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Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation

Osteogenic differentiation of mesenchymal cells is controlled by epigenetic enzymes that regulate post-translational modifications of histones. Compared to acetyl or methyltransferases, the physiological functions of protein arginine methyltransferases (PRMTs) in osteoblast differentiation remain mi...

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Autores principales: Dashti, Parisa, Lewallen, Eric A., Gordon, Jonathan A.R., Montecino, Martin A., van Leeuwen, Johannes P.T.M., Stein, Gary S., van der Eerden, Bram C.J., Davie, James R., van Wijnen, Andre J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10430181/
https://www.ncbi.nlm.nih.gov/pubmed/37593409
http://dx.doi.org/10.1016/j.bonr.2023.101704
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author Dashti, Parisa
Lewallen, Eric A.
Gordon, Jonathan A.R.
Montecino, Martin A.
van Leeuwen, Johannes P.T.M.
Stein, Gary S.
van der Eerden, Bram C.J.
Davie, James R.
van Wijnen, Andre J.
author_facet Dashti, Parisa
Lewallen, Eric A.
Gordon, Jonathan A.R.
Montecino, Martin A.
van Leeuwen, Johannes P.T.M.
Stein, Gary S.
van der Eerden, Bram C.J.
Davie, James R.
van Wijnen, Andre J.
author_sort Dashti, Parisa
collection PubMed
description Osteogenic differentiation of mesenchymal cells is controlled by epigenetic enzymes that regulate post-translational modifications of histones. Compared to acetyl or methyltransferases, the physiological functions of protein arginine methyltransferases (PRMTs) in osteoblast differentiation remain minimally understood. Therefore, we surveyed the expression and function of all nine mammalian PRMT members during osteoblast differentiation. RNA-seq gene expression profiling shows that Prmt1, Prmt4/Carm1 and Prmt5 represent the most prominently expressed PRMT subtypes in mouse calvarial bone and MC3T3 osteoblasts as well as human musculoskeletal tissues and mesenchymal stromal cells (MSCs). Based on effects of siRNA depletion, it appears that PRMT members have different functional effects: (i) loss of Prmt1 stimulates and (ii) loss of Prmt5 decreases calcium deposition of mouse MC3T3 osteoblasts, while (iii) loss of Carm1 is inconsequential for calcium deposition. Decreased Prmt5 suppresses expression of multiple genes involved in mineralization (e.g., Alpl, Ibsp, Phospho1) consistent with a positive role in osteogenesis. Depletion of Prmt1, Carm1 and Prmt5 has intricate but modest time-dependent effects on the expression of a panel of osteoblast differentiation and proliferation markers but does not change mRNA levels for select epigenetic regulators (e.g., Ezh1, Ezh2, Brd2 and Brd4). Treatment with the Class I PRMT inhibitor GSK715 enhances extracellular matrix mineralization of MC3T3 cells, while blocking formation of H3R17me2a but not H4R3me2a marks. In sum, Prmt1, Carm1 and Prmt5 have distinct biological roles during osteoblast differentiation, and different types histone H3 and H4 arginine methylation may contribute to the chromatin landscape during osteoblast differentiation.
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spelling pubmed-104301812023-08-17 Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation Dashti, Parisa Lewallen, Eric A. Gordon, Jonathan A.R. Montecino, Martin A. van Leeuwen, Johannes P.T.M. Stein, Gary S. van der Eerden, Bram C.J. Davie, James R. van Wijnen, Andre J. Bone Rep Full Length Article Osteogenic differentiation of mesenchymal cells is controlled by epigenetic enzymes that regulate post-translational modifications of histones. Compared to acetyl or methyltransferases, the physiological functions of protein arginine methyltransferases (PRMTs) in osteoblast differentiation remain minimally understood. Therefore, we surveyed the expression and function of all nine mammalian PRMT members during osteoblast differentiation. RNA-seq gene expression profiling shows that Prmt1, Prmt4/Carm1 and Prmt5 represent the most prominently expressed PRMT subtypes in mouse calvarial bone and MC3T3 osteoblasts as well as human musculoskeletal tissues and mesenchymal stromal cells (MSCs). Based on effects of siRNA depletion, it appears that PRMT members have different functional effects: (i) loss of Prmt1 stimulates and (ii) loss of Prmt5 decreases calcium deposition of mouse MC3T3 osteoblasts, while (iii) loss of Carm1 is inconsequential for calcium deposition. Decreased Prmt5 suppresses expression of multiple genes involved in mineralization (e.g., Alpl, Ibsp, Phospho1) consistent with a positive role in osteogenesis. Depletion of Prmt1, Carm1 and Prmt5 has intricate but modest time-dependent effects on the expression of a panel of osteoblast differentiation and proliferation markers but does not change mRNA levels for select epigenetic regulators (e.g., Ezh1, Ezh2, Brd2 and Brd4). Treatment with the Class I PRMT inhibitor GSK715 enhances extracellular matrix mineralization of MC3T3 cells, while blocking formation of H3R17me2a but not H4R3me2a marks. In sum, Prmt1, Carm1 and Prmt5 have distinct biological roles during osteoblast differentiation, and different types histone H3 and H4 arginine methylation may contribute to the chromatin landscape during osteoblast differentiation. Elsevier 2023-07-25 /pmc/articles/PMC10430181/ /pubmed/37593409 http://dx.doi.org/10.1016/j.bonr.2023.101704 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Full Length Article
Dashti, Parisa
Lewallen, Eric A.
Gordon, Jonathan A.R.
Montecino, Martin A.
van Leeuwen, Johannes P.T.M.
Stein, Gary S.
van der Eerden, Bram C.J.
Davie, James R.
van Wijnen, Andre J.
Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation
title Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation
title_full Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation
title_fullStr Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation
title_full_unstemmed Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation
title_short Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation
title_sort protein arginine methyltransferases prmt1, prmt4/carm1 and prmt5 have distinct functions in control of osteoblast differentiation
topic Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10430181/
https://www.ncbi.nlm.nih.gov/pubmed/37593409
http://dx.doi.org/10.1016/j.bonr.2023.101704
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