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对携带胚系 RUNX1 突变的患者进行血小板转录组分析。

Platelet transcriptome analysis in patients with germline RUNX1 mutations.

机构信息

Servicio de Hematología y Oncología Médica, Hospital Universitario Morales Meseguer, Centro Regional de Hemodonación, Universidad de Murcia, IMIB-Pascual Parrilla, CIBERER-U765, Murcia, Spain.

Department of Hematology, Complejo Asistencial Universitario de Salamanca (CAUSA), Instituto de Investigación Biomédica de Salamanca (IBSAL), Universidad de Salamanca (USAL), Salamanca, Spain.

出版信息

J Thromb Haemost. 2023 May;21(5):1352-1365. doi: 10.1016/j.jtha.2023.01.023. Epub 2023 Feb 1.

Abstract

BACKGROUND

Germline mutations in RUNX1 can cause a familial platelet disorder that may lead to acute myeloid leukemia, an autosomal dominant disorder characterized by moderate thrombocytopenia, platelet dysfunction, and a high risk of developing acute myeloid leukemia or myelodysplastic syndrome. Discerning the pathogenicity of novel RUNX1 variants is critical for patient management.

OBJECTIVES

To extend the characterization of RUNX1 variants and evaluate their effects by transcriptome analysis.

METHODS

Three unrelated patients with long-standing thrombocytopenia carrying heterozygous RUNX1 variants were included: P1, who is a subject with recent development of myelodysplastic syndrome, with c.802 C>T[p.Gln268∗] de novo; P2 with c.586A>G[p.Thr196Ala], a variant that segregates with thrombocytopenia and myeloid neoplasia in the family; and P3 with c.476A>G[p.Asn159Ser], which did not segregate with thrombocytopenia or neoplasia. Baseline platelet evaluations were performed. Ultrapure platelets were prepared for platelet transcriptome analysis.

RESULTS

In P1 and P2, but not in P3, transcriptome analysis confirmed aberrant expression of genes recognized as RUNX1 targets. Data allowed grouping patients by distinct gene expression profiles, which were partitioned with clinical parameters. Functional studies and platelet mRNA expression identified alterations in the actin cytoskeleton, downregulation of GFI1B, defective GPVI downstream signaling, and reduction of alpha granule proteins, such as thrombospondin-1, as features likely implicated in thrombocytopenia and platelet dysfunction.

CONCLUSION

Platelet phenotype, familial segregation, and platelet transcriptomics support the pathogenicity of RUNX1 variants p.Gln268∗ and p.Thr196Ala, but not p.Asn159Ser. This study is an additional proof of concept that platelet RNA analysis could be a tool to help classify pathogenic RUNX1 variants and identify novel RUNX1 targets.

摘要

背景

RUNX1 种系突变可导致家族性血小板疾病,从而导致常染色体显性疾病,表现为中度血小板减少症、血小板功能障碍以及发生急性髓系白血病或骨髓增生异常综合征的高风险。辨别新 RUNX1 变体的致病性对于患者管理至关重要。

目的

通过转录组分析扩展 RUNX1 变体的特征并评估其作用。

方法

纳入了 3 位患有长期血小板减少症的无血缘关系的患者,他们携带杂合 RUNX1 变体:P1 为近期发生骨髓增生异常综合征的患者,存在从头发生的 c.802 C>T[p.Gln268∗];P2 为携带 c.586A>G[p.Thr196Ala]变体的患者,该变体与家族中的血小板减少症和髓系肿瘤相关;P3 为携带 c.476A>G[p.Asn159Ser]的患者,该变体与血小板减少症或肿瘤无关。对患者进行基线血小板评估。为了进行血小板转录组分析,制备了超纯血小板。

结果

在 P1 和 P2 中,但不在 P3 中,转录组分析证实了被认为是 RUNX1 靶标的基因的异常表达。数据可以根据不同的基因表达谱对患者进行分组,这些分组与临床参数相关。功能研究和血小板 mRNA 表达显示,肌动蛋白细胞骨架发生改变,GFI1B 下调,GPVI 下游信号传导受损,以及 alpha 颗粒蛋白(如血小板反应蛋白-1)减少,这些都可能与血小板减少症和血小板功能障碍有关。

结论

血小板表型、家族性分离和血小板转录组学支持 RUNX1 变体 p.Gln268∗和 p.Thr196Ala 的致病性,但不支持 p.Asn159Ser 的致病性。这项研究进一步证明了血小板 RNA 分析可以作为帮助分类致病性 RUNX1 变体和鉴定新的 RUNX1 靶标的工具。

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