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Whole-genome sequencing reveals oncogenic mutations in mycosis fungoides

机译:全基因组测序揭示了真菌病真菌中的致癌突变

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摘要

The pathogenesis of mycosis fungoides (MF), the most common cutaneous T-cell lymphoma (CTCL), is unknown. Although genetic alterations have been identified, none are considered consistently causative in MF. To identify potential drivers of MF, we performed whole-genome sequencing of MF tumors and matched normal skin. Targeted ultra-deep sequencing of MF samples and exome sequencing of CTCL cell lines were also performed. Multiple mutations were identified that affected the same pathways, including epigenetic, cell-fate regulation, and cytokine signaling, in MF tumors and CTCL cell lines. Specifically, interleukin-2 signaling pathway mutations, including activating Janus kinase 3 (JAK3) mutations, were detected. Treatment with a JAK3 inhibitor significantly reduced CTCL cell survival. Additionally, the mutation data identified 2 other potential contributing factors to MF, ultraviolet light, and a polymorphism in the tumor suppressor p53 (TP53). Therefore, genetic alterations in specific pathways in MF were identified that may be viable, effective new targets for treatment.
机译:蕈样真菌病(MF)是最常见的皮肤T细胞淋巴瘤(CTCL)的发病机制,目前尚不清楚。尽管已经鉴定出遗传改变,但在MF中,没有一个被认为是一致的病因。为了确定潜在的MF驱动因素,我们对MF肿瘤进行了全基因组测序,并匹配了正常皮肤。还进行了MF样品的靶向超深测序和CTCL细胞系的外显子组测序。在MF肿瘤和CTCL细胞系中,已鉴定出多个影响相同途径的突变,包括表观遗传,细胞命运调控和细胞因子信号传导。具体而言,检测到白细胞介素2信号通路突变,包括激活的Janus激酶3(JAK3)突变。用JAK3抑制剂治疗可显着降低CTCL细胞存活率。此外,突变数据还确定了另外两个可能导致MF,紫外线和肿瘤抑制因子p53(TP53)多态性的潜在因素。因此,发现MF中特定途径的遗传改变可能是可行的,有效的治疗新靶标。

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