Cell and Cancer Biology Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.
Mol Cell Biol. 2012 Mar;32(5):941-53. doi: 10.1128/MCB.06306-11. Epub 2011 Dec 27.
Epithelial-mesenchymal transition (EMT) is implicated in various pathological processes within the prostate, including benign prostate hyperplasia (BPH) and prostate cancer progression. However, an ordered sequence of signaling events initiating carcinoma-associated EMT has not been established. In a model of transforming growth factor β (TGFβ)-induced prostatic EMT, SLUG is the dominant regulator of EMT initiation in vitro and in vivo, as demonstrated by the inhibition of EMT following Slug depletion. In contrast, SNAIL depletion was significantly less rate limiting. TGFβ-stimulated KLF4 degradation is required for SLUG induction. Expression of a degradation-resistant KLF4 mutant inhibited EMT, and furthermore, depletion of Klf4 was sufficient to initiate SLUG-dependent EMT. We show that KLF4 and another epithelial determinant, FOXA1, are direct transcriptional inhibitors of SLUG expression in mouse and human prostate cancer cells. Furthermore, self-reinforcing regulatory loops for SLUG-KLF4 and SLUG-FOXA1 lead to SLUG-dependent binding of polycomb repressive complexes to the Klf4 and Foxa1 promoters, silencing transcription and consolidating mesenchymal commitment. Analysis of tissue arrays demonstrated decreased KLF4 and increased SLUG expression in advanced-stage primary prostate cancer, substantiating the involvement of the EMT signaling events described in model systems.
上皮间质转化 (EMT) 参与前列腺内的各种病理过程,包括良性前列腺增生 (BPH) 和前列腺癌进展。然而,尚未确定启动癌相关 EMT 的信号事件的有序序列。在转化生长因子 β (TGFβ) 诱导的前列腺 EMT 模型中,SLUG 是体外和体内 EMT 起始的主要调节剂,如 SLUG 耗竭后 EMT 抑制所证明的。相比之下,SNAIL 耗竭的限制作用要小得多。TGFβ 刺激的 KLF4 降解是 SLUG 诱导所必需的。表达一种降解抗性的 KLF4 突变体可抑制 EMT,此外,Klf4 的耗竭足以启动 SLUG 依赖性 EMT。我们表明,KLF4 和另一个上皮决定因子 FOXA1 是小鼠和人前列腺癌细胞中 SLUG 表达的直接转录抑制剂。此外,SLUG-KLF4 和 SLUG-FOXA1 的自我强化调节环导致 SLUG 依赖性多梳抑制复合物结合到 Klf4 和 Foxa1 启动子上,沉默转录并巩固间充质承诺。组织阵列分析表明,在晚期原发性前列腺癌中 KLF4 表达降低,SLUG 表达增加,证实了模型系统中描述的 EMT 信号事件的参与。