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Molecular and Clinical Characterization of a Founder Mutation Causing G6PC3 Deficiency

JOURNAL OF CLINICAL IMMUNOLOGY(2025)

Vanderbilt University Medical Center | The Charles Bronfman Institute for Personalized Medicine | National Institute of Pediatrics | National Medical Center XXI Century | Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán

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Abstract
G6PC3 deficiency is a monogenic immunometabolic disorder that causes severe congenital neutropenia type 4. Patients display heterogeneous extra-hematological manifestations, contributing to delayed diagnosis. Here, we investigated the origin and functional consequence of the G6PC3 c.210delC variant found in patients of Mexican descent. Based on the shared haplotypes amongst mutation carriers, we estimated that this variant originated from a founder effect in a common ancestor. Furthermore, by ancestry analysis, we concluded that it appeared in the indigenous Mexican population. At the protein level, we showed that this frameshift mutation leads to an aberrant protein expression in overexpression and patient-derived Epstein-Barr Virus-immortalized B (EBV-B) cells. The neutropenia observed in G6PC3-deficient patients is driven by the intracellular accumulation of the metabolite 1,5-anhydroglucitol-6-phosphate (1,5-AG6P) that inhibits glycolysis. We characterized how the c.210delC variant impacts glycolysis by performing extracellular flux assays on patient-derived EBV-B cells. When treated with 1,5-anhydroglucitol (1,5-AG), the precursor to 1,5-AG6P, patient cells exhibited markedly reduced engagement of glycolysis. Finally, we compared the clinical presentation of patients with the mutation c.210delC and all other G6PC3-deficient patients reported in the literature, and we found that the c.210delC carriers display all prominent clinical features observed in prior patients. In conclusion, G6PC3 c.210delC is a loss-of-function mutation that arose from a founder effect in the indigenous Mexican population. These findings may facilitate the diagnosis of additional patients in this geographical area. Moreover, the in vitro 1,5-AG-dependent functional assay used in our study could be employed to assess the pathogenicity of additional G6PC3 variants.
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Key words
Inborn errors of immunity,Primary immunodeficiency,Severe congenital neutropenia,G6PC3 deficiency,Founder effect,Metabolic dysfunction
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要点】:研究揭示了G6PC3基因c.210delC变异的起源、功能后果及其与墨西哥裔患者G6PC3缺陷型免疫代谢疾病的关联。

方法】:通过共享单倍型分析、系谱分析和细胞水平上的蛋白质功能测试,研究了c.210delC变异的影响。

实验】:在患者来源的EBV-B细胞中进行了细胞外通量测定,并使用1,5-脱水葡萄糖(1,5-AG)作为1,5-AG6P的前体,以评估变异对糖酵解的影响;具体数据集名称未在文中提供。结果显示,变异携带者细胞在1,5-AG处理后糖酵解显著减少。