Cargando…
The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover
Heme plays a critical role in catalyzing life-essential redox reactions in all cells, and its synthesis must be tightly balanced with cellular requirements. Heme synthesis in eukaryotes is tightly regulated by the mitochondrial AAA+ unfoldase CLPX (caseinolytic mitochondrial matrix peptidase chapero...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Biochemistry and Molecular Biology
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8361296/ https://www.ncbi.nlm.nih.gov/pubmed/34280433 http://dx.doi.org/10.1016/j.jbc.2021.100972 |
_version_ | 1783737933441794048 |
---|---|
author | Rondelli, Catherine M. Perfetto, Mark Danoff, Aidan Bergonia, Hector Gillis, Samantha O'Neill, Leah Jackson, Laurie Nicolas, Gael Puy, Herve West, Richard Phillips, John D. Yien, Yvette Y. |
author_facet | Rondelli, Catherine M. Perfetto, Mark Danoff, Aidan Bergonia, Hector Gillis, Samantha O'Neill, Leah Jackson, Laurie Nicolas, Gael Puy, Herve West, Richard Phillips, John D. Yien, Yvette Y. |
author_sort | Rondelli, Catherine M. |
collection | PubMed |
description | Heme plays a critical role in catalyzing life-essential redox reactions in all cells, and its synthesis must be tightly balanced with cellular requirements. Heme synthesis in eukaryotes is tightly regulated by the mitochondrial AAA+ unfoldase CLPX (caseinolytic mitochondrial matrix peptidase chaperone subunit X), which promotes heme synthesis by activation of δ-aminolevulinate synthase (ALAS/Hem1) in yeast and regulates turnover of ALAS1 in human cells. However, the specific mechanisms by which CLPX regulates heme synthesis are unclear. In this study, we interrogated the mechanisms by which CLPX regulates heme synthesis in erythroid cells. Quantitation of enzyme activity and protein degradation showed that ALAS2 stability and activity were both increased in the absence of CLPX, suggesting that CLPX primarily regulates ALAS2 by control of its turnover, rather than its activation. However, we also showed that CLPX is required for PPOX (protoporphyrinogen IX oxidase) activity and maintenance of FECH (ferrochelatase) levels, which are the terminal enzymes in heme synthesis, likely accounting for the heme deficiency and porphyrin accumulation observed in Clpx(−/−) cells. Lastly, CLPX is required for iron utilization for hemoglobin synthesis during erythroid differentiation. Collectively, our data show that the role of CLPX in yeast ALAS/Hem1 activation is not conserved in vertebrates as vertebrates rely on CLPX to regulate ALAS turnover as well as PPOX and FECH activity. Our studies reveal that CLPX mutations may cause anemia and porphyria via dysregulation of ALAS, FECH, and PPOX activities, as well as of iron metabolism. |
format | Online Article Text |
id | pubmed-8361296 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-83612962021-08-17 The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover Rondelli, Catherine M. Perfetto, Mark Danoff, Aidan Bergonia, Hector Gillis, Samantha O'Neill, Leah Jackson, Laurie Nicolas, Gael Puy, Herve West, Richard Phillips, John D. Yien, Yvette Y. J Biol Chem Accelerated Communication Heme plays a critical role in catalyzing life-essential redox reactions in all cells, and its synthesis must be tightly balanced with cellular requirements. Heme synthesis in eukaryotes is tightly regulated by the mitochondrial AAA+ unfoldase CLPX (caseinolytic mitochondrial matrix peptidase chaperone subunit X), which promotes heme synthesis by activation of δ-aminolevulinate synthase (ALAS/Hem1) in yeast and regulates turnover of ALAS1 in human cells. However, the specific mechanisms by which CLPX regulates heme synthesis are unclear. In this study, we interrogated the mechanisms by which CLPX regulates heme synthesis in erythroid cells. Quantitation of enzyme activity and protein degradation showed that ALAS2 stability and activity were both increased in the absence of CLPX, suggesting that CLPX primarily regulates ALAS2 by control of its turnover, rather than its activation. However, we also showed that CLPX is required for PPOX (protoporphyrinogen IX oxidase) activity and maintenance of FECH (ferrochelatase) levels, which are the terminal enzymes in heme synthesis, likely accounting for the heme deficiency and porphyrin accumulation observed in Clpx(−/−) cells. Lastly, CLPX is required for iron utilization for hemoglobin synthesis during erythroid differentiation. Collectively, our data show that the role of CLPX in yeast ALAS/Hem1 activation is not conserved in vertebrates as vertebrates rely on CLPX to regulate ALAS turnover as well as PPOX and FECH activity. Our studies reveal that CLPX mutations may cause anemia and porphyria via dysregulation of ALAS, FECH, and PPOX activities, as well as of iron metabolism. American Society for Biochemistry and Molecular Biology 2021-07-16 /pmc/articles/PMC8361296/ /pubmed/34280433 http://dx.doi.org/10.1016/j.jbc.2021.100972 Text en © 2021 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 | Accelerated Communication Rondelli, Catherine M. Perfetto, Mark Danoff, Aidan Bergonia, Hector Gillis, Samantha O'Neill, Leah Jackson, Laurie Nicolas, Gael Puy, Herve West, Richard Phillips, John D. Yien, Yvette Y. The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
title | The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
title_full | The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
title_fullStr | The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
title_full_unstemmed | The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
title_short | The ubiquitous mitochondrial protein unfoldase CLPX regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
title_sort | ubiquitous mitochondrial protein unfoldase clpx regulates erythroid heme synthesis by control of iron utilization and heme synthesis enzyme activation and turnover |
topic | Accelerated Communication |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8361296/ https://www.ncbi.nlm.nih.gov/pubmed/34280433 http://dx.doi.org/10.1016/j.jbc.2021.100972 |
work_keys_str_mv | AT rondellicatherinem theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT perfettomark theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT danoffaidan theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT bergoniahector theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT gillissamantha theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT oneillleah theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT jacksonlaurie theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT nicolasgael theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT puyherve theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT westrichard theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT phillipsjohnd theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT yienyvettey theubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT rondellicatherinem ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT perfettomark ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT danoffaidan ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT bergoniahector ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT gillissamantha ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT oneillleah ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT jacksonlaurie ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT nicolasgael ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT puyherve ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT westrichard ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT phillipsjohnd ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover AT yienyvettey ubiquitousmitochondrialproteinunfoldaseclpxregulateserythroidhemesynthesisbycontrolofironutilizationandhemesynthesisenzymeactivationandturnover |