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Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling

Spinal muscular atrophy (SMA) is caused by homozygous survival of motor neurons 1 (SMN1) gene deletion, leaving a duplicate gene, SMN2, as the sole source of SMN protein. However, a defect in SMN2 splicing, involving exon 7 skipping, results in a low level of functional SMN protein. Therefore, the u...

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Autores principales: Choi, Kwangman, Yang, Ansook, Baek, Jiyeon, Jeong, Hyejeong, Kang, Yura, Baek, Woosun, Kim, Joon-Chul, Kang, Mingu, Choi, Miri, Ham, Youngwook, Son, Min-Jeong, Han, Sang-Bae, Kim, Janghwan, Jang, Jae-Hyuk, Ahn, Jong Seog, Shen, Haihong, Woo, Sun-Hee, Kim, Jong Heon, Cho, Sungchan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508836/
https://www.ncbi.nlm.nih.gov/pubmed/34638572
http://dx.doi.org/10.3390/ijms221910234
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author Choi, Kwangman
Yang, Ansook
Baek, Jiyeon
Jeong, Hyejeong
Kang, Yura
Baek, Woosun
Kim, Joon-Chul
Kang, Mingu
Choi, Miri
Ham, Youngwook
Son, Min-Jeong
Han, Sang-Bae
Kim, Janghwan
Jang, Jae-Hyuk
Ahn, Jong Seog
Shen, Haihong
Woo, Sun-Hee
Kim, Jong Heon
Cho, Sungchan
author_facet Choi, Kwangman
Yang, Ansook
Baek, Jiyeon
Jeong, Hyejeong
Kang, Yura
Baek, Woosun
Kim, Joon-Chul
Kang, Mingu
Choi, Miri
Ham, Youngwook
Son, Min-Jeong
Han, Sang-Bae
Kim, Janghwan
Jang, Jae-Hyuk
Ahn, Jong Seog
Shen, Haihong
Woo, Sun-Hee
Kim, Jong Heon
Cho, Sungchan
author_sort Choi, Kwangman
collection PubMed
description Spinal muscular atrophy (SMA) is caused by homozygous survival of motor neurons 1 (SMN1) gene deletion, leaving a duplicate gene, SMN2, as the sole source of SMN protein. However, a defect in SMN2 splicing, involving exon 7 skipping, results in a low level of functional SMN protein. Therefore, the upregulation of SMN protein expression from the SMN2 gene is generally considered to be one of the best therapeutic strategies to treat SMA. Most of the SMA drug discovery is based on synthetic compounds, and very few natural compounds have been explored thus far. Here, we performed an unbiased mechanism-independent and image-based screen of a library of microbial metabolites in SMA fibroblasts using an SMN-specific immunoassay. In doing so, we identified brefeldin A (BFA), a well-known inhibitor of ER-Golgi protein trafficking, as a strong inducer of SMN protein. The profound increase in SMN protein was attributed to, in part, the rescue of the SMN2 pre-mRNA splicing defect. Intriguingly, BFA increased the intracellular calcium concentration, and the BFA-induced exon 7 inclusion of SMN2 splicing, was abrogated by the depletion of intracellular calcium and by the pharmacological inhibition of calcium/calmodulin-dependent kinases (CaMKs). Moreover, BFA considerably reduced the expression of Tra2-β and SRSF9 proteins in SMA fibroblasts and enhanced the binding of PSF and hnRNP M to an exonic splicing enhancer (ESE) of exon 7. Together, our results demonstrate a significant role for calcium and its signaling on the regulation of SMN splicing, probably through modulating the expression/activity of splicing factors.
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spelling pubmed-85088362021-10-13 Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling Choi, Kwangman Yang, Ansook Baek, Jiyeon Jeong, Hyejeong Kang, Yura Baek, Woosun Kim, Joon-Chul Kang, Mingu Choi, Miri Ham, Youngwook Son, Min-Jeong Han, Sang-Bae Kim, Janghwan Jang, Jae-Hyuk Ahn, Jong Seog Shen, Haihong Woo, Sun-Hee Kim, Jong Heon Cho, Sungchan Int J Mol Sci Article Spinal muscular atrophy (SMA) is caused by homozygous survival of motor neurons 1 (SMN1) gene deletion, leaving a duplicate gene, SMN2, as the sole source of SMN protein. However, a defect in SMN2 splicing, involving exon 7 skipping, results in a low level of functional SMN protein. Therefore, the upregulation of SMN protein expression from the SMN2 gene is generally considered to be one of the best therapeutic strategies to treat SMA. Most of the SMA drug discovery is based on synthetic compounds, and very few natural compounds have been explored thus far. Here, we performed an unbiased mechanism-independent and image-based screen of a library of microbial metabolites in SMA fibroblasts using an SMN-specific immunoassay. In doing so, we identified brefeldin A (BFA), a well-known inhibitor of ER-Golgi protein trafficking, as a strong inducer of SMN protein. The profound increase in SMN protein was attributed to, in part, the rescue of the SMN2 pre-mRNA splicing defect. Intriguingly, BFA increased the intracellular calcium concentration, and the BFA-induced exon 7 inclusion of SMN2 splicing, was abrogated by the depletion of intracellular calcium and by the pharmacological inhibition of calcium/calmodulin-dependent kinases (CaMKs). Moreover, BFA considerably reduced the expression of Tra2-β and SRSF9 proteins in SMA fibroblasts and enhanced the binding of PSF and hnRNP M to an exonic splicing enhancer (ESE) of exon 7. Together, our results demonstrate a significant role for calcium and its signaling on the regulation of SMN splicing, probably through modulating the expression/activity of splicing factors. MDPI 2021-09-23 /pmc/articles/PMC8508836/ /pubmed/34638572 http://dx.doi.org/10.3390/ijms221910234 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Choi, Kwangman
Yang, Ansook
Baek, Jiyeon
Jeong, Hyejeong
Kang, Yura
Baek, Woosun
Kim, Joon-Chul
Kang, Mingu
Choi, Miri
Ham, Youngwook
Son, Min-Jeong
Han, Sang-Bae
Kim, Janghwan
Jang, Jae-Hyuk
Ahn, Jong Seog
Shen, Haihong
Woo, Sun-Hee
Kim, Jong Heon
Cho, Sungchan
Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling
title Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling
title_full Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling
title_fullStr Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling
title_full_unstemmed Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling
title_short Regulation of Survival Motor Neuron Gene Expression by Calcium Signaling
title_sort regulation of survival motor neuron gene expression by calcium signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508836/
https://www.ncbi.nlm.nih.gov/pubmed/34638572
http://dx.doi.org/10.3390/ijms221910234
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