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Reduced G protein signaling despite impaired internalization and β-arrestin recruitment in patients carrying a CXCR4Leu317fsX3 mutation causing WHIM syndrome
Rajesh Kumar, Samantha Milanesi, Martyna Szpakowska, Laura Dotta, Dario Di Silvestre, Anna Maria Trotta, Anna Maria Bello, Mauro Giacomelli, Manuela Benedito, Joana Azevedo, Alexandra Pereira, Emilia Cortesao, Alessandro Vacchini, Alessandra Castagna, Marinella Pinelli, Daniele Moratto, Raffaella Bonecchi, Massimo Locati, Stefania Scala, Andy Chevigné, Elena M. Borroni, Raffaele Badolato
Rajesh Kumar, Samantha Milanesi, Martyna Szpakowska, Laura Dotta, Dario Di Silvestre, Anna Maria Trotta, Anna Maria Bello, Mauro Giacomelli, Manuela Benedito, Joana Azevedo, Alexandra Pereira, Emilia Cortesao, Alessandro Vacchini, Alessandra Castagna, Marinella Pinelli, Daniele Moratto, Raffaella Bonecchi, Massimo Locati, Stefania Scala, Andy Chevigné, Elena M. Borroni, Raffaele Badolato
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Research Article Cell biology Immunology

Reduced G protein signaling despite impaired internalization and β-arrestin recruitment in patients carrying a CXCR4Leu317fsX3 mutation causing WHIM syndrome

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Abstract

WHIM syndrome is an inherited immune disorder caused by an autosomal dominant heterozygous mutation in CXCR4. The disease is characterized by neutropenia/leukopenia (secondary to retention of mature neutrophils in bone marrow), recurrent bacterial infections, treatment-refractory warts, and hypogammaglobulinemia. All mutations reported in WHIM patients lead to the truncations in the C-terminal domain of CXCR4, R334X being the most frequent. This defect prevents receptor internalization and enhances both calcium mobilization and ERK phosphorylation, resulting in increased chemotaxis in response to the unique ligand CXCL12. Here, we describe 3 patients presenting neutropenia and myelokathexis, but normal lymphocyte count and immunoglobulin levels, carrying what we believe to be a novel Leu317fsX3 mutation in CXCR4, leading to a complete truncation of its intracellular tail. The analysis of the L317fsX3 mutation in cells derived from patients and in vitro cellular models reveals unique signaling features in comparison with R334X mutation. The L317fsX3 mutation impairs CXCR4 downregulation and β-arrestin recruitment in response to CXCL12 and reduces other signaling events — including ERK1/2 phosphorylation, calcium mobilization, and chemotaxis — all processes that are typically enhanced in cells carrying the R334X mutation. Our findings suggest that, overall, the L317fsX3 mutation may be causative of a form of WHIM syndrome not associated with an augmented CXCR4 response to CXCL12.

Authors

Rajesh Kumar, Samantha Milanesi, Martyna Szpakowska, Laura Dotta, Dario Di Silvestre, Anna Maria Trotta, Anna Maria Bello, Mauro Giacomelli, Manuela Benedito, Joana Azevedo, Alexandra Pereira, Emilia Cortesao, Alessandro Vacchini, Alessandra Castagna, Marinella Pinelli, Daniele Moratto, Raffaella Bonecchi, Massimo Locati, Stefania Scala, Andy Chevigné, Elena M. Borroni, Raffaele Badolato

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Figure 4

Comparison of the G protein interaction, activation, and signaling of CXCR4WT and WHIM-mutated variants.

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Comparison of the G protein interaction, activation, and signaling of CX...
(A) HEK293T cells were transiently transfected with SmBiT-tagged CXCR4WT and WHIM-mutated variants, and LgBiT-tagged miniGi. Recruitment of miniGi to CXCR4 was evaluated upon treatment with 0.01–300 nM CXCL12 for 20 minutes. (B) HEK293T cells were transiently transfected with nanoluciferase-tagged Gα subunit and Venus-tagged Gβγ dimer. G protein subunit dissociation following WT or WHIM CXCR4 variant activation was evaluated as BRET signal upon treatment with CXCL12 at indicated concentrations. (C and D) HEK293T cells were transfected with CXCR4-encoding pIRES vector, calmodulin C-terminally fused to SmBiT, and MYLK2S N-terminally fused to LgBiT vectors. Calcium flux was evaluated over 2 minutes by luminescence upon stimulation with CXCL12. Results are presented as concentration-response curves (C) and signal evolution over time for CXCL12 at 1 nM (D). (E and F) HEK293T cells were stably transfected with HA-tagged CXCR4WT and WHIM-mutated variants. cAMP levels were evaluated by luminescence for AlphaScreen signal upon treatment with 0.1–1000 nM CXCL12 for 30 minutes (E) or 200 nM CXCL12 (circles) and vehicle (squares) for the indicated times (F). cps, count per second. Data are expressed as fold (A, C, and D) or percentage (E) over untreated cells and are shown as mean ± SEM of 2 (E) and 3 (A–D and F) independent experiments. EC50 and Emax were obtained by nonlinear regression curve fitting using GraphPad software analysis (Table 2). Black lines, CXCR4WT; red lines, CXCR4R334X; blue lines, CXCR4L317fsX3.

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