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一种导致血小板减少症4的新型CYCS基因变异降低半胱天冬酶活性:三代研究

A novel thrombocytopenia-4-causing CYCS gene variant decreases caspase activity: Three-generation study.

作者信息

Štika Jiří, Pešová Michaela, Kozubík Kateřina Staňo, Skalníková Magdalena, Dostálová Lenka, Loja Tomáš, Radová Lenka, Palušová Veronika, Réblová Kamila, Vrzalová Zuzana, Blaháková Ivona, Trizuljak Jakub, Uldrijan Stjepan, Blatný Jan, Šmída Michal, Pospíšilová Šárka, Doubek Michael

机构信息

Center of Molecular Medicine, CEITEC - Central European Institute of Technology, Masaryk University, Brno, Czechia.

Institute of Medical Genetics and Genomics, Faculty of Medicine, Masaryk University and University Hospital Brno, Brno, Czechia.

出版信息

Br J Haematol. 2024 Dec;205(6):2450-2458. doi: 10.1111/bjh.19694. Epub 2024 Aug 27.

Abstract

The CYCS gene is highly evolutionarily conserved, with only a few pathogenic variants that cause thrombocytopenia-4 (THC4). Here, we report a novel CYCS variant NM_018947.6: c.59C>T [NP_061820.1:p.(Thr20Ile)] segregating with thrombocytopenia in three generations of a Czech family. The phenotype of the patients corresponds to THC4 with platelets of normal size and morphology and dominant inheritance. Intriguingly, a gradual decline in platelet counts was observed across generations. CRISPR/Cas9-mediated gene editing was used to introduce the new CYCS gene variant into a megakaryoblast cell line (MEG-01). Subsequently, the adhesion, shape, size, ploidy, viability, mitochondrial respiration, cytochrome c protein (CYCS) expression, cell surface antigen expression and caspase activity were analysed in cells carrying the studied variant. Interestingly, the variant decreases the expression of CYCS while increasing mitochondrial respiration and the expression of CD9 cell surface antigen. Surprisingly, the variant abates caspase activation, contrasting with previously known effects of other CYCS variants. Some reports indicate that caspases may be involved in thrombopoiesis; thus, the observed dysregulation of caspase activity might contribute to thrombocytopenia. The findings significantly enhance our understanding of the molecular mechanisms underlying inherited thrombocytopenia and may have implications for diagnosis, prognosis and future targeted therapies.

摘要

CYCS基因在进化上高度保守,仅有少数致病变异可导致血小板减少症4(THC4)。在此,我们报告了一个新的CYCS变异体NM_018947.6:c.59C>T [NP_061820.1:p.(Thr20Ile)],在一个捷克家族的三代人中与血小板减少症共分离。患者的表型与THC4相符,血小板大小和形态正常,呈显性遗传。有趣的是,观察到各代血小板计数逐渐下降。利用CRISPR/Cas9介导的基因编辑将新的CYCS基因变异体导入巨核母细胞系(MEG-01)。随后,对携带所研究变异体的细胞的黏附、形状、大小、倍性、活力、线粒体呼吸、细胞色素c蛋白(CYCS)表达、细胞表面抗原表达和半胱天冬酶活性进行了分析。有趣的是,该变异体降低了CYCS的表达,同时增加了线粒体呼吸和CD9细胞表面抗原的表达。令人惊讶的是,该变异体减弱了半胱天冬酶的激活,这与其他CYCS变异体的已知作用形成对比。一些报告表明,半胱天冬酶可能参与血小板生成;因此,观察到的半胱天冬酶活性失调可能导致血小板减少。这些发现显著增强了我们对遗传性血小板减少症潜在分子机制的理解,可能对诊断、预后和未来的靶向治疗具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aff2/11637729/db213d3ef751/BJH-205-2450-g004.jpg

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