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Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion

We previously reported that loss of mitochondrial transcription factor B1 (TFB1M) leads to mitochondrial dysfunction and is involved in the pathogenesis of type 2 diabetes (T2D). Whether defects in ribosomal processing impact mitochondrial function and could play a pathogenetic role in β-cells and T...

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Autores principales: Verma, Gaurav, Bowen, Alexander, Gheibi, Sevda, Hamilton, Alexander, Muthukumar, Sowndarya, Cataldo, Luis Rodrigo, Asplund, Olof, Esguerra, Jonathan, Karagiannopoulos, Alexandros, Lyons, Claire, Cowan, Elaine, Bellodi, Cristian, Prasad, Rashmi, Fex, Malin, Mulder, Hindrik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913306/
https://www.ncbi.nlm.nih.gov/pubmed/35148993
http://dx.doi.org/10.1016/j.jbc.2022.101692
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author Verma, Gaurav
Bowen, Alexander
Gheibi, Sevda
Hamilton, Alexander
Muthukumar, Sowndarya
Cataldo, Luis Rodrigo
Asplund, Olof
Esguerra, Jonathan
Karagiannopoulos, Alexandros
Lyons, Claire
Cowan, Elaine
Bellodi, Cristian
Prasad, Rashmi
Fex, Malin
Mulder, Hindrik
author_facet Verma, Gaurav
Bowen, Alexander
Gheibi, Sevda
Hamilton, Alexander
Muthukumar, Sowndarya
Cataldo, Luis Rodrigo
Asplund, Olof
Esguerra, Jonathan
Karagiannopoulos, Alexandros
Lyons, Claire
Cowan, Elaine
Bellodi, Cristian
Prasad, Rashmi
Fex, Malin
Mulder, Hindrik
author_sort Verma, Gaurav
collection PubMed
description We previously reported that loss of mitochondrial transcription factor B1 (TFB1M) leads to mitochondrial dysfunction and is involved in the pathogenesis of type 2 diabetes (T2D). Whether defects in ribosomal processing impact mitochondrial function and could play a pathogenetic role in β-cells and T2D is not known. To this end, we explored expression and the functional role of dimethyladenosine transferase 1 homolog (DIMT1), a homolog of TFB1M and a ribosomal RNA (rRNA) methyltransferase implicated in the control of rRNA. Expression of DIMT1 was increased in human islets from T2D donors and correlated positively with expression of insulin mRNA, but negatively with insulin secretion. We show that silencing of DIMT1 in insulin-secreting cells impacted mitochondrial function, leading to lower expression of mitochondrial OXPHOS proteins, reduced oxygen consumption rate, dissipated mitochondrial membrane potential, and a slower rate of ATP production. In addition, the rate of protein synthesis was retarded upon DIMT1 deficiency. Consequently, we found that DIMT1 deficiency led to perturbed insulin secretion in rodent cell lines and islets, as well as in a human β-cell line. We observed defects in rRNA processing and reduced interactions between NIN1 (RPN12) binding protein 1 homolog (NOB-1) and pescadillo ribosomal biogenesis factor 1 (PES-1), critical ribosomal subunit RNA proteins, the dysfunction of which may play a part in disturbing protein synthesis in β-cells. In conclusion, DIMT1 deficiency perturbs protein synthesis, resulting in mitochondrial dysfunction and disrupted insulin secretion, both potential pathogenetic processes in T2D.
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spelling pubmed-89133062022-03-18 Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion Verma, Gaurav Bowen, Alexander Gheibi, Sevda Hamilton, Alexander Muthukumar, Sowndarya Cataldo, Luis Rodrigo Asplund, Olof Esguerra, Jonathan Karagiannopoulos, Alexandros Lyons, Claire Cowan, Elaine Bellodi, Cristian Prasad, Rashmi Fex, Malin Mulder, Hindrik J Biol Chem Research Article We previously reported that loss of mitochondrial transcription factor B1 (TFB1M) leads to mitochondrial dysfunction and is involved in the pathogenesis of type 2 diabetes (T2D). Whether defects in ribosomal processing impact mitochondrial function and could play a pathogenetic role in β-cells and T2D is not known. To this end, we explored expression and the functional role of dimethyladenosine transferase 1 homolog (DIMT1), a homolog of TFB1M and a ribosomal RNA (rRNA) methyltransferase implicated in the control of rRNA. Expression of DIMT1 was increased in human islets from T2D donors and correlated positively with expression of insulin mRNA, but negatively with insulin secretion. We show that silencing of DIMT1 in insulin-secreting cells impacted mitochondrial function, leading to lower expression of mitochondrial OXPHOS proteins, reduced oxygen consumption rate, dissipated mitochondrial membrane potential, and a slower rate of ATP production. In addition, the rate of protein synthesis was retarded upon DIMT1 deficiency. Consequently, we found that DIMT1 deficiency led to perturbed insulin secretion in rodent cell lines and islets, as well as in a human β-cell line. We observed defects in rRNA processing and reduced interactions between NIN1 (RPN12) binding protein 1 homolog (NOB-1) and pescadillo ribosomal biogenesis factor 1 (PES-1), critical ribosomal subunit RNA proteins, the dysfunction of which may play a part in disturbing protein synthesis in β-cells. In conclusion, DIMT1 deficiency perturbs protein synthesis, resulting in mitochondrial dysfunction and disrupted insulin secretion, both potential pathogenetic processes in T2D. American Society for Biochemistry and Molecular Biology 2022-02-08 /pmc/articles/PMC8913306/ /pubmed/35148993 http://dx.doi.org/10.1016/j.jbc.2022.101692 Text en © 2022 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 Research Article
Verma, Gaurav
Bowen, Alexander
Gheibi, Sevda
Hamilton, Alexander
Muthukumar, Sowndarya
Cataldo, Luis Rodrigo
Asplund, Olof
Esguerra, Jonathan
Karagiannopoulos, Alexandros
Lyons, Claire
Cowan, Elaine
Bellodi, Cristian
Prasad, Rashmi
Fex, Malin
Mulder, Hindrik
Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
title Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
title_full Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
title_fullStr Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
title_full_unstemmed Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
title_short Ribosomal biogenesis regulator DIMT1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
title_sort ribosomal biogenesis regulator dimt1 controls β-cell protein synthesis, mitochondrial function, and insulin secretion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913306/
https://www.ncbi.nlm.nih.gov/pubmed/35148993
http://dx.doi.org/10.1016/j.jbc.2022.101692
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