE, P, BEWARDER, N, WEINRICH, V, SCHULZECK, O, and Frey, Jürgen. “TYROSINE-CONTAINING SEQUENCE MOTIFS OF THE HUMAN-IMMUNOGLOBULIN-G RECEPTORS FCRIIB1 AND FCRIIB2 ESSENTIAL FOR ENDOCYTOSIS AND REGULATION OF CALCIUM FLUX IN B-CELLS”. JOURNAL OF BIOLOGICAL CHEMISTRY 269.48 (1994): 30636-30644.

27 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

The Human FcγRII (CD32) Family of Leukocyte FcR in Health and Disease.
Anania JC, Chenoweth AM, Wines BD, Hogarth PM., Front Immunol 10(), 2019
PMID: 30941127
Regulation of Monoclonal Antibody Immunotherapy by FcγRIIB.
Stopforth RJ, Cleary KL, Cragg MS., J Clin Immunol 36 Suppl 1(), 2016
PMID: 26922075
Upregulation of FcγRIIb on monocytes is necessary to promote the superagonist activity of TGN1412.
Hussain K, Hargreaves CE, Roghanian A, Oldham RJ, Chan HT, Mockridge CI, Chowdhury F, Frendéus B, Harper KS, Strefford JC, Cragg MS, Glennie MJ, Williams AP, French RR., Blood 125(1), 2015
PMID: 25395427
Inhibitory FcγRIIb (CD32b) becomes activated by therapeutic mAb in both cis and trans and drives internalization according to antibody specificity.
Vaughan AT, Iriyama C, Beers SA, Chan CH, Lim SH, Williams EL, Shah V, Roghanian A, Frendéus B, Glennie MJ, Cragg MS., Blood 123(5), 2014
PMID: 24227819
Fc gamma receptor IIb on GM-CSF macrophages controls immune complex mediated inhibition of inflammatory signals.
Santegoets KC, Wenink MH, van den Berg WB, Radstake TR., PLoS One 9(10), 2014
PMID: 25340460
New paradigms for functional HIV-specific nonneutralizing antibodies.
Forthal D, Hope TJ, Alter G., Curr Opin HIV AIDS 8(5), 2013
PMID: 23924999
FcγRIIB-nt645+25A/G gene polymorphism and periodontitis in Japanese women with preeclampsia.
Wang Y, Sugita N, Kikuchi A, Iwanaga R, Hirano E, Shimada Y, Sasahara J, Tanaka K, Yoshie H., Int J Immunogenet 39(6), 2012
PMID: 22594540
FcγRIIB polymorphisms, periodontitis and preterm birth in Japanese pregnant women.
Iwanaga R, Sugita N, Hirano E, Sasahara J, Kikuchi A, Tanaka K, Yoshie H., J Periodontal Res 46(3), 2011
PMID: 21338356
Fc gamma receptor IIb on target B cells promotes rituximab internalization and reduces clinical efficacy.
Lim SH, Vaughan AT, Ashton-Key M, Williams EL, Dixon SV, Chan HT, Beers SA, French RR, Cox KL, Davies AJ, Potter KN, Mockridge CI, Oscier DG, Johnson PW, Cragg MS, Glennie MJ., Blood 118(9), 2011
PMID: 21768293
Fc receptor-mediated antiviral antibodies.
Forthal DN, Moog C., Curr Opin HIV AIDS 4(5), 2009
PMID: 20048702
Lower antibody response to Porphyromonas gingivalis associated with immunoglobulin G Fcgamma receptor IIB polymorphism.
Honma Y, Sugita N, Kobayashi T, Abiko Y, Yoshie H., J Periodontal Res 43(6), 2008
PMID: 18705654
Expression profile of FcgammaRIIb on leukocytes and its dysregulation in systemic lupus erythematosus.
Su K, Yang H, Li X, Li X, Gibson AW, Cafardi JM, Zhou T, Edberg JC, Kimberly RP., J Immunol 178(5), 2007
PMID: 17312177
Receptor-mediated endocytosis of immune complexes in rat liver sinusoidal endothelial cells is mediated by FcgammaRIIb2.
Mousavi SA, Sporstøl M, Fladeby C, Kjeken R, Barois N, Berg T., Hepatology 46(3), 2007
PMID: 17680646
Molecular analysis of expression and function of hFcgammaRIIbl and b2 isoforms in myeloid cells.
Joshi T, Ganesan LP, Cao X, Tridandapani S., Mol Immunol 43(7), 2006
PMID: 16051361
Co-aggregation of FcgammaRII with FcepsilonRI on human mast cells inhibits antigen-induced secretion and involves SHIP-Grb2-Dok complexes.
Kepley CL, Taghavi S, Mackay G, Zhu D, Morel PA, Zhang K, Ryan JJ, Satin LS, Zhang M, Pandolfi PP, Saxon A., J Biol Chem 279(34), 2004
PMID: 15151996
FcgammaRIIB gene polymorphisms in Japanese periodontitis patients.
Yasuda K, Sugita N, Kobayashi T, Yamamoto K, Yoshie H., Genes Immun 4(8), 2003
PMID: 14647193
Molecular immunology--gene regulation and signal transduction.
Hopkins J., Vet Immunol Immunopathol 87(3-4), 2002
PMID: 12072242
Negative regulation of FcepsilonRI signaling by FcgammaRII costimulation in human blood basophils.
Kepley CL, Cambier JC, Morel PA, Lujan D, Ortega E, Wilson BS, Oliver JM., J Allergy Clin Immunol 106(2), 2000
PMID: 10932079
Epitope mapping of new monoclonal antibodies recognizing distinct human FcRII (CD32) isoforms.
Weinrich V, Sondermann P, Bewarder N, Wissel K, Frey J., Hybridoma 15(2), 1996
PMID: 8743290
Activation of B lymphocytes: integrating signals from CD19, CD22 and Fc gamma RIIb1.
Doody GM, Dempsey PW, Fearon DT., Curr Opin Immunol 8(3), 1996
PMID: 8793993
In vivo and in vitro specificity of protein tyrosine kinases for immunoglobulin G receptor (FcgammaRII) phosphorylation.
Bewarder N, Weinrich V, Budde P, Hartmann D, Flaswinkel H, Reth M, Frey J., Mol Cell Biol 16(9), 1996
PMID: 8756631
Contribution of the intracellular domain of murine Fc-gamma receptor type IIB1 to its tumor-enhancing potential.
Zusman T, Lisansky E, Arons E, Anavi R, Bonnerot C, Sautes C, Fridman WH, Witz IP, Ran M., Int J Cancer 68(2), 1996
PMID: 8900432
Integration of activatory and inhibitory signals in human B-cells.
Sármay G, Koncz G, Gergely J., Immunol Lett 54(2-3), 1996
PMID: 9052860

References

Daten bereitgestellt von Europe PubMed Central.

Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 7527034
PubMed | Europe PMC

Suchen in

Google Scholar