Department of Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.
MTA-SE Pathobiochemistry Research Group, Semmelweis University, 1094 Budapest, Hungary.
Cells. 2023 Jan 4;12(2):212. doi: 10.3390/cells12020212.
Prostate cancer metastasis is a significant cause of mortality in men. PKD3 facilitates tumor growth and metastasis, however, its regulation is largely unclear. The Hsp90 chaperone stabilizes an array of signaling client proteins, thus is an enabler of the malignant phenotype. Here, using different prostate cancer cell lines, we report that Hsp90 ensures PKD3 conformational stability and function to promote cancer cell migration. We found that pharmacological inhibition of either PKDs or Hsp90 dose-dependently abrogated the migration of DU145 and PC3 metastatic prostate cancer cells. Hsp90 inhibition by ganetespib caused a dose-dependent depletion of PKD2, PKD3, and Akt, which are all involved in metastasis formation. Proximity ligation assay and immunoprecipitation experiments demonstrated a physical interaction between Hsp90 and PKD3. Inhibition of the chaperone-client interaction induced misfolding and proteasomal degradation of PKD3. PKD3 siRNA combined with ganetespib treatment demonstrated a specific involvement of PKD3 in DU145 and PC3 cell migration, which was entirely dependent on Hsp90. Finally, ectopic expression of PKD3 enhanced migration of non-metastatic LNCaP cells in an Hsp90-dependent manner. Altogether, our findings identify PKD3 as an Hsp90 client and uncover a potential mechanism of Hsp90 in prostate cancer metastasis. The molecular interaction revealed here may regulate other biological and pathological functions.
前列腺癌转移是男性死亡的重要原因。PKD3 促进肿瘤生长和转移,但它的调节机制尚不清楚。Hsp90 伴侣稳定了一系列信号转导的客户蛋白,因此是恶性表型的推动者。在这里,我们使用不同的前列腺癌细胞系报告 Hsp90 确保 PKD3 的构象稳定性和功能,以促进癌细胞迁移。我们发现,PKD 或 Hsp90 的药理学抑制均可剂量依赖性地阻断 DU145 和 PC3 转移性前列腺癌细胞的迁移。Ganetespib 抑制 Hsp90 导致 PKD2、PKD3 和 Akt 的剂量依赖性耗竭,这些都参与了转移形成。接近连接测定和免疫沉淀实验证明了 Hsp90 和 PKD3 之间的物理相互作用。伴侣-客户相互作用的抑制诱导 PKD3 的错误折叠和蛋白酶体降解。PKD3 siRNA 与 ganetespib 联合治疗表明 PKD3 特异性参与 DU145 和 PC3 细胞迁移,这完全依赖于 Hsp90。最后,PKD3 的异位表达以 Hsp90 依赖的方式增强了非转移性 LNCaP 细胞的迁移。总之,我们的研究结果确定 PKD3 为 Hsp90 的客户,并揭示了 Hsp90 在前列腺癌转移中的潜在机制。这里揭示的分子相互作用可能调节其他生物学和病理学功能。