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A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners

RAS effectors specifically interact with GTP-bound RAS proteins to link extracellular signals to downstream signaling pathways. These interactions rely on two types of domains, called RAS-binding (RB) and RAS association (RA) domains, which share common structural characteristics. Although the molec...

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Autores principales: Rezaei Adariani, Soheila, Kazemein Jasemi, Neda S., Bazgir, Farhad, Wittich, Christoph, Amin, Ehsan, Seidel, Claus A.M., Dvorsky, Radovan, Ahmadian, Mohammad R.
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/PMC8163975/
https://www.ncbi.nlm.nih.gov/pubmed/33930461
http://dx.doi.org/10.1016/j.jbc.2021.100626
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author Rezaei Adariani, Soheila
Kazemein Jasemi, Neda S.
Bazgir, Farhad
Wittich, Christoph
Amin, Ehsan
Seidel, Claus A.M.
Dvorsky, Radovan
Ahmadian, Mohammad R.
author_facet Rezaei Adariani, Soheila
Kazemein Jasemi, Neda S.
Bazgir, Farhad
Wittich, Christoph
Amin, Ehsan
Seidel, Claus A.M.
Dvorsky, Radovan
Ahmadian, Mohammad R.
author_sort Rezaei Adariani, Soheila
collection PubMed
description RAS effectors specifically interact with GTP-bound RAS proteins to link extracellular signals to downstream signaling pathways. These interactions rely on two types of domains, called RAS-binding (RB) and RAS association (RA) domains, which share common structural characteristics. Although the molecular nature of RAS-effector interactions is well-studied for some proteins, most of the RA/RB-domain-containing proteins remain largely uncharacterized. Here, we searched through human proteome databases, extracting 41 RA domains in 39 proteins and 16 RB domains in 14 proteins, each of which can specifically select at least one of the 25 members in the RAS family. We next comprehensively investigated the sequence–structure–function relationship between different representatives of the RAS family, including HRAS, RRAS, RALA, RAP1B, RAP2A, RHEB1, and RIT1, with all members of RA domain family proteins (RASSFs) and the RB-domain-containing CRAF. The binding affinity for RAS-effector interactions, determined using fluorescence polarization, broadly ranged between high (0.3 μM) and very low (500 μM) affinities, raising interesting questions about the consequence of these variable binding affinities in the regulation of signaling events. Sequence and structural alignments pointed to two interaction hotspots in the RA/RB domains, consisting of an average of 19 RAS-binding residues. Moreover, we found novel interactions between RRAS1, RIT1, and RALA and RASSF7, RASSF9, and RASSF1, respectively, which were systematically explored in sequence–structure–property relationship analysis, and validated by mutational analysis. These data provide a set of distinct functional properties and putative biological roles that should now be investigated in the cellular context.
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spelling pubmed-81639752021-06-04 A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners Rezaei Adariani, Soheila Kazemein Jasemi, Neda S. Bazgir, Farhad Wittich, Christoph Amin, Ehsan Seidel, Claus A.M. Dvorsky, Radovan Ahmadian, Mohammad R. J Biol Chem Research Article RAS effectors specifically interact with GTP-bound RAS proteins to link extracellular signals to downstream signaling pathways. These interactions rely on two types of domains, called RAS-binding (RB) and RAS association (RA) domains, which share common structural characteristics. Although the molecular nature of RAS-effector interactions is well-studied for some proteins, most of the RA/RB-domain-containing proteins remain largely uncharacterized. Here, we searched through human proteome databases, extracting 41 RA domains in 39 proteins and 16 RB domains in 14 proteins, each of which can specifically select at least one of the 25 members in the RAS family. We next comprehensively investigated the sequence–structure–function relationship between different representatives of the RAS family, including HRAS, RRAS, RALA, RAP1B, RAP2A, RHEB1, and RIT1, with all members of RA domain family proteins (RASSFs) and the RB-domain-containing CRAF. The binding affinity for RAS-effector interactions, determined using fluorescence polarization, broadly ranged between high (0.3 μM) and very low (500 μM) affinities, raising interesting questions about the consequence of these variable binding affinities in the regulation of signaling events. Sequence and structural alignments pointed to two interaction hotspots in the RA/RB domains, consisting of an average of 19 RAS-binding residues. Moreover, we found novel interactions between RRAS1, RIT1, and RALA and RASSF7, RASSF9, and RASSF1, respectively, which were systematically explored in sequence–structure–property relationship analysis, and validated by mutational analysis. These data provide a set of distinct functional properties and putative biological roles that should now be investigated in the cellular context. American Society for Biochemistry and Molecular Biology 2021-04-28 /pmc/articles/PMC8163975/ /pubmed/33930461 http://dx.doi.org/10.1016/j.jbc.2021.100626 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 Research Article
Rezaei Adariani, Soheila
Kazemein Jasemi, Neda S.
Bazgir, Farhad
Wittich, Christoph
Amin, Ehsan
Seidel, Claus A.M.
Dvorsky, Radovan
Ahmadian, Mohammad R.
A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners
title A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners
title_full A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners
title_fullStr A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners
title_full_unstemmed A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners
title_short A comprehensive analysis of RAS-effector interactions reveals interaction hotspots and new binding partners
title_sort comprehensive analysis of ras-effector interactions reveals interaction hotspots and new binding partners
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8163975/
https://www.ncbi.nlm.nih.gov/pubmed/33930461
http://dx.doi.org/10.1016/j.jbc.2021.100626
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