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WM-266-4人转移性黑色素瘤细胞的深度蛋白质组图谱:从致癌成瘾到可成药靶点

Deep-proteome mapping of WM-266-4 human metastatic melanoma cells: From oncogenic addiction to druggable targets.

作者信息

Konstantakou Eumorphia G, Velentzas Athanassios D, Anagnostopoulos Athanasios K, Litou Zoi I, Konstandi Ourania A, Giannopoulou Aikaterini F, Anastasiadou Ema, Voutsinas Gerassimos E, Tsangaris George Th, Stravopodis Dimitrios J

机构信息

Section of Cell Biology and Biophysics, Department of Biology, School of Science, National and Kapodistrian University of Athens, Athens, Greece.

Proteomics Core Facility, Systems Biology Center, Biomedical Research Foundation of the Academy of Athens, Athens, Greece.

出版信息

PLoS One. 2017 Feb 3;12(2):e0171512. doi: 10.1371/journal.pone.0171512. eCollection 2017.

Abstract

Cutaneous melanoma is a malignant tumor of skin melanocytes that are pigment-producing cells located in the basal layer (stratum basale) of epidermis. Accumulation of genetic mutations within their oncogenes or tumor-suppressor genes compels melanocytes to aberrant proliferation and spread to distant organs of the body, thereby resulting in severe and/or lethal malignancy. Metastatic melanoma's heavy mutational load, molecular heterogeneity and resistance to therapy necessitate the development of novel biomarkers and drug-based protocols that target key proteins involved in perpetuation of the disease. To this direction, we have herein employed a nano liquid chromatography-tandem mass spectrometry (nLC-MS/MS) proteomics technology to profile the deep-proteome landscape of WM-266-4 human metastatic melanoma cells. Our advanced melanoma-specific catalogue proved to contain 6,681 unique proteins, which likely constitute the hitherto largest single cell-line-derived proteomic collection of the disease. Through engagement of UNIPROT, DAVID, KEGG, PANTHER, INTACT, CYTOSCAPE, dbEMT and GAD bioinformatics resources, WM-266-4 melanoma proteins were categorized according to their sub-cellular compartmentalization, function and tumorigenicity, and successfully reassembled in molecular networks and interactomes. The obtained data dictate the presence of plastically inter-converted sub-populations of non-cancer and cancer stem cells, and also indicate the oncoproteomic resemblance of melanoma to glioma and lung cancer. Intriguingly, WM-266-4 cells seem to be subjected to both epithelial-to-mesenchymal (EMT) and mesenchymal-to-epithelial (MET) programs, with 1433G and ADT3 proteins being identified in the EMT/MET molecular interface. Oncogenic addiction of WM-266-4 cells to autocrine/paracrine signaling of IL17-, DLL3-, FGF(2/13)- and OSTP-dependent sub-routines suggests their critical contribution to the metastatic melanoma chemotherapeutic refractoriness. Interestingly, the 1433G family member that is shared between the BRAF- and EMT/MET-specific interactomes likely emerges as a novel and promising druggable target for the malignancy. Derailed proliferation and metastatic capacity of WM-266-4 cells could also derive from their metabolic addiction to pathways associated with glutamate/ammonia, propanoate and sulfur homeostasis, whose successful targeting may prove beneficial for advanced melanoma-affected patients.

摘要

皮肤黑色素瘤是一种皮肤黑素细胞的恶性肿瘤,黑素细胞是位于表皮基底层(基底层)的色素生成细胞。其原癌基因或肿瘤抑制基因内的基因突变积累促使黑素细胞异常增殖并扩散到身体的远处器官,从而导致严重和/或致命的恶性肿瘤。转移性黑色素瘤的高突变负荷、分子异质性和对治疗的抗性使得有必要开发针对该疾病持续存在所涉及的关键蛋白的新型生物标志物和基于药物的方案。在此方向上,我们在此采用了纳升液相色谱 - 串联质谱(nLC-MS/MS)蛋白质组学技术来描绘WM-266-4人转移性黑色素瘤细胞的深度蛋白质组图谱。我们先进的黑色素瘤特异性目录证明包含6681种独特蛋白质,这可能构成了迄今为止该疾病最大的单细胞系来源的蛋白质组集合。通过使用UNIPROT、DAVID、KEGG、PANTHER、INTACT、CYTOSCAPE、dbEMT和GAD生物信息学资源,WM-266-4黑色素瘤蛋白根据其亚细胞区室化、功能和致瘤性进行分类,并成功重新组装成分子网络和相互作用组。获得的数据表明存在可塑性相互转化的非癌细胞和癌症干细胞亚群,并且还表明黑色素瘤与神经胶质瘤和肺癌在肿瘤蛋白质组学上的相似性。有趣的是,WM-266-4细胞似乎同时经历上皮 - 间质转化(EMT)和间质 - 上皮转化(MET)程序,在EMT/MET分子界面中鉴定出1433G和ADT3蛋白。WM-266-4细胞对IL17 -、DLL3 -、FGF(2/13) - 和OSTP依赖性亚程序的自分泌/旁分泌信号的致癌成瘾表明它们对转移性黑色素瘤化疗难治性的关键作用。有趣的是,在BRAF和EMT/MET特异性相互作用组之间共享的1433G家族成员可能成为该恶性肿瘤一种新的且有前景的可药物靶向靶点。WM-266-4细胞的增殖和转移能力紊乱也可能源于它们对与谷氨酸/氨、丙酸和硫稳态相关途径的代谢成瘾,成功靶向这些途径可能对晚期黑色素瘤患者有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/653f/5291375/9e5cc5008deb/pone.0171512.g001.jpg

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