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Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt

Mechanistic target of rapamycin complex 2 (mTORC2) is a multi-subunit kinase complex, central to multiple essential signaling pathways. Two core subunits, Rictor and mSin1, distinguish it from the related mTORC1 and support context-dependent phosphorylation of its substrates. mTORC2 structures have...

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Autores principales: Yu, Zanlin, Chen, Junliang, Takagi, Enzo, Wang, Feng, Saha, Bidisha, Liu, Xi, Joubert, Lydia-Marie, Gleason, Catherine E., Jin, Mingliang, Li, Chengmin, Nowotny, Carlos, Agard, David, Cheng, Yifan, Pearce, David
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/PMC9440446/
https://www.ncbi.nlm.nih.gov/pubmed/35926713
http://dx.doi.org/10.1016/j.jbc.2022.102288
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author Yu, Zanlin
Chen, Junliang
Takagi, Enzo
Wang, Feng
Saha, Bidisha
Liu, Xi
Joubert, Lydia-Marie
Gleason, Catherine E.
Jin, Mingliang
Li, Chengmin
Nowotny, Carlos
Agard, David
Cheng, Yifan
Pearce, David
author_facet Yu, Zanlin
Chen, Junliang
Takagi, Enzo
Wang, Feng
Saha, Bidisha
Liu, Xi
Joubert, Lydia-Marie
Gleason, Catherine E.
Jin, Mingliang
Li, Chengmin
Nowotny, Carlos
Agard, David
Cheng, Yifan
Pearce, David
author_sort Yu, Zanlin
collection PubMed
description Mechanistic target of rapamycin complex 2 (mTORC2) is a multi-subunit kinase complex, central to multiple essential signaling pathways. Two core subunits, Rictor and mSin1, distinguish it from the related mTORC1 and support context-dependent phosphorylation of its substrates. mTORC2 structures have been determined previously; however, important questions remain, particularly regarding the structural determinants mediating substrate specificity and context-dependent activity. Here, we used cryo-EM to obtain high-resolution structures of the human mTORC2 apo-complex in the presence of substrates Akt and SGK1. Using functional assays, we then tested predictions suggested by substrate-induced structural changes in mTORC2. For the first time, we visualized in the apo-state the side chain interactions between Rictor and mTOR that sterically occlude recruitment of mTORC1 substrates and confer resistance to the mTORC1 inhibitor rapamycin. Also in the apo-state, we observed that mSin1 formed extensive contacts with Rictor via a pair of short α-helices nestled between two Rictor helical repeat clusters, as well as by an extended strand that makes multiple weak contacts with Rictor helical cluster 1. In co-complex structures, we found that SGK1, but not Akt, markedly altered the conformation of the mSin1 N-terminal extended strand, disrupting multiple weak interactions while inducing a large rotation of mSin1 residue Arg-83, which then interacts with a patch of negatively charged residues within Rictor. Finally, we demonstrate mutation of Arg-83 to Ala selectively disrupts mTORC2-dependent phosphorylation of SGK1, but not of Akt, supporting context-dependent substrate selection. These findings provide new structural and functional insights into mTORC2 specificity and context-dependent activity.
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spelling pubmed-94404462022-09-09 Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt Yu, Zanlin Chen, Junliang Takagi, Enzo Wang, Feng Saha, Bidisha Liu, Xi Joubert, Lydia-Marie Gleason, Catherine E. Jin, Mingliang Li, Chengmin Nowotny, Carlos Agard, David Cheng, Yifan Pearce, David J Biol Chem Research Article Mechanistic target of rapamycin complex 2 (mTORC2) is a multi-subunit kinase complex, central to multiple essential signaling pathways. Two core subunits, Rictor and mSin1, distinguish it from the related mTORC1 and support context-dependent phosphorylation of its substrates. mTORC2 structures have been determined previously; however, important questions remain, particularly regarding the structural determinants mediating substrate specificity and context-dependent activity. Here, we used cryo-EM to obtain high-resolution structures of the human mTORC2 apo-complex in the presence of substrates Akt and SGK1. Using functional assays, we then tested predictions suggested by substrate-induced structural changes in mTORC2. For the first time, we visualized in the apo-state the side chain interactions between Rictor and mTOR that sterically occlude recruitment of mTORC1 substrates and confer resistance to the mTORC1 inhibitor rapamycin. Also in the apo-state, we observed that mSin1 formed extensive contacts with Rictor via a pair of short α-helices nestled between two Rictor helical repeat clusters, as well as by an extended strand that makes multiple weak contacts with Rictor helical cluster 1. In co-complex structures, we found that SGK1, but not Akt, markedly altered the conformation of the mSin1 N-terminal extended strand, disrupting multiple weak interactions while inducing a large rotation of mSin1 residue Arg-83, which then interacts with a patch of negatively charged residues within Rictor. Finally, we demonstrate mutation of Arg-83 to Ala selectively disrupts mTORC2-dependent phosphorylation of SGK1, but not of Akt, supporting context-dependent substrate selection. These findings provide new structural and functional insights into mTORC2 specificity and context-dependent activity. American Society for Biochemistry and Molecular Biology 2022-08-01 /pmc/articles/PMC9440446/ /pubmed/35926713 http://dx.doi.org/10.1016/j.jbc.2022.102288 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Yu, Zanlin
Chen, Junliang
Takagi, Enzo
Wang, Feng
Saha, Bidisha
Liu, Xi
Joubert, Lydia-Marie
Gleason, Catherine E.
Jin, Mingliang
Li, Chengmin
Nowotny, Carlos
Agard, David
Cheng, Yifan
Pearce, David
Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt
title Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt
title_full Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt
title_fullStr Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt
title_full_unstemmed Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt
title_short Interactions between mTORC2 core subunits Rictor and mSin1 dictate selective and context-dependent phosphorylation of substrate kinases SGK1 and Akt
title_sort interactions between mtorc2 core subunits rictor and msin1 dictate selective and context-dependent phosphorylation of substrate kinases sgk1 and akt
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9440446/
https://www.ncbi.nlm.nih.gov/pubmed/35926713
http://dx.doi.org/10.1016/j.jbc.2022.102288
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