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SEMA3C 通过旁分泌信号诱导前列腺基质细胞合成雄激素。

SEMA3C induces androgen synthesis in prostatic stromal cells through paracrine signaling.

机构信息

The Vancouver Prostate Center, Vancouver General Hospital, Vancouver, British Columbia, Canada.

Department of Urologic Sciences, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

Prostate. 2021 May;81(6):309-317. doi: 10.1002/pros.24107. Epub 2021 Jan 27.

Abstract

BACKGROUND

Castration resistant prostate cancer progression is associated with an acquired intratumoral androgen synthesis. Signaling pathways that can upregulate androgen production in prostate tumor microenvironment are not entirely known. In this study, we investigate the potential effect of a secreted signaling protein named semaphorin 3C (SEMA3C) on steroidogenic activities of prostatic stromal cells.

METHODS

We treated human primary prostate stromal cells (PrSC) with 1uM recombinant SEMA3C protein and androgen precursor named dehydroepiandrosterone (DHEA) 1.7uM. Also, to test SEMA3C's effect on the conversion of DHEA to androgens, we exposed PrSCs to the conditioned media derived from LNCaP cells that were transduced with a lentiviral vector harboring full length SEMA3C gene or empty vector (CM-LN or CM-LN ). Then, liquid chromatography-mass spectrometry was performed on steroids isolated from PrSCs media. The messnger RNA expression of steroidogenic enzymes in PrSCs was quantified by quantitative polymerase chain reaction.

RESULTS

Recombinant SEMA3C had no effect on steroidogenic activities in PrSCs. However, key steroidogenic enzymes expression and androgen synthesis were upregulated in PrSCs treated with CM-LN , compared to those treated with CM-LN . These results suggest that steroidogenic activities in PrSCs were upregulated in response to a signaling factor in CM-LN , other than SEMA3C. We hypothesized that SEMA3C overexpression in LNCaP cells affected androgen synthesis in PrSCs through sonic hedgehog (Shh) pathway activation in PrSCs. We verified this effect by blocking Shh signaling with smoothened antagonist.

CONCLUSION

Based on known ability of Shh signaling pathway to activate steroidogenesis in stromal cells, we suggest that SEMA3C overexpression in LNCaP cells can upregulate Shh which in turn is able to stimulate steroidogenic activities in prostatic stromal cells.

摘要

背景

去势抵抗性前列腺癌的进展与肿瘤内雄激素合成的获得性有关。在前列腺肿瘤微环境中上调雄激素产生的信号通路尚不完全清楚。在这项研究中,我们研究了一种名为 SEMA3C(神经鞘磷脂 3C)的分泌信号蛋白对前列腺基质细胞类固醇生成活性的潜在影响。

方法

我们用 1uM 的重组 SEMA3C 蛋白和 1.7uM 的雄激素前体脱氢表雄酮(DHEA)处理人原代前列腺基质细胞(PrSC)。此外,为了测试 SEMA3C 对 DHEA 转化为雄激素的影响,我们将 PrSC 暴露于携带全长 SEMA3C 基因或空载体(CM-LN 或 CM-LN)的慢病毒载体转导的 LNCaP 细胞的条件培养基中。然后,对 PrSC 培养基中分离出的类固醇进行液相色谱-质谱分析。通过定量聚合酶链反应定量 PrSC 中类固醇生成酶的信使 RNA 表达。

结果

重组 SEMA3C 对 PrSC 的类固醇生成活性没有影响。然而,与用 CM-LN 处理的 PrSC 相比,用 CM-LN 处理的 PrSC 中关键的类固醇生成酶表达和雄激素合成上调。这些结果表明,PrSC 中的类固醇生成活性上调是对 CM-LN 中的信号因子的反应,而不是 SEMA3C。我们假设 LNCaP 细胞中 SEMA3C 的过表达通过 PrSC 中 sonic hedgehog(Shh)信号通路的激活影响 PrSC 中的雄激素合成。我们通过用 smoothened 拮抗剂阻断 Shh 信号来验证这种作用。

结论

基于 Shh 信号通路已知的激活基质细胞中类固醇生成的能力,我们建议 LNCaP 细胞中 SEMA3C 的过表达可以上调 Shh,进而刺激前列腺基质细胞中的类固醇生成活性。

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