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Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission

Fission protein 1 (FIS1) and dynamin-related protein 1 (DRP1) were initially described as being evolutionarily conserved for mitochondrial fission, yet in humans the role of FIS1 in this process is unclear and disputed by many. In budding yeast where Fis1p helps to recruit the DRP1 ortholog from the...

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Autores principales: Egner, John M., Nolden, Kelsey A., Harwig, Megan Cleland, Bonate, Ryan P., De Anda, Jaime, Tessmer, Maxx H., Noey, Elizabeth L., Ihenacho, Ugochukwu K., Liu, Ziwen, Peterson, Francis C., Wong, Gerard C.L., Widlansky, Michael E., Hill, R. Blake
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/PMC9747602/
https://www.ncbi.nlm.nih.gov/pubmed/36272645
http://dx.doi.org/10.1016/j.jbc.2022.102620
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author Egner, John M.
Nolden, Kelsey A.
Harwig, Megan Cleland
Bonate, Ryan P.
De Anda, Jaime
Tessmer, Maxx H.
Noey, Elizabeth L.
Ihenacho, Ugochukwu K.
Liu, Ziwen
Peterson, Francis C.
Wong, Gerard C.L.
Widlansky, Michael E.
Hill, R. Blake
author_facet Egner, John M.
Nolden, Kelsey A.
Harwig, Megan Cleland
Bonate, Ryan P.
De Anda, Jaime
Tessmer, Maxx H.
Noey, Elizabeth L.
Ihenacho, Ugochukwu K.
Liu, Ziwen
Peterson, Francis C.
Wong, Gerard C.L.
Widlansky, Michael E.
Hill, R. Blake
author_sort Egner, John M.
collection PubMed
description Fission protein 1 (FIS1) and dynamin-related protein 1 (DRP1) were initially described as being evolutionarily conserved for mitochondrial fission, yet in humans the role of FIS1 in this process is unclear and disputed by many. In budding yeast where Fis1p helps to recruit the DRP1 ortholog from the cytoplasm to mitochondria for fission, an N-terminal “arm” of Fis1p is required for function. The yeast Fis1p arm interacts intramolecularly with a conserved tetratricopeptide repeat core and governs in vitro interactions with yeast DRP1. In human FIS1, NMR and X-ray structures show different arm conformations, but its importance for human DRP1 recruitment is unknown. Here, we use molecular dynamics simulations and comparisons to experimental NMR chemical shifts to show the human FIS1 arm can adopt an intramolecular conformation akin to that observed with yeast Fis1p. This finding is further supported through intrinsic tryptophan fluorescence and NMR experiments on human FIS1 with and without the arm. Using NMR, we observed the human FIS1 arm is also sensitive to environmental changes. We reveal the importance of these findings in cellular studies where removal of the FIS1 arm reduces DRP1 recruitment and mitochondrial fission similar to the yeast system. Moreover, we determined that expression of mitophagy adapter TBC1D15 can partially rescue arm-less FIS1 in a manner reminiscent of expression of the adapter Mdv1p in yeast. These findings point to conserved features of FIS1 important for its activity in mitochondrial morphology. More generally, other tetratricopeptide repeat–containing proteins are flanked by disordered arms/tails, suggesting possible common regulatory mechanisms.
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spelling pubmed-97476022022-12-15 Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission Egner, John M. Nolden, Kelsey A. Harwig, Megan Cleland Bonate, Ryan P. De Anda, Jaime Tessmer, Maxx H. Noey, Elizabeth L. Ihenacho, Ugochukwu K. Liu, Ziwen Peterson, Francis C. Wong, Gerard C.L. Widlansky, Michael E. Hill, R. Blake J Biol Chem Research Article Fission protein 1 (FIS1) and dynamin-related protein 1 (DRP1) were initially described as being evolutionarily conserved for mitochondrial fission, yet in humans the role of FIS1 in this process is unclear and disputed by many. In budding yeast where Fis1p helps to recruit the DRP1 ortholog from the cytoplasm to mitochondria for fission, an N-terminal “arm” of Fis1p is required for function. The yeast Fis1p arm interacts intramolecularly with a conserved tetratricopeptide repeat core and governs in vitro interactions with yeast DRP1. In human FIS1, NMR and X-ray structures show different arm conformations, but its importance for human DRP1 recruitment is unknown. Here, we use molecular dynamics simulations and comparisons to experimental NMR chemical shifts to show the human FIS1 arm can adopt an intramolecular conformation akin to that observed with yeast Fis1p. This finding is further supported through intrinsic tryptophan fluorescence and NMR experiments on human FIS1 with and without the arm. Using NMR, we observed the human FIS1 arm is also sensitive to environmental changes. We reveal the importance of these findings in cellular studies where removal of the FIS1 arm reduces DRP1 recruitment and mitochondrial fission similar to the yeast system. Moreover, we determined that expression of mitophagy adapter TBC1D15 can partially rescue arm-less FIS1 in a manner reminiscent of expression of the adapter Mdv1p in yeast. These findings point to conserved features of FIS1 important for its activity in mitochondrial morphology. More generally, other tetratricopeptide repeat–containing proteins are flanked by disordered arms/tails, suggesting possible common regulatory mechanisms. American Society for Biochemistry and Molecular Biology 2022-10-20 /pmc/articles/PMC9747602/ /pubmed/36272645 http://dx.doi.org/10.1016/j.jbc.2022.102620 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
Egner, John M.
Nolden, Kelsey A.
Harwig, Megan Cleland
Bonate, Ryan P.
De Anda, Jaime
Tessmer, Maxx H.
Noey, Elizabeth L.
Ihenacho, Ugochukwu K.
Liu, Ziwen
Peterson, Francis C.
Wong, Gerard C.L.
Widlansky, Michael E.
Hill, R. Blake
Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission
title Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission
title_full Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission
title_fullStr Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission
title_full_unstemmed Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission
title_short Structural studies of human fission protein FIS1 reveal a dynamic region important for GTPase DRP1 recruitment and mitochondrial fission
title_sort structural studies of human fission protein fis1 reveal a dynamic region important for gtpase drp1 recruitment and mitochondrial fission
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747602/
https://www.ncbi.nlm.nih.gov/pubmed/36272645
http://dx.doi.org/10.1016/j.jbc.2022.102620
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