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Depletion of SAG/RBX2 E3 ubiquitin ligase suppresses prostate tumorigenesis via inactivation of the PI3K/AKT/mTOR axis

机译:saG / RBX2 E3泛素连接酶的消耗通过pI3K / aKT / mTOR轴的失活抑制前列腺肿瘤发生

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摘要

Abstract Background SAG (Sensitive to Apoptosis Gene), also known as RBX2, ROC2 or RNF7, is a RING component of CRL (Cullin-RING ligase), required for its activity. Our recent study showed that SAG/RBX2 co-operated with Kras to promote lung tumorigenesis, but antagonized Kras to inhibit skin tumorigenesis, suggesting a tissue/context dependent function of Sag. However, it is totally unknown whether and how Sag would play in prostate tumorigenesis, triggered by Pten loss. Methods Sag and Pten double conditional knockout mice were generated and prostate specific deletion of Sag and Pten was achieved by PB4-Cre, and their effect on prostate tumorigenesis was evaluated by H&E staining. The methods of immunohistochemistry (IHC) staining and Western blotting were utilized to examine expression of various proteins in prostate cancer tissues or cell lines. The effect of SAG knockdown in proliferation, survival and migration was evaluated in two prostate cancer cell lines. The poly-ubiquitylation of PHLPP1 and DEPTOR was evaluated by both in vivo and in vitro ubiquitylation assays. Results SAG is overexpressed progressively from early-to-late stage of human prostate cancer with the highest expression seen in metastatic lesion. Sag deletion inhibits prostate tumorigenesis triggered by Pten loss in a mouse model as a result of suppressed proliferation. SAG knockdown in human prostate cancer cells inhibits a) proliferation in monolayer and soft agar, b) clonogenic survival, and c) migration. SAG is an E3 ligase that promotes ubiquitylation and degradation of PHLPP1 and DEPTOR, leading to activation of the PI3K/AKT/mTOR axis, whereas SAG knockdown caused their accumulation. Importantly, growth suppression triggered by SAG knockdown was partially rescued by simultaneous knockdown of PHLPP1 or DEPTOR, suggesting their causal role. Accumulation of Phlpp1 and Deptor with corresponding inactivation of Akt/mTOR was also detected in Sag-null prostate cancer tissues. Conclusions Sag is an oncogenic cooperator of Pten-loss for prostate tumorigenesis. Targeting SAG E3 ligase may, therefore, have therapeutic value for the treatment of prostate cancer associated with Pten loss.
机译:摘要背景SAG(对凋亡基因敏感),也称为RBX2,ROC2或RNF7,是CRL(Cullin-RING连接酶)的RING组件,需要其活性。我们最近的研究表明,SAG / RBX2与Kras协同作用可促进肺肿瘤发生,但拮抗Kras抑制皮肤肿瘤发生,提示Sag具有组织/背景依赖性。但是,完全未知的是,Sag是否以及如何在Pten丢失触发的前列腺癌发生中发挥作用。方法制备Sag和Pten双重条件敲除小鼠,PB4-Cre实现前列腺特异性的Sag和Pten缺失,并通过H&E染色评价其对前列腺癌发生的作用。免疫组织化学(IHC)染色和蛋白质印迹的方法被用来检查前列腺癌组织或细胞系中各种蛋白质的表达。在两种前列腺癌细胞系中评估了SAG抑制在增殖,存活和迁移中的作用。 PHLPP1和DEPTOR的多聚泛素化通过体内和体外的泛素化测定进行评估。结果SAG从人前列腺癌的早期到晚期逐渐过表达,在转移性病变中表达最高。凹陷降低抑制了由于抑制的增殖而在小鼠模型中由Pten丢失引发的前列腺肿瘤发生。人前列腺癌细胞中的SAG抑制可抑制a)单层和软琼脂中的增殖,b)克隆形成的存活,以及c)迁移。 SAG是一种E3连接酶,可促进PHLPP1和DEPTOR的泛素化和降解,从而导致PI3K / AKT / mTOR轴的激活,而SAG的降低导致它们的积累。重要的是,通过同时敲低PHLPP1或DEPTOR可以部分挽救SAG敲低引发的生长抑制,这表明它们具有因果关系。在无凹陷的前列腺癌组织中也检测到Phlpp1和Deptor的积累以及相应的Akt / mTOR失活。结论Sag是Pten-loss在前列腺癌发生中的致癌合作者。因此,靶向SAG E3连接酶可能具有治疗与Pten缺失有关的前列腺癌的治疗价值。

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