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Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene

BACKGROUND: Activated phosphoinositide 3 kinase (PI3K) -delta syndrome (APDS) is an inborn error of immunity with variable clinical phenotype of immunodeficiency and immune dysregulation and caused by gain-of-function mutations in PIK3CD. The hallmark of immune phenotype is increased proportions of...

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Autores principales: Wang, Wenjie, Min, Qing, Lai, Nannan, Csomos, Krisztian, Wang, Ying, Liu, Luyao, Meng, Xin, Sun, Jinqiao, Hou, Jia, Ying, Wenjing, Zhou, Qinhua, Sun, Bijun, Hui, Xiaoying, Ujhazi, Boglarka, Gordon, Sumai, Buchbinder, David, Schuetz, Catharina, Butte, Manish, Walter, Jolan E., Wang, Xiaochuan, Wang, Ji-Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9253290/
https://www.ncbi.nlm.nih.gov/pubmed/35799777
http://dx.doi.org/10.3389/fimmu.2022.890073
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author Wang, Wenjie
Min, Qing
Lai, Nannan
Csomos, Krisztian
Wang, Ying
Liu, Luyao
Meng, Xin
Sun, Jinqiao
Hou, Jia
Ying, Wenjing
Zhou, Qinhua
Sun, Bijun
Hui, Xiaoying
Ujhazi, Boglarka
Gordon, Sumai
Buchbinder, David
Schuetz, Catharina
Butte, Manish
Walter, Jolan E.
Wang, Xiaochuan
Wang, Ji-Yang
author_facet Wang, Wenjie
Min, Qing
Lai, Nannan
Csomos, Krisztian
Wang, Ying
Liu, Luyao
Meng, Xin
Sun, Jinqiao
Hou, Jia
Ying, Wenjing
Zhou, Qinhua
Sun, Bijun
Hui, Xiaoying
Ujhazi, Boglarka
Gordon, Sumai
Buchbinder, David
Schuetz, Catharina
Butte, Manish
Walter, Jolan E.
Wang, Xiaochuan
Wang, Ji-Yang
author_sort Wang, Wenjie
collection PubMed
description BACKGROUND: Activated phosphoinositide 3 kinase (PI3K) -delta syndrome (APDS) is an inborn error of immunity with variable clinical phenotype of immunodeficiency and immune dysregulation and caused by gain-of-function mutations in PIK3CD. The hallmark of immune phenotype is increased proportions of transitional B cells and plasmablasts (PB), progressive B cell loss, and elevated levels of serum IgM. OBJECTIVE: To explore unique B cell subsets and the pathomechanisms driving B cell dysregulation beyond the transitional B cell stage in APDS. METHODS: Clinical and immunological data was collected from 24 patients with APDS. In five cases, we performed an in-depth analysis of B cell phenotypes and cultured purified naïve B cells to evaluate their survival, activation, Ig gene class switch recombination (CSR), PB differentiation and antibody secretion. We also analyzed PB differentiation capacity of sorted CD27(-)IgD(-) double-negative B (DNB) cells. RESULTS: The patients had increased B cell sizes and higher proportions of IgM(+) DNB cells than healthy controls (HC). Their naïve B cells exhibited increased death, impaired CSR but relatively normal PB differentiation. Upon stimulation, patient’s DNB cells secreted a similar level of IgG but a higher level of IgM than DNB cells from HC. Targeted therapy of PI3K inhibition partially restored B cell phenotypes. CONCLUSIONS: The present study suggests additional mechanistic insight into B cell pathology of APDS: (1) decreased peripheral B cell numbers may be due to the increased death of naïve B cells; (2) larger B cell sizes and expanded DNB population suggest enhanced activation and differentiation of naïve B cells into DNB cells; (3) the impaired CSR yet normal PB differentiation can predominantly generate IgM-secreting cells, resulting in elevated IgM levels.
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spelling pubmed-92532902022-07-06 Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene Wang, Wenjie Min, Qing Lai, Nannan Csomos, Krisztian Wang, Ying Liu, Luyao Meng, Xin Sun, Jinqiao Hou, Jia Ying, Wenjing Zhou, Qinhua Sun, Bijun Hui, Xiaoying Ujhazi, Boglarka Gordon, Sumai Buchbinder, David Schuetz, Catharina Butte, Manish Walter, Jolan E. Wang, Xiaochuan Wang, Ji-Yang Front Immunol Immunology BACKGROUND: Activated phosphoinositide 3 kinase (PI3K) -delta syndrome (APDS) is an inborn error of immunity with variable clinical phenotype of immunodeficiency and immune dysregulation and caused by gain-of-function mutations in PIK3CD. The hallmark of immune phenotype is increased proportions of transitional B cells and plasmablasts (PB), progressive B cell loss, and elevated levels of serum IgM. OBJECTIVE: To explore unique B cell subsets and the pathomechanisms driving B cell dysregulation beyond the transitional B cell stage in APDS. METHODS: Clinical and immunological data was collected from 24 patients with APDS. In five cases, we performed an in-depth analysis of B cell phenotypes and cultured purified naïve B cells to evaluate their survival, activation, Ig gene class switch recombination (CSR), PB differentiation and antibody secretion. We also analyzed PB differentiation capacity of sorted CD27(-)IgD(-) double-negative B (DNB) cells. RESULTS: The patients had increased B cell sizes and higher proportions of IgM(+) DNB cells than healthy controls (HC). Their naïve B cells exhibited increased death, impaired CSR but relatively normal PB differentiation. Upon stimulation, patient’s DNB cells secreted a similar level of IgG but a higher level of IgM than DNB cells from HC. Targeted therapy of PI3K inhibition partially restored B cell phenotypes. CONCLUSIONS: The present study suggests additional mechanistic insight into B cell pathology of APDS: (1) decreased peripheral B cell numbers may be due to the increased death of naïve B cells; (2) larger B cell sizes and expanded DNB population suggest enhanced activation and differentiation of naïve B cells into DNB cells; (3) the impaired CSR yet normal PB differentiation can predominantly generate IgM-secreting cells, resulting in elevated IgM levels. Frontiers Media S.A. 2022-06-21 /pmc/articles/PMC9253290/ /pubmed/35799777 http://dx.doi.org/10.3389/fimmu.2022.890073 Text en Copyright © 2022 Wang, Min, Lai, Csomos, Wang, Liu, Meng, Sun, Hou, Ying, Zhou, Sun, Hui, Ujhazi, Gordon, Buchbinder, Schuetz, Butte, Walter, Wang and Wang https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Wang, Wenjie
Min, Qing
Lai, Nannan
Csomos, Krisztian
Wang, Ying
Liu, Luyao
Meng, Xin
Sun, Jinqiao
Hou, Jia
Ying, Wenjing
Zhou, Qinhua
Sun, Bijun
Hui, Xiaoying
Ujhazi, Boglarka
Gordon, Sumai
Buchbinder, David
Schuetz, Catharina
Butte, Manish
Walter, Jolan E.
Wang, Xiaochuan
Wang, Ji-Yang
Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene
title Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene
title_full Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene
title_fullStr Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene
title_full_unstemmed Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene
title_short Cellular Mechanisms Underlying B Cell Abnormalities in Patients With Gain-of-Function Mutations in the PIK3CD Gene
title_sort cellular mechanisms underlying b cell abnormalities in patients with gain-of-function mutations in the pik3cd gene
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9253290/
https://www.ncbi.nlm.nih.gov/pubmed/35799777
http://dx.doi.org/10.3389/fimmu.2022.890073
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