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SPOP suppresses prostate cancer through regulation of CYCLIN E1 stability

机译:SPOP通过调节CYCLIN E1稳定性抑制前列腺癌

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摘要

SPOP is one of the important subunits for CUL3/SPOP/RBX1 complex tightly connected with tumorigenesis. However, its exact roles in different cancers remain debatable. Here, we identify CYCLIN E1, as a novel substrate for SPOP. SPOP directly interacts with CYCLIN E1 and specific regulates its stability in prostate cancer cell lines. SPOP/CUL3/RBX1 complex regulates CYCLIN E1 stability through poly-ubiquitination. CDK2 competes with SPOP for CYCLIN E1 interaction, suggesting that SPOP probably regulates the stability of CDK2-free CYCLIN E1. CYCLIN E1 expression rescued proliferation, migration, and tumor formation of prostate cancer cell suppressed by SPOP. Furthermore, we found SPOP selectively regulates the substrates’ stability and signaling pathways in prostate cancer and CCRC cell lines, suggesting that complicated mechanisms exist for SPOP to regulate substrate specificity. Altogether, we have revealed a novel mechanism for SPOP in suppressing prostate cancer and provided evidence to show SPOP has dual functions in prostate cancer and CCRC.
机译:SPOP是与肿瘤发生紧密相关的CUL3 / SPOP / RBX1复合物的重要亚基之一。然而,其在不同癌症中的确切作用仍有待商.。在这里,我们确定CYCLIN E1作为SPOP的新型底物。 SPOP与CYCLIN E1直接相互作用,并特异性调节其在前列腺癌细胞系中的稳定性。 SPOP / CUL3 / RBX1复合物通过多泛素化作用调节CYCLIN E1的稳定性。 CDK2与SPOP竞争CYCLIN E1相互作用,这表明SPOP可能调节不含CDK2的CYCLIN E1的稳定性。 CYCLIN E1表达挽救了SPOP抑制的前列腺癌细胞的增殖,迁移和肿瘤形成。此外,我们发现SPOP选择性调节前列腺癌和CCRC细胞系中底物的稳定性和信号传导途径,这表明SPOP调节底物特异性存在复杂的机制。总之,我们已经揭示了SPOP抑制前列腺癌的新机制,并提供了证据表明SPOP在前列腺癌和CCRC中具有双重功能。

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