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蛋白激酶C抑制剂Gö6976而非Gö6983可诱导黑色素瘤中E-钙黏蛋白向N-钙黏蛋白转换及转移表型的逆转:蛋白激酶D1作用的鉴定

Protein kinase C inhibitor Gö6976 but not Gö6983 induces the reversion of E- to N-cadherin switch and metastatic phenotype in melanoma: identification of the role of protein kinase D1.

作者信息

Merzoug-Larabi Messaouda, Spasojevic Caroline, Eymard Marianne, Hugonin Caroline, Auclair Christian, Karam Manale

机构信息

LBPA, ENS Cachan, CNRS, Université Paris-Saclay, Cachan, 94235, France.

Département de Génétique, Institut Curie, Unité de Pharmacogénomique, Paris, 75248, France.

出版信息

BMC Cancer. 2017 Jan 5;17(1):12. doi: 10.1186/s12885-016-3007-5.

Abstract

BACKGROUND

Melanoma is a highly metastatic type of cancer that is resistant to all standard anticancer therapies and thus has a poor prognosis. Therefore, metastatic melanoma represents a significant clinical problem and requires novel and effective targeted therapies. The protein kinase C (PKC) family comprises multiple isoforms of serine/threonine kinases that possess distinct roles in cancer development and progression. In this study, we determined whether inhibition of PKC could revert a major process required for melanoma progression and metastasis; i.e. the E- to N-cadherin switch.

METHODS

The cadherin switch was analyzed in different patient-derived primary tumors and their respective metastatic melanoma cells to determine the appropriate cellular model (aggressive E-cadherin-negative/N-cadherin-positive metastasis-derived melanoma cells). Next, PKC inhibition in two selected metastatic melanoma cell lines, was performed by using either pharmacological inhibitors (Gö6976 and Gö6983) or stable lentiviral shRNA transduction. The expression of E-cadherin and N-cadherin was determined by western blot. The consequences of cadherin switch reversion were analyzed: cell morphology, intercellular interactions, and β-catenin subcellular localization were analyzed by immunofluorescence labeling and confocal microscopy; cyclin D1 expression was analyzed by western blot; cell metastatic potential was determined by anchorage-independent growth assay using methylcellulose as semi-solid medium and cell migration potential by wound healing and transwell assays.

RESULTS

Gö6976 but not Gö6983 reversed the E- to N-cadherin switch and as a consequence induced intercellular interactions, profound morphological changes from elongated mesenchymal-like to cuboidal epithelial-like shape, β-catenin translocation from the nucleus to the plasma membrane inhibiting its oncogenic function, and reverting the metastatic potential of the aggressive melanoma cells. Comparison of the target spectrum of these inhibitors indicated that these observations were not the consequence of the inhibition of conventional PKCs (cPKCs), but allowed the identification of a novel serine/threonine kinase, i.e. protein kinase Cμ, also known as protein kinase D1 (PKD1), whose specific inhibition allows the reversion of the metastatic phenotype in aggressive melanoma.

CONCLUSION

In conclusion, our study suggests, for the first time, that while cPKCs don't embody a pertinent therapeutic target, inhibition of PKD1 represents a novel attractive approach for the treatment of metastatic melanoma.

摘要

背景

黑色素瘤是一种具有高度转移性的癌症,对所有标准抗癌疗法均具有抗性,因此预后较差。所以,转移性黑色素瘤是一个重大的临床问题,需要新型有效的靶向治疗。蛋白激酶C(PKC)家族由多种丝氨酸/苏氨酸激酶亚型组成,它们在癌症发生和发展中具有不同作用。在本研究中,我们确定抑制PKC是否能逆转黑色素瘤进展和转移所需的一个主要过程,即E-钙黏蛋白向N-钙黏蛋白的转变。

方法

在不同患者来源的原发性肿瘤及其各自的转移性黑色素瘤细胞中分析钙黏蛋白转变,以确定合适的细胞模型(侵袭性E-钙黏蛋白阴性/N-钙黏蛋白阳性转移来源的黑色素瘤细胞)。接下来,通过使用药理学抑制剂(Gö6976和Gö6983)或稳定的慢病毒shRNA转导,对两种选定的转移性黑色素瘤细胞系进行PKC抑制。通过蛋白质印迹法测定E-钙黏蛋白和N-钙黏蛋白的表达。分析钙黏蛋白转变逆转的后果:通过免疫荧光标记和共聚焦显微镜分析细胞形态、细胞间相互作用以及β-连环蛋白的亚细胞定位;通过蛋白质印迹法分析细胞周期蛋白D1的表达;使用甲基纤维素作为半固体培养基,通过非锚定生长试验测定细胞转移潜能,通过伤口愈合试验和Transwell试验测定细胞迁移潜能。

结果

Gö6976而非Gö6983逆转了E-钙黏蛋白向N-钙黏蛋白的转变,结果诱导了细胞间相互作用,使细胞形态从细长的间充质样深刻转变为立方上皮样,β-连环蛋白从细胞核转位至质膜,抑制其致癌功能,并逆转侵袭性黑色素瘤细胞的转移潜能。这些抑制剂靶点谱的比较表明,这些观察结果不是抑制传统PKC(cPKC)的结果,而是鉴定出一种新型丝氨酸/苏氨酸激酶,即蛋白激酶Cμ,也称为蛋白激酶D1(PKD1),其特异性抑制可逆转侵袭性黑色素瘤的转移表型。

结论

总之,我们的研究首次表明,虽然cPKC不是一个相关的治疗靶点,但抑制PKD1代表了一种治疗转移性黑色素瘤的新型有吸引力的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9c1/5217271/0e2958f71441/12885_2016_3007_Fig1_HTML.jpg

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