A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling

Abstract Background It has been well established that circular RNAs (circRNAs) play an important regulatory role during tumor progression. Recent studies have indicated that even though circRNAs generally regulate gene expression through miRNA sponges, they may encode small peptides in tumor pathoge...

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Main Authors: Xiao Zheng, Lujun Chen, You Zhou, Qi Wang, Zhuojun Zheng, Bin Xu, Chen Wu, Qi Zhou, Wenwei Hu, Changping Wu, Jingting Jiang
Format: Article
Language:English
Published: BMC 2019-03-01
Series:Molecular Cancer
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12943-019-1010-6
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record_format Article
collection DOAJ
language English
format Article
sources DOAJ
author Xiao Zheng
Lujun Chen
You Zhou
Qi Wang
Zhuojun Zheng
Bin Xu
Chen Wu
Qi Zhou
Wenwei Hu
Changping Wu
Jingting Jiang
spellingShingle Xiao Zheng
Lujun Chen
You Zhou
Qi Wang
Zhuojun Zheng
Bin Xu
Chen Wu
Qi Zhou
Wenwei Hu
Changping Wu
Jingting Jiang
A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling
Molecular Cancer
Colon cancer
Circular RNA (circRNA)
Protein coding
Proliferation
Metastasis
author_facet Xiao Zheng
Lujun Chen
You Zhou
Qi Wang
Zhuojun Zheng
Bin Xu
Chen Wu
Qi Zhou
Wenwei Hu
Changping Wu
Jingting Jiang
author_sort Xiao Zheng
title A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling
title_short A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling
title_full A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling
title_fullStr A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling
title_full_unstemmed A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signaling
title_sort novel protein encoded by a circular rna circppp1r12a promotes tumor pathogenesis and metastasis of colon cancer via hippo-yap signaling
publisher BMC
series Molecular Cancer
issn 1476-4598
publishDate 2019-03-01
description Abstract Background It has been well established that circular RNAs (circRNAs) play an important regulatory role during tumor progression. Recent studies have indicated that even though circRNAs generally regulate gene expression through miRNA sponges, they may encode small peptides in tumor pathogenesis. However, it remains largely unexplored whether circRNAs are involved in the tumorigenesis of colon cancer (CC). Methods The expression profiles of circRNAs in CC tissues were assessed by circRNA microarray. Quantitative real-time PCR, RNase R digestion assay and tissue microarray were used to confirm the existence and expression pattern of circPPP1R12A. The subcellular distribution of circPPP1R12A was analyzed by nuclear mass separation assay and fluorescence in situ hybridization (FISH). SDS-PAGE and LC/MS were employed to evaluate the protein-coding ability of circPPP1R12A. CC cells were stably transfected with lentivirus approach, and cell proliferation, migration and invasion, as well as tumorigenesis and metastasis in nude mice were assessed to clarify the functional roles of circPPP1R12A and its encoded protein circPPP1R12A-73aa. RNA-sequencing and Western blotting analysis were furthered employed to identify the critical signaling pathway regulated by circPPP1R12A-73aa. Results We firstly screened the expression profiles of human circRNAs in CC tissues and found that the expression of hsa_circ_0000423 (termed as circPPP1R12A) was significantly increased in CC tissues. We also found that circPPP1R12A was mostly localized in the cytoplasm of CC cells. Kaplan–Meier analysis showed that patients with higher levels of circPPP1R12A had a significantly shorter overall survival. By gain- and loss-of-function approaches, the results suggested that circPPP1R12A played a critical role in proliferation, migration and invasion of CC cells. Furthermore, we showed that circPPP1R12A carried an open reading frame (ORF), which encoded a functional protein (termed as circPPP1R12A-73aa). Next, we found that PPP1R12A-C, not circPPP1R12A, promoted the proliferation, migration and invasion abilities of CC in vitro and in vivo. Finally, we identified that circPPP1R12A-73aa promoted the growth and metastasis of CC via activating Hippo-YAP signaling pathway. In addition, the YAP specific inhibitor Peptide 17 dramatically alleviated the promotive effect of circPPP1R12A-73aa on CC cells. Conclusions In the present study, we illustrated the coding-potential of circRNA circPPP1R12A in the progression of CC. Moreover, we identified that circPPP1R12A-73aa promoted the tumor pathogenesis and metastasis of CC via activating Hippo-YAP signaling pathway. Our findings might provide valuable insights into the development of novel potential therapeutic targets for CC.
topic Colon cancer
Circular RNA (circRNA)
Protein coding
Proliferation
Metastasis
url http://link.springer.com/article/10.1186/s12943-019-1010-6
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spelling doaj-3946c5c5f60f4711846fffd252e376782020-11-25T03:15:40ZengBMCMolecular Cancer1476-45982019-03-0118111310.1186/s12943-019-1010-6A novel protein encoded by a circular RNA circPPP1R12A promotes tumor pathogenesis and metastasis of colon cancer via Hippo-YAP signalingXiao Zheng0Lujun Chen1You Zhou2Qi Wang3Zhuojun Zheng4Bin Xu5Chen Wu6Qi Zhou7Wenwei Hu8Changping Wu9Jingting Jiang10Department of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityJiangsu Engineering Research Center for Tumor ImmunotherapyDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityJiangsu Engineering Research Center for Tumor ImmunotherapyDepartment of Oncology, the Third Affiliated Hospital of Soochow UniversityDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityDepartment of Tumor Biological Treatment, the Third Affiliated Hospital of Soochow UniversityAbstract Background It has been well established that circular RNAs (circRNAs) play an important regulatory role during tumor progression. Recent studies have indicated that even though circRNAs generally regulate gene expression through miRNA sponges, they may encode small peptides in tumor pathogenesis. However, it remains largely unexplored whether circRNAs are involved in the tumorigenesis of colon cancer (CC). Methods The expression profiles of circRNAs in CC tissues were assessed by circRNA microarray. Quantitative real-time PCR, RNase R digestion assay and tissue microarray were used to confirm the existence and expression pattern of circPPP1R12A. The subcellular distribution of circPPP1R12A was analyzed by nuclear mass separation assay and fluorescence in situ hybridization (FISH). SDS-PAGE and LC/MS were employed to evaluate the protein-coding ability of circPPP1R12A. CC cells were stably transfected with lentivirus approach, and cell proliferation, migration and invasion, as well as tumorigenesis and metastasis in nude mice were assessed to clarify the functional roles of circPPP1R12A and its encoded protein circPPP1R12A-73aa. RNA-sequencing and Western blotting analysis were furthered employed to identify the critical signaling pathway regulated by circPPP1R12A-73aa. Results We firstly screened the expression profiles of human circRNAs in CC tissues and found that the expression of hsa_circ_0000423 (termed as circPPP1R12A) was significantly increased in CC tissues. We also found that circPPP1R12A was mostly localized in the cytoplasm of CC cells. Kaplan–Meier analysis showed that patients with higher levels of circPPP1R12A had a significantly shorter overall survival. By gain- and loss-of-function approaches, the results suggested that circPPP1R12A played a critical role in proliferation, migration and invasion of CC cells. Furthermore, we showed that circPPP1R12A carried an open reading frame (ORF), which encoded a functional protein (termed as circPPP1R12A-73aa). Next, we found that PPP1R12A-C, not circPPP1R12A, promoted the proliferation, migration and invasion abilities of CC in vitro and in vivo. Finally, we identified that circPPP1R12A-73aa promoted the growth and metastasis of CC via activating Hippo-YAP signaling pathway. In addition, the YAP specific inhibitor Peptide 17 dramatically alleviated the promotive effect of circPPP1R12A-73aa on CC cells. Conclusions In the present study, we illustrated the coding-potential of circRNA circPPP1R12A in the progression of CC. Moreover, we identified that circPPP1R12A-73aa promoted the tumor pathogenesis and metastasis of CC via activating Hippo-YAP signaling pathway. Our findings might provide valuable insights into the development of novel potential therapeutic targets for CC.http://link.springer.com/article/10.1186/s12943-019-1010-6Colon cancerCircular RNA (circRNA)Protein codingProliferationMetastasis