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Loss of the nuclear pool of ubiquitin ligase CHIP/STUB1 in breast cancer unleashes the MZF1-cathepsin pro-oncogenic program

机译:乳腺癌中泛素连接酶CHIP / STUB1核库的丧失释放了MZF1-蛋白酶原促癌程序

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摘要

CHIP/STUB1 ubiquitin ligase is a negative co-chaperone for HSP90/HSC70, and its expression is reduced or lost in several cancers, including breast cancer. Using an extensive and well-annotated breast cancer tissue collection, we identified the loss of nuclear but not cytoplasmic CHIP to predict more aggressive tumorigenesis and shorter patient survival, with loss of CHIP in two-thirds of ErbB2+ and triple-negative breast cancers and in one-third of ER+ breast cancers. Reduced CHIP expression was seen in breast cancer patient-derived xenograft tumors and in ErbB2+ and triple-negative breast cancer cell lines. Ectopic CHIP expression in ErbB2+ lines suppressed in vitro oncogenic traits and in vivo xenograft tumor growth. An unbiased screen for CHIP-regulated nuclear transcription factors identified many candidates whose DNA-binding activity was up- or down-regulated by CHIP. We characterized Myeloid Zinc Finger 1 (MZF1) as a CHIP target given its recently identified role as a positive regulator of cathepsin B/L (CTSB/L)-mediated tumor cell invasion downstream of ErbB2. We show that CHIP negatively regulates CTSB/L expression in ErbB2+ and other breast cancer cell lines. CTSB inhibition abrogates invasion and matrix degradation in vitro and halts ErbB2+ breast cancer cell line xenograft growth. We conclude that loss of CHIP remodels the cellular transcriptome to unleash critical pro-oncogenic pathways, such as the matrix-degrading enzymes of the cathepsin family, whose components can provide new therapeutic opportunities in breast and other cancers with loss of CHIP expression.
机译:CHIP / STUB1泛素连接酶是HSP90 / HSC70的阴性伴侣分子,在某些癌症(包括乳腺癌)中其表达降低或丢失。我们使用广泛且注释充分的乳腺癌组织收集物,鉴定出核内CHIP丢失,而非胞质CHIP丢失,以预测更具侵略性的肿瘤发生和更短的患者生存期,其中三分之二的ErbB2 +和三阴性乳腺癌和CHIP丢失。 ER +乳腺癌的三分之一。在乳腺癌患者来源的异种移植肿瘤以及ErbB2 +和三阴性乳腺癌细胞系中观察到CHIP表达降低。 ErbB2 +系中的异位CHIP表达抑制了体外致癌性状和体内异种移植肿瘤的生长。对CHIP调节的核转录因子进行了公正的筛选,确定了许多候选物,其DNA结合活性被CHIP上调或下调。我们将髓样锌指1(MZF1)表征为CHIP靶标,是因为它最近被确定为组织蛋白酶B / L(CTSB / L)介导的ErbB2下游肿瘤细胞侵袭的正调节剂。我们显示,CHIP负调节ErbB2 +和其他乳腺癌细胞系中的CTSB / L表达。 CTSB抑制可在体外消除侵袭和基质降解,并阻止ErbB2 +乳腺癌细胞系异种移植物的生长。我们得出的结论是,CHIP的缺失会重塑细胞转录组,释放出关键的促癌途径,例如组织蛋白酶家族的基质降解酶,其成分可为CHIP表达缺失的乳腺癌和其他癌症提供新的治疗机会。

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