Differential expression of efferocytosis and phagocytosis associated genes in tumor associated macrophages exposed to African American patient derived prostate cancer microenvironment.

H. Banerjee, C. Krauss, Myla Worthington, Narendra Banerjee, Rayshawn Walker, Sasha Hodges, Lin Chen, Kuldeep Rawat, S. Dasgupta, Somiranjan Ghosh, S. Mandal
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引用次数: 5

Abstract

Macrophages are the first line of defense in the cellular environment in response to any antigenic or foreign invasion. Since cancer cells express antigenic molecules and create a tumor microenvironment quite different from the normal cellular environment, macrophages will attack this cancer cells as foreign Invaders. However, the cancer cells adept their ability to suppress macrophage activity by secreting compounds/proteins through unknown mechanisms and train these macrophages to aid in tumorigenesis. These macrophages are commonly known as tumor associated macrophages (TAM). In this study, our goal was to find out key regulatory molecules involved in this conversion of cancer-fighting macrophages to cancer friendly macrophages. We used African American(AA) patient derived established human prostate cancer cells along with the human derived macrophages followed by Affymetrix cDNA microarray analysis. Microarray analysis of the PCa cell exposed macrophages revealed appreciable decrease in mRNA expression of several genes associated with phagocytosis process. Aberrant expression of several noncoding RNAs that control the expression of such phagocytosis associated molecules were also evident. Increased expression of oncogenic miR such as, miR-148, 615, 515, 130, 139 and markedly decreased expression of tumor suppressive miR's MiR-3130, let7c,101,103, 383 were noted. Further, TARGET SCAN analysis demonstrated these differential expression of non-coding RNA's causing down regulation of phagocytosis promoting genes elf5A, Meg3, Tubb5, Sparcl-1, Uch-1, Bsg(CD147), Ube2v, GULP, Stabilin 1 and Pamr1. There is an increase of RAP1GAP gene that causes concomitant decrease in the expression of tubulin genes that promote cytoskeletal assembly in forming phagosomes. In addition Ingenuity pathway analysis of the gene expression data also showed upregulation of antiphagocytic genes IL-10, CD 16, IL-18 and MMP-9. Some core canonical pathways showing physiology of cellular signaling obtained by data analyzed by the Ingenuity software is confirmed a very complex mechanism still to be deciphered involved in the biology of TAM formation by which the rogue cancer cells tame their enemies, the macrophages and actually make them their helper cells to survive and propagate in the tumor microenvironment and thus prepare for epithelial mesenchymal transition for future metastasis and cancer stem cell formation and progression.
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非裔美国患者源性前列腺癌微环境中肿瘤相关巨噬细胞中efferocysis和吞噬相关基因的差异表达
巨噬细胞是细胞环境中应对任何抗原或外来入侵的第一道防线。由于癌细胞表达抗原分子,形成与正常细胞环境截然不同的肿瘤微环境,巨噬细胞会作为外来入侵者攻击这些癌细胞。然而,癌细胞通过未知的机制分泌化合物/蛋白质来抑制巨噬细胞的活性,并训练这些巨噬细胞帮助肿瘤发生。这些巨噬细胞通常被称为肿瘤相关巨噬细胞(TAM)。在这项研究中,我们的目标是找到参与抗癌巨噬细胞向癌症友好型巨噬细胞转化的关键调控分子。我们使用非裔美国人(AA)患者来源的已建立的人前列腺癌细胞和人来源的巨噬细胞,然后进行Affymetrix cDNA微阵列分析。对PCa细胞暴露的巨噬细胞进行微阵列分析发现,与吞噬过程相关的几个基因的mRNA表达明显减少。一些控制吞噬相关分子表达的非编码rna的异常表达也很明显。发现致癌miR miR-148、615、515、130、139的表达增加,抑瘤miR miR- 3130、let7c、101,103、383的表达明显降低。进一步,TARGET SCAN分析表明,这些非编码RNA的差异表达导致吞噬促进基因elf5A、Meg3、Tubb5、Sparcl-1、Uch-1、Bsg(CD147)、Ube2v、GULP、Stabilin 1和Pamr1的下调。RAP1GAP基因的增加导致在吞噬体形成过程中促进细胞骨架组装的微管蛋白基因的表达减少。此外,基因表达数据的Ingenuity通路分析也显示抗吞噬基因IL-10、cd16、IL-18和MMP-9上调。独创性软件分析的数据显示,一些核心的典型信号通路显示了细胞信号的生理学,证实了一个非常复杂的机制,仍有待破译,涉及TAM形成的生物学,流氓癌细胞驯服它们的敌人。巨噬细胞实际上使它们成为辅助细胞,在肿瘤微环境中生存和繁殖,从而为上皮间充质转化做好准备,为未来的转移和癌症干细胞的形成和进展做好准备。
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