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MicroRNA-34 mediates AR-dependent p53-induced apoptosis in prostate cancer.

机译:MicroRNA-34介导AR依赖性p53诱导的前列腺癌凋亡。

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We investigated whether knocking down AR expression effects apoptosis after treatment with different apoptosis-inducing agents. We found that siRNA AR (si-AR) significantly decreased apoptosis induced by topoisomerase inhibitors doxorubicin (DOX) and camptothecin (Campt). It is known that DNA double-strand break inducing agents leads to activation (phosphorylation) of p53 that in turn regulates the expression of a variety of apoptosis-related genes including microRNA(miR)-34a and 34b/c. We found that DOX induced five phosphorylation sites of p53 (Ser15, 20, 37, 46 and 392); all of these sites were inhibited by si-AR. Subsequently we identified three kinases, SPAK, MDC1 and CaMKII that are under AR control and two of them, MDC1 and CaMKII, apparently participate in p53 upstream events that resulted in p53 inhibition. Using qPCR we showed that the level of miR-34a increased by 3-fold after DOX, but no increase was found with si-AR. MiR-34c expression increased 27 fold after DOX and only by 2.7 times withsi-AR. It appears that AR-dependent inhibition of p53 resulted in suppression of miR-34a and -34c expression. Importantly, DOX did not induce miR-34 in LNCaP grown in an androgen free medium or in AR-negative prostate cancer cell lines, DU145 and PC3. To directly investigate the role of miR-34 in DOX-mediated apoptosis, we transfected cells with anti-miR-34 oligonucleotides or with miR-34. We found that inhibition of individual miR-34, either 34a or 34c, or forced overexpression of miR-34a or miR-34c did not modulate DOX-mediated apoptosis. Only simultaneous inhibition or forced overexpression of both miR-34 resulted in modulation of DOX-mediated apoptosis. Taken together, our data indicate that cooperation between miR-34a and 34c plays an important role in AR-dependent p53-mediated apoptosis in prostate cancer.
机译:我们研究了用不同的凋亡诱导剂处理后敲低AR表达是否会影响凋亡。我们发现,siRNA AR(si-AR)显着降低了拓扑异构酶抑制剂阿霉素(DOX)和喜树碱(Campt)诱导的凋亡。众所周知,DNA双链断裂诱导剂可导致p53激活(磷酸化),进而调节包括microRNA(miR)-34a和34b / c在内的各种凋亡相关基因的表达。我们发现DOX诱导了p53的五个磷酸化位点(Ser15、20、37、46和392)。所有这些位点均被si-AR抑制。随后,我们鉴定了受AR控制的三种激酶SPAK,MDC1和CaMKII,其中两种激酶MDC1和CaMKII显然参与了导致p53抑制的p53上游事件。使用qPCR,我们显示miR-34a的水平在DOX后增加了3倍,但在si-AR中未发现增加。在DOX后,MiR-34c表达增加27倍,而使用si-AR仅增加2.7倍。似乎AR依赖性抑制p53导致miR-34a和-34c表达的抑制。重要的是,DOX不会在无雄激素培养基或AR阴性前列腺癌细胞系DU145和PC3中生长的LNCaP中诱导miR-34。为了直接研究miR-34在DOX介导的细胞凋亡中的作用,我们用抗miR-34寡核苷酸或miR-34转染了细胞。我们发现抑制单个miR-34(34a或34c)或强迫miR-34a或miR-34c的过表达不会调节DOX介导的细胞凋亡。两种miR-34的同时抑制或强迫过表达都导致了DOX介导的细胞凋亡的调节。两者合计,我们的数据表明,miR-34a和34c之间的合作在AR依赖性p53介导的前列腺癌凋亡中起着重要作用。

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