hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2

Abstract Malignant characteristics of cancers, represented by rapid cell proliferation and high metastatic potential, are a major cause of high cancer-related mortality. As a multifunctional RNA-binding protein, heterogeneous nuclear ribonucleoprotein K (hnRNPK) is closely associated with cancer pro...

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Main Authors: Woo Joo Lee, Chang Hoon Shin, Haein Ji, Seong Dong Jeong, Mi-So Park, Hong-Hee Won, Poonam R. Pandey, Dimitrios Tsitsipatis, Myriam Gorospe, Hyeon Ho Kim
Format: Article
Language:English
Published: Nature Publishing Group 2021-03-01
Series:Cell Death and Disease
Online Access:https://doi.org/10.1038/s41419-021-03575-1
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spelling doaj-054e18c6420c41c3a246dcfd848c3cbb2021-03-21T12:05:35ZengNature Publishing GroupCell Death and Disease2041-48892021-03-0112411810.1038/s41419-021-03575-1hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2Woo Joo Lee0Chang Hoon Shin1Haein Ji2Seong Dong Jeong3Mi-So Park4Hong-Hee Won5Poonam R. Pandey6Dimitrios Tsitsipatis7Myriam Gorospe8Hyeon Ho Kim9Department of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityDepartment of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityDepartment of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityDepartment of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityDepartment of Digital Health, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityDepartment of Digital Health, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityLaboratory of Genetics and Genomics, National Institute on Aging Intramural Research Program, National Institutes of HealthLaboratory of Genetics and Genomics, National Institute on Aging Intramural Research Program, National Institutes of HealthLaboratory of Genetics and Genomics, National Institute on Aging Intramural Research Program, National Institutes of HealthDepartment of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences and Technology, Sungkyunkwan UniversityAbstract Malignant characteristics of cancers, represented by rapid cell proliferation and high metastatic potential, are a major cause of high cancer-related mortality. As a multifunctional RNA-binding protein, heterogeneous nuclear ribonucleoprotein K (hnRNPK) is closely associated with cancer progression in various types of cancers. In this study, we sought to identify hnRNPK-regulated long intergenic non-coding RNAs (lincRNAs) that play a critical role in the regulation of cancer malignancy. We found that hnRNPK controlled malignant phenotypes including invasiveness, proliferation, and clonogenicity. RNA sequencing and functional studies revealed that LINC00263, a novel target of hnRNPK, is involved in the oncogenic functions of hnRNPK. Knockdown of LINC00263 mitigated the malignant capabilities. Conversely, increased malignant phenotypes were observed in LINC00263-overexpressing cells. Since LINC00263 was mainly localized in the cytosol and highly enriched in Argonaute 2-immunoprecipitation (Ago2-IP), we hypothesized that LINC00263 acts as a competitive endogenous RNA (ceRNA), and thus sought to identify LINC00263-associated microRNAs. Using small RNA sequencing followed by antisense oligonucleotide pull-down, miR-147a was selected for further study. We found that miR-147a negatively regulates LINC00263 via direct interaction, thus suppressing malignant capabilities. Moreover, knockdown of hnRNPK and LINC00263 upregulated miR-147a, indicating that LINC00263 serves as a ceRNA for miR-147a. By analyzing RNA sequencing data and miRNA target prediction, calpain 2 (CAPN2) was identified as a putative target of miR-147a. Ago2-IP and luciferase reporter assay revealed that miR-147a suppressed CAPN2 expression by directly binding to the 3′UTR of CAPN2 mRNA. In addition, we found that the weakened malignant capabilities following knockdown of hnRNPK or LINC00263 were restored by miR-147a inhibition or CAPN2 overexpression. Furthermore, our findings were validated in various other types of cancer cells including lung cancer, colorectal cancer, neuroblastoma, and melanoma. Collectively, we demonstrate that hnRNPK-regulated LINC00263 plays an important role in cancer malignancy by acting as a miR-147a decoy and thus upregulating CAPN2.https://doi.org/10.1038/s41419-021-03575-1
collection DOAJ
language English
format Article
sources DOAJ
author Woo Joo Lee
Chang Hoon Shin
Haein Ji
Seong Dong Jeong
Mi-So Park
Hong-Hee Won
Poonam R. Pandey
Dimitrios Tsitsipatis
Myriam Gorospe
Hyeon Ho Kim
spellingShingle Woo Joo Lee
Chang Hoon Shin
Haein Ji
Seong Dong Jeong
Mi-So Park
Hong-Hee Won
Poonam R. Pandey
Dimitrios Tsitsipatis
Myriam Gorospe
Hyeon Ho Kim
hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2
Cell Death and Disease
author_facet Woo Joo Lee
Chang Hoon Shin
Haein Ji
Seong Dong Jeong
Mi-So Park
Hong-Hee Won
Poonam R. Pandey
Dimitrios Tsitsipatis
Myriam Gorospe
Hyeon Ho Kim
author_sort Woo Joo Lee
title hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2
title_short hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2
title_full hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2
title_fullStr hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2
title_full_unstemmed hnRNPK-regulated LINC00263 promotes malignant phenotypes through miR-147a/CAPN2
title_sort hnrnpk-regulated linc00263 promotes malignant phenotypes through mir-147a/capn2
publisher Nature Publishing Group
series Cell Death and Disease
issn 2041-4889
publishDate 2021-03-01
description Abstract Malignant characteristics of cancers, represented by rapid cell proliferation and high metastatic potential, are a major cause of high cancer-related mortality. As a multifunctional RNA-binding protein, heterogeneous nuclear ribonucleoprotein K (hnRNPK) is closely associated with cancer progression in various types of cancers. In this study, we sought to identify hnRNPK-regulated long intergenic non-coding RNAs (lincRNAs) that play a critical role in the regulation of cancer malignancy. We found that hnRNPK controlled malignant phenotypes including invasiveness, proliferation, and clonogenicity. RNA sequencing and functional studies revealed that LINC00263, a novel target of hnRNPK, is involved in the oncogenic functions of hnRNPK. Knockdown of LINC00263 mitigated the malignant capabilities. Conversely, increased malignant phenotypes were observed in LINC00263-overexpressing cells. Since LINC00263 was mainly localized in the cytosol and highly enriched in Argonaute 2-immunoprecipitation (Ago2-IP), we hypothesized that LINC00263 acts as a competitive endogenous RNA (ceRNA), and thus sought to identify LINC00263-associated microRNAs. Using small RNA sequencing followed by antisense oligonucleotide pull-down, miR-147a was selected for further study. We found that miR-147a negatively regulates LINC00263 via direct interaction, thus suppressing malignant capabilities. Moreover, knockdown of hnRNPK and LINC00263 upregulated miR-147a, indicating that LINC00263 serves as a ceRNA for miR-147a. By analyzing RNA sequencing data and miRNA target prediction, calpain 2 (CAPN2) was identified as a putative target of miR-147a. Ago2-IP and luciferase reporter assay revealed that miR-147a suppressed CAPN2 expression by directly binding to the 3′UTR of CAPN2 mRNA. In addition, we found that the weakened malignant capabilities following knockdown of hnRNPK or LINC00263 were restored by miR-147a inhibition or CAPN2 overexpression. Furthermore, our findings were validated in various other types of cancer cells including lung cancer, colorectal cancer, neuroblastoma, and melanoma. Collectively, we demonstrate that hnRNPK-regulated LINC00263 plays an important role in cancer malignancy by acting as a miR-147a decoy and thus upregulating CAPN2.
url https://doi.org/10.1038/s41419-021-03575-1
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