PO.MCB10.01 · 分子与细胞生物学

PiR-60643是肺癌细胞中脂肪酸结合蛋白5(FABP5)的一种新型抑制剂

PiR-60643 is a novel inhibitor of fatty acid binding protein 5 (FABP5) in lung cancer cells

海报缩略图:PiR-60643是肺癌细胞中脂肪酸结合蛋白5(FABP5)的一种新型抑制剂
编号 2067 展板 27 时间 4/20 09:00–12:00 区域 Section 25 主讲 Yousef Amaar, PhD
分会场 MicroRNAs as Cancer Biomarkers, Therapeutic Targets, and Modulators of Treatment Response
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作者与单位 Authors & Affiliations

Yousef G. Amaar, Mark E. Reeves

Loma Linda VA Medical Center, Loma Linda, CA

摘要 Abstract

中文摘要
引言:发现并表征癌细胞中新的通路及其相关基因网络对于开发有效的诊断和治疗工具至关重要。本实验室聚焦于RASSF1C-PIWIL1-piRNA通路对非小细胞肺癌(NSCLC)细胞生长的影响;我们的研究已鉴定出似乎同时作为癌基因和抑癌基因发挥作用的特定PIWI相互作用RNA(piRNA)。在近期鉴定的piRNA中,我们发现piR-60643在肺癌中靶向脂肪酸结合蛋白5(FABP5),似乎作为抑癌基因发挥作用。 方法:在先前发表的工作中,我们报道了一项全局微阵列筛选,鉴定出过表达RASSF1C的非小细胞肺癌细胞中潜在的piRNA基因。我们能够检测到数个受RASSF1C调控的piRNA。通过RT-PCR证实了似乎受RASSF1C下调或上调的特定piRNA的表达。我们评估了选定的RASSF1C靶向piRNA对肺癌细胞体外增殖和迁移的影响。我们还鉴定了特定piRNA的宿主基因和靶基因,并使用piRNA模拟物来下调靶基因表达。 结果:我们显示piR-60643受RASSF1C下调,似乎在非小细胞肺癌细胞中作为抑癌基因发挥作用。与此一致,用piR-60643模拟物处理肺癌细胞降低了细胞增殖和迁移,支持piR-60643可能是肺癌细胞生长和进展的一种新型抑制剂这一观点。为了进一步了解piR-60643可能如何阻碍肺癌细胞生长,我们搜索了可能被piR-60643靶向的基因。有趣的是,我们鉴定出FABP5为piR-60643的靶基因。FABP5在肺肿瘤组织和其他癌症组织中上调,并与患者生存不良相关。FABP5在调节脂质代谢和脂肪酸氧化(FAO)中发挥关键作用。FAO对于供给快速生长的癌细胞的高能量(ATP)需求至关重要,并促进细胞周期进展、EMT、迁移和转移。我们发现用piR-60643模拟物处理肺癌细胞导致FABP5在mRNA和蛋白水平上均下调,提示piR-60643可能扰乱肺癌细胞中与FAO相关的代谢通路。有趣的是,我们发现PIWIL1过表达上调肺癌细胞中FABP5的表达,提示PIWIL-FABP5基因轴可能在脂质代谢/FAO中发挥作用。这一新发现此前尚未被报道。 结论:通过piR-60643靶向FABP5可能是一种抑制脂质代谢/FAO并阻碍肿瘤生长和进展的新机制。因此,piR-60643可能成为肺癌一种有用的诊断/治疗工具。
查看英文原文 English abstract
Introduction : It is important to discover and characterize new pathways and their associated gene networks in cancer cells to develop effective diagnostic and therapeutic tools. Our laboratory is focused on the impact of the RASSF1C-PIWIL1-piRNA pathway on non-small cell lung cancer (NSCLC) cell growth; and our studies have resulted in identifying specific PIWI-interacting RNAs (piRNAs) that appear to function both as oncogenes and tumor suppressors. Among the recent piRNAs identified, we found that piR-60643 targets fatty acid bind protein 5 (FABP5) in lung cancer and appears to function as a tumor suppressor. Methods : In previously published work we reported on a global microarray screen which identified potential piRNA genes in non-small lung cancer cells over-expressing RASSF1C. We were able to detect several piRNAs that are modulated by RASSF1C. The expression of specific piRNAs that appear to be down or up-regulated by RASSF1C were confirmed by RT-PCR. We evaluated the impact of selected RASSF1C-target piRNAs on lung cancer cell proliferation and migration in vitro . We also have identified both host and target genes for specific piRNAs and have used piRNA mimics to down regulate target gene expression. Results : We show that piR-60643 is down regulated by RASSF1C and seems to function as a tumor suppressor in non-small cell lung cancer cells. Consistent with this, treatment of lung cancer cells with piR-60643 mimics reduced cell proliferation and migration, supporting the idea that piR-60643 could be a new inhibitor of lung cancer cell growth and progression. To learn more about how piR-60643 may hinder lung cancer cell growth, we searched for genes that could be targeted by piR-60643. Interestingly, we identified FABP5 as a piR-60643-target gene. FABP5 is up regulated in lung tumor tissue and in tissues of other cancers and is associated with poor patient survival. FABP5 plays a key role in regulating lipid metabolism and fatty acid oxidation (FAO). FAO is critical to supply the high energy (ATP) demand of rapidly growing cancer cells and contributes to cell cycle progression, EMT, migration, and metastasis. We found that treatment of lung cancer cells with piR-60643 mimics resulted in down regulation of FABP5 expression both at the mRNA and protein levels, implying that piR-60643 could disrupt FAO-associated metabolic pathway(s) in lung cancer cells. Interestingly, we found that PIWIL1 overexpression up-regulates FABP5 expression in lung cancer cells, suggesting that the PIWIL-FABP5 gene axis may play a role in lipid metabolism/FAO. This novel finding has not been previously reported. Conclusion: Targeting FABP5 by piR-60643 could prove a novel mechanism of inhibiting lipid metabolism/FAO and impeding tumor growth and progression. As such, piR-60643 could prove to be a useful diagnostic/therapeutic tool for lung cancer.
利益披露 Disclosure
Y. G. Amaar, None.. M. E. Reeves, None.

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