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The double-hit signature identifies double-hit diffuse large B-cell lymphoma with genetic events cryptic to FISH

机译:双击签名识别双击弥漫性大B细胞淋巴瘤,遗传活动隐尿捕捞

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High-grade B-cell lymphomas with MYC and BCL2 and/or BCL6 rearrangements (HGBL-DH/THs) include a group of diffuse large B-cell lymphomas (DLBCLs) with inferior outcomes after standard chemoimmunotherapy. We recently described a gene expression signature that identifies 27% of germinal center B-cell DLBCLs (GCB-DLBCLs) as having a double-hit-like expression pattern (DHITsig) and inferior outcomes; however, only half of these cases have both MYC and BCL2 translocations identifiable using standard breakapart fluorescence in situ hybridization (FISH). Here, 20 DHITsig(+) GCB-DLBCLs apparently lacking MYC and/or BCL2 rearrangements underwent whole-genome sequencing. This revealed 6 tumors with MYC or BCL2 rearrangements that were cryptic to breakapart FISH. Copy-number analysis identified 3 tumors with MYC and 6 tumors with MIR17HG gains or amplifications, both of which may contribute to dysregulation of MYC and its downstream pathways. Focal deletions of the PVT1 promoter were observed exclusively among DHITsig(+) tumors lacking MYC translocations; this may also contribute to MYC overexpression. These results highlight that FISH fails to identify all HGBL-DH/THs, while revealing a range of other genetic mechanisms potentially underlying MYC dysregulation in DHITsig(+) DLBCL, suggesting that gene expression profiling is more sensitive for identifying the biology underlying poor outcomes in GCB-DLBCL.
机译:具有MyC和BCl2和/或BCL6重排(HGBL-DH / THS)的高级B细胞淋巴瘤(HGBL-DH / TH)包括一组弥漫性大B细胞淋巴瘤(DLBCL),后标准化疗后疗法后的差异。我们最近描述了一种基因表达特征,其将27%的生发中心B细胞DLBCLS(GCB-DLBCLS)鉴定为具有双击样表达模式(DHITSIG)和劣质结果;然而,这些病例中的一半具有MYC和BCL2易位,使用原位杂交(FISH)的标准Breakapart荧光可识别。这里,显然缺乏Myc和/或Bcl2重排的20dhitsig(+)GCB-DLBCLS接受了全基因组测序。这揭示了6种肿瘤,Myc或Bcl2重排部是对Fishapart Firs的密码。复印编号分析鉴定了3种肿瘤,具有myc和6种肿瘤,具有miR17hg增益或扩增,两者都可能有助于Myc及其下游途径的失调。 PVT1启动子的局灶性缺失仅在缺乏MYC易位的Dhitsig(+)肿瘤中观察到;这也可能有助于Myc过表达。这些结果突出了鱼类未能识别所有HGBL-DH / THS,同时揭示潜在地潜在地潜在地依赖于DHITSIG(+)DLBCL的遗传机制,表明基因表达分析更敏感,以识别生物差异差异gcb-dlbcl。

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