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Chromosomal instability determines taxane response

机译:染色体不稳定决定紫杉烷反应

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摘要

Microtubule-stabilizing (MTS) agents, such as taxanes, are important chemotherapeutics with a poorly understood mechanism of action. We identified a set of genes repressed in multiple cell lines in response to MTS agents and observed that these genes are overexpressed in tumors exhibiting chromosomal instability (CIN). Silencing 22/50 of these genes, many of which are involved in DNA repair, caused cancer cell death, suggesting that these genes are involved in the survival of aneuploid cells. Overexpression of these “CIN-survival” genes is associated with poor outcome in estrogen receptor–positive breast cancer and occurs frequently in basal-like and Her2-positive cases. In diploid cells, but not in chromosomally unstable cells, paclitaxel causes repression of CIN-survival genes, followed by cell death. In the OV01 ovarian cancer clinical trial, a high level of CIN was associated with taxane resistance but carboplatin sensitivity, indicating that CIN may determine MTS response in vivo. Thus, pretherapeutic assessment of CIN may optimize treatment stratification and clinical trial design using these agents.
机译:微管稳定剂(MTS),例如紫杉烷类,是重要的化学疗法,其作用机理尚不清楚。我们确定了一组响应MTS剂而在多种细胞系中被阻遏的基因,并观察到这些基因在表现出染色体不稳定性(CIN)的肿瘤中过表达。这些基因中有22/50个沉默,其中许多与DNA修复有关,导致癌细胞死亡,这表明这些基因与非整倍体细胞的存活有关。这些“ CIN-存活”基因的过度表达与雌激素受体阳性乳腺癌的不良预后有关,在基底样和Her2阳性病例中经常发生。在二倍体细胞中,而非在染色体不稳定细胞中,紫杉醇引起CIN存活基因的抑制,随后细胞死亡。在OV01卵巢癌临床试验中,高水平的CIN与紫杉烷耐药性有关,但对卡铂敏感,表明CIN可能决定体内的MTS反应。因此,CIN的治疗前评估可以优化使用这些药物的治疗分层和临床试验设计。

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