小儿慢性髓性白血病种系变异比例较高

IF 27.7 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Cancer Pub Date : 2024-09-26 DOI:10.1186/s12943-024-02109-5
Manuela Krumbholz, Anna Dolnik, Eric Sträng, Tabita Ghete, Sabrina Skambraks, Stephan Hutter, Alfred Simonis, Frank Stegelmann, Meinolf Suttorp, Anselm H.C. Horn, Heinrich Sticht, Torsten Haferlach, Lars Bullinger, Markus Metzler
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引用次数: 0

摘要

慢性髓性白血病(CML)通常发生在成年晚期。小儿 CML 是一种罕见的白血病。在所有年龄组中,该病的特征性遗传驱动因素是 BCR::ABL1 融合基因。然而,其他基因组事件也会导致白血病转化,而儿科 CML 中的这种情况尚未得到很好的描述。我们研究了小儿 CML 的基因突变情况,以确定易感性种系变异是否会在疾病的早期发展中发挥作用。我们对小儿和成人 CML 样本进行了全外显子组测序和靶向测序,以鉴定除 BCR::ABL1 易位外与年龄相关的种系和体细胞变异。约60%的儿科CML患者检测到了种系变异,受影响的主要是造血基因,最常见的是ASXL1、NOTCH1、KDM6B和TET2。在成年 CML 患者中,种系变异的数量要少得多。如果仅将已证实的致病变异视为癌症易感变异,那么小儿 CML 的发生率约为 10%,这与其他血液恶性肿瘤和大多数儿童癌症的发生率相当。我们推测,与强致癌基因 BCR::ABL1 相互作用的同一基因中的较弱变异也可能有利于白血病的发生。在儿科患者中,与克隆性造血相关的基因的种系变异可能会增加偶然的 BCR::ABL1 易位引发 CML 早期表现的可能性。
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A high proportion of germline variants in pediatric chronic myeloid leukemia
Chronic myeloid leukemia (CML) typically occurs in late adulthood. Pediatric CML is a rare form of leukemia. In all age groups, the characteristic genetic driver of the disease is the BCR::ABL1 fusion gene. However, additional genomic events contribute to leukemic transformation, which is not yet well-characterized in pediatric CML. We investigated the mutational landscape of pediatric CML to determine whether predisposing germline variants may play a role in early-age disease development. Whole exome sequencing and targeted sequencing were performed in pediatric and adult CML samples to identify age-related germline and somatic variants in addition to the BCR::ABL1 translocation. Germline variants were detected in about 60% of pediatric patients with CML, with predominantly hematopoietic genes affected, most frequently ASXL1, NOTCH1, KDM6B, and TET2. The number of germline variants was significantly lower in adult patients with CML. If only confirmed pathogenic variants were regarded as cancer-predisposing variants, the occurrence was ~ 10% of pediatric CML, which is comparable to other hematological malignancies and most childhood cancer entities in general. We hypothesize that the interaction with the strong oncogene BCR::ABL1 may also favor the development of leukemia by weaker variants in the same genes. In pediatric patients, the germline variants of genes associated with clonal hematopoiesis may increase the likelihood that an incidental BCR::ABL1 translocation triggers the early manifestation of CML.
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来源期刊
Molecular Cancer
Molecular Cancer 医学-生化与分子生物学
CiteScore
54.90
自引率
2.70%
发文量
224
审稿时长
2 months
期刊介绍: Molecular Cancer is a platform that encourages the exchange of ideas and discoveries in the field of cancer research, particularly focusing on the molecular aspects. Our goal is to facilitate discussions and provide insights into various areas of cancer and related biomedical science. We welcome articles from basic, translational, and clinical research that contribute to the advancement of understanding, prevention, diagnosis, and treatment of cancer. The scope of topics covered in Molecular Cancer is diverse and inclusive. These include, but are not limited to, cell and tumor biology, angiogenesis, utilizing animal models, understanding metastasis, exploring cancer antigens and the immune response, investigating cellular signaling and molecular biology, examining epidemiology, genetic and molecular profiling of cancer, identifying molecular targets, studying cancer stem cells, exploring DNA damage and repair mechanisms, analyzing cell cycle regulation, investigating apoptosis, exploring molecular virology, and evaluating vaccine and antibody-based cancer therapies. Molecular Cancer serves as an important platform for sharing exciting discoveries in cancer-related research. It offers an unparalleled opportunity to communicate information to both specialists and the general public. The online presence of Molecular Cancer enables immediate publication of accepted articles and facilitates the presentation of large datasets and supplementary information. This ensures that new research is efficiently and rapidly disseminated to the scientific community.
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