生物
癌症研究
生物钟
细胞生物学
内科学
内分泌学
作者
Guihuan Li,Mingming Fan,Zenan Zheng,Yihe Zhang,Zhishuai Zhang,Zhibin Huang,Wenyang Luo,Wanlu Zhao,Xiaoju Lai,Hua Chen,Fangyin Zeng,Fan Deng
标识
DOI:10.1016/j.bbamcr.2022.119296
摘要
Disseminated prostate cancer (PCa) is known to have a strong propensity for bone marrow. These disseminated tumor cells (DTCs) can survive in bone marrow for years without obvious proliferation, while maintaining the ability to develop into metastatic lesions. However, how DTCs kept dormant and recur is still uncertain. Here, we focus on the role of osteoblastic protein kinase D1 (PKD1) in PCa (PC-3 and DU145) dormancy using co-culture experiments. Using flow cytometry, western blotting, and immunofluorescence, we observed that in co-cultures osteoblasts could induce a dormant state in PCa cells, which is manifested by a fewer cell divisions, a decrease Ki-67-positive populations and a lower ERK/p38 ratio. In contrast, silencing of PKD1 gene in osteoblasts impedes co-cultured prostate cancer cell's dormancy ability. Mechanismly, protein kinase D1 (PKD1) in osteoblasts induces PCa dormancy via activating CREB1, which promoting the expression and secretion of growth arrest specific 6 (GAS6). Furthermore, GAS6-induced dormancy signaling significantly increased the expression of core circadian clock molecules in PCa cells, and a negative correlation of circadian clock proteins (BMAL1, CLOCK and DEC2) with recurrence-free survival is observed in metastatic prostate cancer patients. Interestingly, the expression of cell cycle factors (p21, p27, CDK1 and PCNA) which regulated by circadian clock also upregulated in response to GAS6 stimulation. Taken together, we provide evidence that osteoblastic PKD1/CREB1/GAS6 signaling regulates cellular dormancy of PCa cells, and highlights the importance of circadian clock in PCa cells dormancy. • Osteoblastic PKD1 promotes prostate cancer cell dormancy. • PKD1 up-regulates GAS6 expression and secretion in osteoblasts. • Osteoblastic PKD1 drives GAS6 expression through interacting with CREB1. • Core circadian clock molecules and its downstream cell cycle inhibitors are significantly up-regulated in dormant PCa cells.
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