Novel SYK Variant Causes Enhanced SYK Autophosphorylation and PI3K Activation in an Antibody-Deficient Patient.

IF 5.7 2区 医学 Q1 IMMUNOLOGY
Emily S J Edwards, Josh Chatelier, Gregory I Snell, Go Hun Seo, Rin Khang, Robyn E O'Hehir, Julian J Bosco, Menno C van Zelm
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引用次数: 0

Abstract

Background: Inborn errors of immunity (IEI) affecting B-cell receptor signaling cause predominantly antibody deficiency (PAD) with varying degrees of severity. Recently, four heterozygous variants in SYK were reported to cause hypogammaglobulinemia, multiorgan inflammatory disease and diffuse large B-cell lymphoma.

Objective: We aimed to unravel the genetic and functional cause of PAD in a 43-year-old female presenting with hypogammaglobulinemia, congenital heart disease and pulmonary hypertension requiring lung transplantation.

Methods: Patient gDNA was subjected to whole-exome and Sanger sequencing. Blood B- and T-cell subsets, as well as tonic and antigen-receptor induced expression levels of phosphorylated-SYK, phosphorylated-ribosomal S6 and phosphorylated p38 were evaluated by flow cytometry.

Results: A novel heterozygous missense SYK variant was identified, mutating a residue in the protein kinase domain (c.1769G > A; p.R590Q), which is highly conserved across vertebrates. While total B- and T-cell numbers were within the normal range, the patient had reduced unswitched and class-switched memory B-cell numbers. Resting B cells from the patient demonstrated enhanced autophosphorylation of SYK, and tonic and ligand-induced phospho-S6 levels. Spontaneous SYK autophosphorylation, S6 and p38 phosphorylation were recapitulated in a pre-clinical cell model, i.e. expression of the SYK R590Q variant in HEK293T cells.

Conclusions: We identified a novel gain-of-function variant in SYK to underlie hypogammaglobulinemia and atypical autoinflammatory disease. Flowcytometric screening for phospho-S6 in lymphocytes of IEI patients can guide genetic diagnosis of B-cell signaling abnormalities.

Abstract Image

Abstract Image

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新的SYK变异导致抗体缺陷患者SYK自身磷酸化和PI3K激活增强。
背景:影响b细胞受体信号传导的先天性免疫错误(IEI)主要引起不同程度严重程度的抗体缺陷(PAD)。最近,SYK的四种杂合变异被报道导致低γ球蛋白血症、多器官炎症性疾病和弥漫性大b细胞淋巴瘤。目的:我们旨在揭示一名43岁女性PAD的遗传和功能原因,该患者表现为低γ球蛋白血症、先天性心脏病和肺动脉高压,需要肺移植。方法:对患者gDNA进行全外显子组测序和Sanger测序。通过流式细胞术评估血B细胞亚群和t细胞亚群,以及强补性和抗原受体诱导的磷酸化syk、磷酸化核糖体S6和磷酸化p38的表达水平。结果:发现了一种新的杂合错义SYK变异,突变了蛋白激酶结构域(c.1769G > A; p.R590Q)的残基,该残基在脊椎动物中高度保守。虽然总B细胞和t细胞数量在正常范围内,但患者未切换和类别切换的记忆B细胞数量减少。来自患者的静息B细胞显示SYK的自磷酸化增强,以及强补性和配体诱导的磷酸化- s6水平。在临床前细胞模型中再现了SYK自发自磷酸化、S6和p38磷酸化,即SYK R590Q变体在HEK293T细胞中的表达。结论:我们在SYK中发现了一种新的功能获得变异,它是低γ球蛋白血症和非典型自身炎症疾病的基础。流式细胞术筛查IEI患者淋巴细胞磷酸化- s6可指导b细胞信号异常的遗传学诊断。
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来源期刊
CiteScore
12.20
自引率
9.90%
发文量
218
审稿时长
2 months
期刊介绍: The Journal of Clinical Immunology publishes impactful papers in the realm of human immunology, delving into the diagnosis, pathogenesis, prognosis, or treatment of human diseases. The journal places particular emphasis on primary immunodeficiencies and related diseases, encompassing inborn errors of immunity in a broad sense, their underlying genotypes, and diverse phenotypes. These phenotypes include infection, malignancy, allergy, auto-inflammation, and autoimmunity. We welcome a broad spectrum of studies in this domain, spanning genetic discovery, clinical description, immunologic assessment, diagnostic approaches, prognosis evaluation, and treatment interventions. Case reports are considered if they are genuinely original and accompanied by a concise review of the relevant medical literature, illustrating how the novel case study advances the field. The instructions to authors provide detailed guidance on the four categories of papers accepted by the journal.
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