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Non-canonical translation start sites in the TMEM16A chloride channel()

TMEM16A is a plasma membrane protein with voltage- and calcium-dependent chloride channel activity. The role of the various TMEM16A domains in expression and function is poorly known. In a previous study, we found that replacing the first ATG of the TMEM16A coding sequence with a nonsense codon (M1X...

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Autores principales: Sondo, Elvira, Scudieri, Paolo, Tomati, Valeria, Caci, Emanuela, Mazzone, Amelia, Farrugia, Gianrico, Ravazzolo, Roberto, Galietta, Luis J.V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Pub. Co 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3898931/
https://www.ncbi.nlm.nih.gov/pubmed/23994600
http://dx.doi.org/10.1016/j.bbamem.2013.08.010
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author Sondo, Elvira
Scudieri, Paolo
Tomati, Valeria
Caci, Emanuela
Mazzone, Amelia
Farrugia, Gianrico
Ravazzolo, Roberto
Galietta, Luis J.V.
author_facet Sondo, Elvira
Scudieri, Paolo
Tomati, Valeria
Caci, Emanuela
Mazzone, Amelia
Farrugia, Gianrico
Ravazzolo, Roberto
Galietta, Luis J.V.
author_sort Sondo, Elvira
collection PubMed
description TMEM16A is a plasma membrane protein with voltage- and calcium-dependent chloride channel activity. The role of the various TMEM16A domains in expression and function is poorly known. In a previous study, we found that replacing the first ATG of the TMEM16A coding sequence with a nonsense codon (M1X mutation), to force translation from the second ATG localized at position 117, only had minor functional consequences. Therefore, we concluded that this region is dispensable for TMEM16A processing and channel activity. We have now removed the first 116 codons from the TMEM16A coding sequence. Surprisingly, the expression of the resulting mutant, Δ(1–116), resulted in complete loss of activity. We hypothesized that, in the mutant M1X, translation may start at a position before the second ATG, using a non-canonical start codon. Therefore, we placed an HA-epitope at position 89 in the M1X mutant. We found, by western blot analysis, that the HA-epitope can be detected, thus demonstrating that translation starts from an upstream non-ATG codon. We truncated the N-terminus of TMEM16A at different sites while keeping the HA-epitope. We found that stepwise shortening of TMEM16A caused an in parallel stepwise decrease in TMEM16A expression and function. Our results indicate that indeed the N-terminus of TMEM16A is important for its activity. The use of an alternative start codon appears to occur in a naturally-occurring TMEM16A isoform that is particularly expressed in human testis. Future experiments will need to address the role of normal and alternative amino-terminus in TMEM16A structure and function.
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spelling pubmed-38989312014-01-24 Non-canonical translation start sites in the TMEM16A chloride channel() Sondo, Elvira Scudieri, Paolo Tomati, Valeria Caci, Emanuela Mazzone, Amelia Farrugia, Gianrico Ravazzolo, Roberto Galietta, Luis J.V. Biochim Biophys Acta Article TMEM16A is a plasma membrane protein with voltage- and calcium-dependent chloride channel activity. The role of the various TMEM16A domains in expression and function is poorly known. In a previous study, we found that replacing the first ATG of the TMEM16A coding sequence with a nonsense codon (M1X mutation), to force translation from the second ATG localized at position 117, only had minor functional consequences. Therefore, we concluded that this region is dispensable for TMEM16A processing and channel activity. We have now removed the first 116 codons from the TMEM16A coding sequence. Surprisingly, the expression of the resulting mutant, Δ(1–116), resulted in complete loss of activity. We hypothesized that, in the mutant M1X, translation may start at a position before the second ATG, using a non-canonical start codon. Therefore, we placed an HA-epitope at position 89 in the M1X mutant. We found, by western blot analysis, that the HA-epitope can be detected, thus demonstrating that translation starts from an upstream non-ATG codon. We truncated the N-terminus of TMEM16A at different sites while keeping the HA-epitope. We found that stepwise shortening of TMEM16A caused an in parallel stepwise decrease in TMEM16A expression and function. Our results indicate that indeed the N-terminus of TMEM16A is important for its activity. The use of an alternative start codon appears to occur in a naturally-occurring TMEM16A isoform that is particularly expressed in human testis. Future experiments will need to address the role of normal and alternative amino-terminus in TMEM16A structure and function. Elsevier Pub. Co 2014-01 /pmc/articles/PMC3898931/ /pubmed/23994600 http://dx.doi.org/10.1016/j.bbamem.2013.08.010 Text en © 2013 The Authors https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Article
Sondo, Elvira
Scudieri, Paolo
Tomati, Valeria
Caci, Emanuela
Mazzone, Amelia
Farrugia, Gianrico
Ravazzolo, Roberto
Galietta, Luis J.V.
Non-canonical translation start sites in the TMEM16A chloride channel()
title Non-canonical translation start sites in the TMEM16A chloride channel()
title_full Non-canonical translation start sites in the TMEM16A chloride channel()
title_fullStr Non-canonical translation start sites in the TMEM16A chloride channel()
title_full_unstemmed Non-canonical translation start sites in the TMEM16A chloride channel()
title_short Non-canonical translation start sites in the TMEM16A chloride channel()
title_sort non-canonical translation start sites in the tmem16a chloride channel()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3898931/
https://www.ncbi.nlm.nih.gov/pubmed/23994600
http://dx.doi.org/10.1016/j.bbamem.2013.08.010
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