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扩大 TUBB1 相关性血小板减少症的遗传谱。

Expanding the genetic spectrum of TUBB1-related thrombocytopenia.

机构信息

Servicio de Hematología y Oncología Médica, Hospital Universitario Morales Meseguer, Centro Regional de Hemodonación, Universidad de Murcia, Instituto Murciano de Investigación Biosanitaria-Arrixaca, Centro de Investigacién Biomódica en Red de Enfermedades Raras-U765, Murcia, Spain.

Department of Medicine and Surgery, University of Perugia, Perugia, Italy.

出版信息

Blood Adv. 2021 Dec 28;5(24):5453-5467. doi: 10.1182/bloodadvances.2020004057.

Abstract

β1-Tubulin plays a major role in proplatelet formation and platelet shape maintenance, and pathogenic variants in TUBB1 lead to thrombocytopenia and platelet anisocytosis (TUBB1-RT). To date, the reported number of pedigrees with TUBB1-RT and of rare TUBB1 variants with experimental demonstration of pathogenicity is limited. Here, we report 9 unrelated families presenting with thrombocytopenia carrying 6 β1-tubulin variants, p.Cys12LeufsTer12, p.Thr107Pro, p.Gln423*, p.Arg359Trp, p.Gly109Glu, and p.Gly269Asp, the last of which novel. Segregation studies showed incomplete penetrance of these variants for platelet traits. Indeed, most carriers showed macrothrombocytopenia, some only increased platelet size, and a minority had no abnormalities. Moreover, only homozygous carriers of the p.Gly109Glu variant displayed macrothrombocytopenia, highlighting the importance of allele burden in the phenotypic expression of TUBB1-RT. The p.Arg359Trp, p.Gly269Asp, and p.Gly109Glu variants deranged β1-tubulin incorporation into the microtubular marginal ring in platelets but had a negligible effect on platelet activation, secretion, or spreading, suggesting that β1-tubulin is dispensable for these processes. Transfection of TUBB1 missense variants in CHO cells altered β1-tubulin incorporation into the microtubular network. In addition, TUBB1 variants markedly impaired proplatelet formation from peripheral blood CD34+ cell-derived megakaryocytes. Our study, using in vitro modeling, molecular characterization, and clinical investigations provides a deeper insight into the pathogenicity of rare TUBB1 variants. These novel data expand the genetic spectrum of TUBB1-RT and highlight a remarkable heterogeneity in its clinical presentation, indicating that allelic burden or combination with other genetic or environmental factors modulate the phenotypic impact of rare TUBB1 variants.

摘要

β1-微管蛋白在血小板形成和血小板形状维持中起主要作用,TUBB1 中的致病性变异导致血小板减少和血小板大小不均(TUBB1-RT)。迄今为止,报道的 TUBB1-RT 家系数量和具有实验证明致病性的罕见 TUBB1 变异数量有限。在这里,我们报告了 9 个无关的家系,这些家系表现为血小板减少,携带 6 种β1-微管蛋白变异,p.Cys12LeufsTer12、p.Thr107Pro、p.Gln423*、p.Arg359Trp、p.Gly109Glu 和 p.Gly269Asp,其中最后一种是新的。遗传研究表明,这些变异对血小板特征的不完全外显率。事实上,大多数携带者表现为巨血小板减少症,有些仅增加血小板大小,少数没有异常。此外,只有 p.Gly109Glu 变异的纯合子携带者表现为巨血小板减少症,这突出了等位基因负担在 TUBB1-RT 表型表达中的重要性。p.Arg359Trp、p.Gly269Asp 和 p.Gly109Glu 变异破坏了血小板微管边缘环中β1-微管蛋白的掺入,但对血小板激活、分泌或扩展几乎没有影响,这表明β1-微管蛋白对于这些过程不是必需的。在 CHO 细胞中转染 TUBB1 错义变异会改变β1-微管蛋白掺入微管网络。此外,TUBB1 变异显著损害了外周血 CD34+细胞衍生的巨核细胞中的前血小板形成。我们的研究使用体外建模、分子特征分析和临床研究,深入了解罕见 TUBB1 变异的致病性。这些新数据扩展了 TUBB1-RT 的遗传谱,并突出了其临床表现的显著异质性,表明等位基因负担或与其他遗传或环境因素的组合调节了罕见 TUBB1 变异的表型影响。

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