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参与黑素小体成熟和运输的微小RNA与信使RNA网络决定了可色素沉着黑素瘤细胞对靶向治疗的较低反应。

A Network of MicroRNAs and mRNAs Involved in Melanosome Maturation and Trafficking Defines the Lower Response of Pigmentable Melanoma Cells to Targeted Therapy.

作者信息

Vitiello Marianna, Mercatanti Alberto, Podda Maurizio Salvatore, Baldanzi Caterina, Prantera Antonella, Sarti Samanta, Rizzo Milena, Salvetti Alessandra, Conte Federica, Fiscon Giulia, Paci Paola, Poliseno Laura

机构信息

Institute of Clinical Physiology (IFC), National Research Council (CNR), 56124 Pisa, Italy.

Oncogenomics Unit, Core Research Laboratory (CRL), ISPRO, 56124 Pisa, Italy.

出版信息

Cancers (Basel). 2023 Jan 31;15(3):894. doi: 10.3390/cancers15030894.

Abstract

BACKGROUND

The ability to increase their degree of pigmentation is an adaptive response that confers pigmentable melanoma cells higher resistance to BRAF inhibitors (BRAFi) compared to non-pigmentable melanoma cells.

METHODS

Here, we compared the miRNome and the transcriptome profile of pigmentable 501Mel and SK-Mel-5 melanoma cells vs. non-pigmentable A375 melanoma cells, following treatment with the BRAFi vemurafenib (vem). In depth bioinformatic analyses (clusterProfiler, WGCNA and SWIMmeR) allowed us to identify the miRNAs, mRNAs and biological processes (BPs) that specifically characterize the response of pigmentable melanoma cells to the drug. Such BPs were studied using appropriate assays in vitro and in vivo (xenograft in zebrafish embryos).

RESULTS

Upon vem treatment, miR-192-5p, miR-211-5p, miR-374a-5p, miR-486-5p, miR-582-5p, miR-1260a and miR-7977, as well as , , , and mRNAs, are differentially expressed only in pigmentable cells. These miRNAs and mRNAs belong to BPs related to pigmentation, specifically melanosome maturation and trafficking. In fact, an increase in the number of intracellular melanosomes-due to increased maturation and/or trafficking-confers resistance to vem.

CONCLUSION

We demonstrated that the ability of pigmentable cells to increase the number of intracellular melanosomes fully accounts for their higher resistance to vem compared to non-pigmentable cells. In addition, we identified a network of miRNAs and mRNAs that are involved in melanosome maturation and/or trafficking. Finally, we provide the rationale for testing BRAFi in combination with inhibitors of these biological processes, so that pigmentable melanoma cells can be turned into more sensitive non-pigmentable cells.

摘要

背景

增加色素沉着程度的能力是一种适应性反应,与不可色素沉着的黑色素瘤细胞相比,可色素沉着的黑色素瘤细胞对BRAF抑制剂(BRAFi)具有更高的抗性。

方法

在此,我们比较了在用BRAFi维莫非尼(vem)处理后,可色素沉着的501Mel和SK-Mel-5黑色素瘤细胞与不可色素沉着的A375黑色素瘤细胞的miRNome和转录组谱。深入的生物信息学分析(clusterProfiler、WGCNA和SWIMmeR)使我们能够鉴定出特异性表征可色素沉着的黑色素瘤细胞对该药物反应的miRNA、mRNA和生物学过程(BP)。使用适当的体外和体内试验(斑马鱼胚胎异种移植)对这些BP进行了研究。

结果

在vem处理后,miR-192-5p、miR-211-5p、miR-374a-5p、miR-486-5p、miR-582-5p、miR-1260a和miR-7977,以及 、 、 、 和 mRNA,仅在可色素沉着的细胞中差异表达。这些miRNA和mRNA属于与色素沉着相关的BP,特别是黑素小体成熟和运输。事实上,由于成熟和/或运输增加导致的细胞内黑素小体数量增加赋予了对vem的抗性。

结论

我们证明,与不可色素沉着的细胞相比,可色素沉着的细胞增加细胞内黑素小体数量的能力充分解释了它们对vem具有更高的抗性。此外,我们鉴定出了一个参与黑素小体成熟和/或运输的miRNA和mRNA网络。最后,我们提供了将BRAFi与这些生物学过程的抑制剂联合测试的理论依据,以便将可色素沉着的黑色素瘤细胞转变为更敏感的不可色素沉着的细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fa1/9913661/a217aefdecd1/cancers-15-00894-g001.jpg

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