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Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization

Rad6B, a principal component of the translesion synthesis pathway, and activator of canonical Wnt signaling, plays an essential role in cutaneous melanoma development and progression. As Rad6 is encoded by two genes, namely, UBE2A (RAD6A) and UBE2B (RAD6B), in humans, we compared their expressions i...

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Autores principales: Gajan, Ambikai, Martin, Carly E., Kim, Seongho, Joshi, Milap, Michelhaugh, Sharon K., Sloma, Ido, Mittal, Sandeep, Firestine, Steven, Shekhar, Malathy P. V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6912459/
https://www.ncbi.nlm.nih.gov/pubmed/31683936
http://dx.doi.org/10.3390/cells8111375
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author Gajan, Ambikai
Martin, Carly E.
Kim, Seongho
Joshi, Milap
Michelhaugh, Sharon K.
Sloma, Ido
Mittal, Sandeep
Firestine, Steven
Shekhar, Malathy P. V.
author_facet Gajan, Ambikai
Martin, Carly E.
Kim, Seongho
Joshi, Milap
Michelhaugh, Sharon K.
Sloma, Ido
Mittal, Sandeep
Firestine, Steven
Shekhar, Malathy P. V.
author_sort Gajan, Ambikai
collection PubMed
description Rad6B, a principal component of the translesion synthesis pathway, and activator of canonical Wnt signaling, plays an essential role in cutaneous melanoma development and progression. As Rad6 is encoded by two genes, namely, UBE2A (RAD6A) and UBE2B (RAD6B), in humans, we compared their expressions in melanomas and normal melanocytes. While both genes are weakly expressed in normal melanocytes, Rad6B is more robustly expressed in melanoma lines and patient-derived metastatic melanomas than RAD6A. The characterization of RAD6B transcripts revealed coexpression of various splice variants representing truncated or modified functional versions of wild-type RAD6B in melanomas, but not in normal melanocytes. Notably, two RAD6B isoforms with intact catalytic domains, RAD6BΔexon4 and RAD6Bintron5ins, were identified. We confirmed that RAD6BΔexon4 and RAD6Bintron5ins variants are expressed as 14 and 15 kDa proteins, respectively, with functional in vivo ubiquitin conjugating activity. Whole exome sequence analysis of 30 patient-derived melanomas showed RAD6B variants coexpressed with wild-type RAD6B in all samples analyzed, and RAD6Bintron5ins variants were found in half the cases. These variants constitute the majority of the RAD6B transcriptome in contrast to RAD6A, which was predominantly wild-type. The expression of functional RAD6B variants only in melanomas reveals RAD6B’s molecular heterogeneity and its association with melanoma pathogenesis.
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spelling pubmed-69124592020-01-02 Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization Gajan, Ambikai Martin, Carly E. Kim, Seongho Joshi, Milap Michelhaugh, Sharon K. Sloma, Ido Mittal, Sandeep Firestine, Steven Shekhar, Malathy P. V. Cells Article Rad6B, a principal component of the translesion synthesis pathway, and activator of canonical Wnt signaling, plays an essential role in cutaneous melanoma development and progression. As Rad6 is encoded by two genes, namely, UBE2A (RAD6A) and UBE2B (RAD6B), in humans, we compared their expressions in melanomas and normal melanocytes. While both genes are weakly expressed in normal melanocytes, Rad6B is more robustly expressed in melanoma lines and patient-derived metastatic melanomas than RAD6A. The characterization of RAD6B transcripts revealed coexpression of various splice variants representing truncated or modified functional versions of wild-type RAD6B in melanomas, but not in normal melanocytes. Notably, two RAD6B isoforms with intact catalytic domains, RAD6BΔexon4 and RAD6Bintron5ins, were identified. We confirmed that RAD6BΔexon4 and RAD6Bintron5ins variants are expressed as 14 and 15 kDa proteins, respectively, with functional in vivo ubiquitin conjugating activity. Whole exome sequence analysis of 30 patient-derived melanomas showed RAD6B variants coexpressed with wild-type RAD6B in all samples analyzed, and RAD6Bintron5ins variants were found in half the cases. These variants constitute the majority of the RAD6B transcriptome in contrast to RAD6A, which was predominantly wild-type. The expression of functional RAD6B variants only in melanomas reveals RAD6B’s molecular heterogeneity and its association with melanoma pathogenesis. MDPI 2019-11-01 /pmc/articles/PMC6912459/ /pubmed/31683936 http://dx.doi.org/10.3390/cells8111375 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gajan, Ambikai
Martin, Carly E.
Kim, Seongho
Joshi, Milap
Michelhaugh, Sharon K.
Sloma, Ido
Mittal, Sandeep
Firestine, Steven
Shekhar, Malathy P. V.
Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization
title Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization
title_full Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization
title_fullStr Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization
title_full_unstemmed Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization
title_short Alternative Splicing of RAD6B and Not RAD6A Is Selectively Increased in Melanoma: Identification and Functional Characterization
title_sort alternative splicing of rad6b and not rad6a is selectively increased in melanoma: identification and functional characterization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6912459/
https://www.ncbi.nlm.nih.gov/pubmed/31683936
http://dx.doi.org/10.3390/cells8111375
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