Cargando…

Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery

The Transmembrane Bax Inhibitor-1 motif (TMBIM)-containing protein family is evolutionarily conserved and has been implicated in cell death susceptibility. The only member with a mitochondrial localization is TMBIM5 (also known as GHITM or MICS1), which affects cristae organization and associates wi...

Descripción completa

Detalles Bibliográficos
Autores principales: Seitaj, Bruno, Maull, Felicia, Zhang, Li, Wüllner, Verena, Wolf, Christina, Schippers, Philipp, La Rovere, Rita, Distler, Ute, Tenzer, Stefan, Parys, Jan B., Bultynck, Geert, Methner, Axel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7598220/
https://www.ncbi.nlm.nih.gov/pubmed/32977469
http://dx.doi.org/10.3390/cells9102147
_version_ 1783602542639316992
author Seitaj, Bruno
Maull, Felicia
Zhang, Li
Wüllner, Verena
Wolf, Christina
Schippers, Philipp
La Rovere, Rita
Distler, Ute
Tenzer, Stefan
Parys, Jan B.
Bultynck, Geert
Methner, Axel
author_facet Seitaj, Bruno
Maull, Felicia
Zhang, Li
Wüllner, Verena
Wolf, Christina
Schippers, Philipp
La Rovere, Rita
Distler, Ute
Tenzer, Stefan
Parys, Jan B.
Bultynck, Geert
Methner, Axel
author_sort Seitaj, Bruno
collection PubMed
description The Transmembrane Bax Inhibitor-1 motif (TMBIM)-containing protein family is evolutionarily conserved and has been implicated in cell death susceptibility. The only member with a mitochondrial localization is TMBIM5 (also known as GHITM or MICS1), which affects cristae organization and associates with the Parkinson’s disease-associated protein CHCHD2 in the inner mitochondrial membrane. We here used CRISPR-Cas9-mediated knockout HAP1 cells to shed further light on the function of TMBIM5 in physiology and cell death susceptibility. We found that compared to wild type, TMBIM5-knockout cells were smaller and had a slower proliferation rate. In these cells, mitochondria were more fragmented with a vacuolar cristae structure. In addition, the mitochondrial membrane potential was reduced and respiration was attenuated, leading to a reduced mitochondrial ATP generation. TMBIM5 did not associate with Mic10 and Mic60, which are proteins of the mitochondrial contact site and cristae organizing system (MICOS), nor did TMBIM5 knockout affect their expression levels. TMBIM5-knockout cells were more sensitive to apoptosis elicited by staurosporine and BH3 mimetic inhibitors of Bcl-2 and Bcl-XL. An unbiased proteomic comparison identified a dramatic downregulation of proteins involved in the mitochondrial protein synthesis machinery in TMBIM5-knockout cells. We conclude that TMBIM5 is important to maintain the mitochondrial structure and function possibly through the control of mitochondrial biogenesis.
format Online
Article
Text
id pubmed-7598220
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75982202020-10-31 Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery Seitaj, Bruno Maull, Felicia Zhang, Li Wüllner, Verena Wolf, Christina Schippers, Philipp La Rovere, Rita Distler, Ute Tenzer, Stefan Parys, Jan B. Bultynck, Geert Methner, Axel Cells Article The Transmembrane Bax Inhibitor-1 motif (TMBIM)-containing protein family is evolutionarily conserved and has been implicated in cell death susceptibility. The only member with a mitochondrial localization is TMBIM5 (also known as GHITM or MICS1), which affects cristae organization and associates with the Parkinson’s disease-associated protein CHCHD2 in the inner mitochondrial membrane. We here used CRISPR-Cas9-mediated knockout HAP1 cells to shed further light on the function of TMBIM5 in physiology and cell death susceptibility. We found that compared to wild type, TMBIM5-knockout cells were smaller and had a slower proliferation rate. In these cells, mitochondria were more fragmented with a vacuolar cristae structure. In addition, the mitochondrial membrane potential was reduced and respiration was attenuated, leading to a reduced mitochondrial ATP generation. TMBIM5 did not associate with Mic10 and Mic60, which are proteins of the mitochondrial contact site and cristae organizing system (MICOS), nor did TMBIM5 knockout affect their expression levels. TMBIM5-knockout cells were more sensitive to apoptosis elicited by staurosporine and BH3 mimetic inhibitors of Bcl-2 and Bcl-XL. An unbiased proteomic comparison identified a dramatic downregulation of proteins involved in the mitochondrial protein synthesis machinery in TMBIM5-knockout cells. We conclude that TMBIM5 is important to maintain the mitochondrial structure and function possibly through the control of mitochondrial biogenesis. MDPI 2020-09-23 /pmc/articles/PMC7598220/ /pubmed/32977469 http://dx.doi.org/10.3390/cells9102147 Text en © 2020 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
Seitaj, Bruno
Maull, Felicia
Zhang, Li
Wüllner, Verena
Wolf, Christina
Schippers, Philipp
La Rovere, Rita
Distler, Ute
Tenzer, Stefan
Parys, Jan B.
Bultynck, Geert
Methner, Axel
Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery
title Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery
title_full Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery
title_fullStr Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery
title_full_unstemmed Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery
title_short Transmembrane BAX Inhibitor-1 Motif Containing Protein 5 (TMBIM5) Sustains Mitochondrial Structure, Shape, and Function by Impacting the Mitochondrial Protein Synthesis Machinery
title_sort transmembrane bax inhibitor-1 motif containing protein 5 (tmbim5) sustains mitochondrial structure, shape, and function by impacting the mitochondrial protein synthesis machinery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7598220/
https://www.ncbi.nlm.nih.gov/pubmed/32977469
http://dx.doi.org/10.3390/cells9102147
work_keys_str_mv AT seitajbruno transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT maullfelicia transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT zhangli transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT wullnerverena transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT wolfchristina transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT schippersphilipp transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT larovererita transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT distlerute transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT tenzerstefan transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT parysjanb transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT bultynckgeert transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery
AT methneraxel transmembranebaxinhibitor1motifcontainingprotein5tmbim5sustainsmitochondrialstructureshapeandfunctionbyimpactingthemitochondrialproteinsynthesismachinery