Cargando…

Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()

c-Cbl, a RING-type ubiquitin E3 ligase, downregulates various receptor tyrosine kinases (e.g., epidermal growth factor receptor (EGFR)), leading to inhibition of cell proliferation. Moreover, patients with myeloid neoplasm frequently harbor c-Cbl mutations, implicating the role of c-Cbl as a tumor s...

Descripción completa

Detalles Bibliográficos
Autores principales: Seong, Min Woo, Ka, Seung Hyeun, Park, Ji Ho, Park, Jong Ho, Yoo, Hee Min, Yang, Seung Wook, Park, Jung Mi, Park, Dongeun, Lee, Soon Tae, Seol, Jae Hong, Chung, Chin Ha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4719003/
https://www.ncbi.nlm.nih.gov/pubmed/26152360
http://dx.doi.org/10.1016/j.neo.2015.06.003
_version_ 1782410875270856704
author Seong, Min Woo
Ka, Seung Hyeun
Park, Ji Ho
Park, Jong Ho
Yoo, Hee Min
Yang, Seung Wook
Park, Jung Mi
Park, Dongeun
Lee, Soon Tae
Seol, Jae Hong
Chung, Chin Ha
author_facet Seong, Min Woo
Ka, Seung Hyeun
Park, Ji Ho
Park, Jong Ho
Yoo, Hee Min
Yang, Seung Wook
Park, Jung Mi
Park, Dongeun
Lee, Soon Tae
Seol, Jae Hong
Chung, Chin Ha
author_sort Seong, Min Woo
collection PubMed
description c-Cbl, a RING-type ubiquitin E3 ligase, downregulates various receptor tyrosine kinases (e.g., epidermal growth factor receptor (EGFR)), leading to inhibition of cell proliferation. Moreover, patients with myeloid neoplasm frequently harbor c-Cbl mutations, implicating the role of c-Cbl as a tumor suppressor. Recently, we have shown that c-Cbl downregulates αPix-mediated cell migration and invasion, and the lack of c-Cbl in the rat C6 and human A172 glioma cells is responsible for their malignant behavior. Here, we showed that c-Cbl exon skipping occurs in the glioma cells and the brain tissues from glioblastoma patients lacking c-Cbl. This exon skipping resulted in generation of two types of c-Cbl isoforms: type I lacking exon-9 and type II lacking exon-9 and exon-10. However, the c-Cbl isoforms in the cells and tissues could not be detected as they were rapidly degraded by proteasome. Consequently, C6 and A172 cells showed sustained EGFR activation. However, no splice site mutation was found in the region from exon-7 to exon-11 of the c-Cbl gene in C6 cells and a glioblastoma tissue lacking c-Cbl. In addition, c-Cbl exon skipping could be induced when cells transfected with a c-Cbl mini-gene were grown to high density or under hypoxic stress. These results suggest that unknown alternations (e.g., mutation) of splicing machinery in C6 and A172 cells and the glioblastoma brain tissues are responsible for the deleterious exon skipping. Collectively, these findings indicate that the c-Cbl exon skipping contributes to human glioma and its malignant behavior.
format Online
Article
Text
id pubmed-4719003
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Neoplasia Press
record_format MEDLINE/PubMed
spelling pubmed-47190032016-02-19 Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()() Seong, Min Woo Ka, Seung Hyeun Park, Ji Ho Park, Jong Ho Yoo, Hee Min Yang, Seung Wook Park, Jung Mi Park, Dongeun Lee, Soon Tae Seol, Jae Hong Chung, Chin Ha Neoplasia Article c-Cbl, a RING-type ubiquitin E3 ligase, downregulates various receptor tyrosine kinases (e.g., epidermal growth factor receptor (EGFR)), leading to inhibition of cell proliferation. Moreover, patients with myeloid neoplasm frequently harbor c-Cbl mutations, implicating the role of c-Cbl as a tumor suppressor. Recently, we have shown that c-Cbl downregulates αPix-mediated cell migration and invasion, and the lack of c-Cbl in the rat C6 and human A172 glioma cells is responsible for their malignant behavior. Here, we showed that c-Cbl exon skipping occurs in the glioma cells and the brain tissues from glioblastoma patients lacking c-Cbl. This exon skipping resulted in generation of two types of c-Cbl isoforms: type I lacking exon-9 and type II lacking exon-9 and exon-10. However, the c-Cbl isoforms in the cells and tissues could not be detected as they were rapidly degraded by proteasome. Consequently, C6 and A172 cells showed sustained EGFR activation. However, no splice site mutation was found in the region from exon-7 to exon-11 of the c-Cbl gene in C6 cells and a glioblastoma tissue lacking c-Cbl. In addition, c-Cbl exon skipping could be induced when cells transfected with a c-Cbl mini-gene were grown to high density or under hypoxic stress. These results suggest that unknown alternations (e.g., mutation) of splicing machinery in C6 and A172 cells and the glioblastoma brain tissues are responsible for the deleterious exon skipping. Collectively, these findings indicate that the c-Cbl exon skipping contributes to human glioma and its malignant behavior. Neoplasia Press 2015-07-04 /pmc/articles/PMC4719003/ /pubmed/26152360 http://dx.doi.org/10.1016/j.neo.2015.06.003 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Seong, Min Woo
Ka, Seung Hyeun
Park, Ji Ho
Park, Jong Ho
Yoo, Hee Min
Yang, Seung Wook
Park, Jung Mi
Park, Dongeun
Lee, Soon Tae
Seol, Jae Hong
Chung, Chin Ha
Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()
title Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()
title_full Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()
title_fullStr Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()
title_full_unstemmed Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()
title_short Deleterious c-Cbl Exon Skipping Contributes to Human Glioma()()
title_sort deleterious c-cbl exon skipping contributes to human glioma()()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4719003/
https://www.ncbi.nlm.nih.gov/pubmed/26152360
http://dx.doi.org/10.1016/j.neo.2015.06.003
work_keys_str_mv AT seongminwoo deleteriousccblexonskippingcontributestohumanglioma
AT kaseunghyeun deleteriousccblexonskippingcontributestohumanglioma
AT parkjiho deleteriousccblexonskippingcontributestohumanglioma
AT parkjongho deleteriousccblexonskippingcontributestohumanglioma
AT yooheemin deleteriousccblexonskippingcontributestohumanglioma
AT yangseungwook deleteriousccblexonskippingcontributestohumanglioma
AT parkjungmi deleteriousccblexonskippingcontributestohumanglioma
AT parkdongeun deleteriousccblexonskippingcontributestohumanglioma
AT leesoontae deleteriousccblexonskippingcontributestohumanglioma
AT seoljaehong deleteriousccblexonskippingcontributestohumanglioma
AT chungchinha deleteriousccblexonskippingcontributestohumanglioma