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Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets

Cell fate is governed by combinatorial actions of transcriptional regulators assembling into multiprotein complexes. However, the molecular details of how these complexes form are poorly understood. One such complex, which contains the basic-helix-loop-helix heterodimer SCL:E47 and bridging proteins...

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Autores principales: El Omari, Kamel, Hoosdally, Sarah J., Tuladhar, Kapil, Karia, Dimple, Hall-Ponselé, Elisa, Platonova, Olga, Vyas, Paresh, Patient, Roger, Porcher, Catherine, Mancini, Erika J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3714592/
https://www.ncbi.nlm.nih.gov/pubmed/23831025
http://dx.doi.org/10.1016/j.celrep.2013.06.008
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author El Omari, Kamel
Hoosdally, Sarah J.
Tuladhar, Kapil
Karia, Dimple
Hall-Ponselé, Elisa
Platonova, Olga
Vyas, Paresh
Patient, Roger
Porcher, Catherine
Mancini, Erika J.
author_facet El Omari, Kamel
Hoosdally, Sarah J.
Tuladhar, Kapil
Karia, Dimple
Hall-Ponselé, Elisa
Platonova, Olga
Vyas, Paresh
Patient, Roger
Porcher, Catherine
Mancini, Erika J.
author_sort El Omari, Kamel
collection PubMed
description Cell fate is governed by combinatorial actions of transcriptional regulators assembling into multiprotein complexes. However, the molecular details of how these complexes form are poorly understood. One such complex, which contains the basic-helix-loop-helix heterodimer SCL:E47 and bridging proteins LMO2:LDB1, critically regulates hematopoiesis and induces T cell leukemia. Here, we report the crystal structure of (SCL:E47)(bHLH):LMO2:LDB1(LID) bound to DNA, providing a molecular account of the network of interactions assembling this complex. This reveals an unexpected role for LMO2. Upon binding to SCL, LMO2 induces new hydrogen bonds in SCL:E47, thereby strengthening heterodimer formation. This imposes a rotation movement onto E47 that weakens the heterodimer:DNA interaction, shifting the main DNA-binding activity onto additional protein partners. Along with biochemical analyses, this illustrates, at an atomic level, how hematopoietic-specific SCL sequesters ubiquitous E47 and associated cofactors and supports SCL’s reported DNA-binding-independent functions. Importantly, this work will drive the design of small molecules inhibiting leukemogenic processes.
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spelling pubmed-37145922013-07-18 Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets El Omari, Kamel Hoosdally, Sarah J. Tuladhar, Kapil Karia, Dimple Hall-Ponselé, Elisa Platonova, Olga Vyas, Paresh Patient, Roger Porcher, Catherine Mancini, Erika J. Cell Rep Article Cell fate is governed by combinatorial actions of transcriptional regulators assembling into multiprotein complexes. However, the molecular details of how these complexes form are poorly understood. One such complex, which contains the basic-helix-loop-helix heterodimer SCL:E47 and bridging proteins LMO2:LDB1, critically regulates hematopoiesis and induces T cell leukemia. Here, we report the crystal structure of (SCL:E47)(bHLH):LMO2:LDB1(LID) bound to DNA, providing a molecular account of the network of interactions assembling this complex. This reveals an unexpected role for LMO2. Upon binding to SCL, LMO2 induces new hydrogen bonds in SCL:E47, thereby strengthening heterodimer formation. This imposes a rotation movement onto E47 that weakens the heterodimer:DNA interaction, shifting the main DNA-binding activity onto additional protein partners. Along with biochemical analyses, this illustrates, at an atomic level, how hematopoietic-specific SCL sequesters ubiquitous E47 and associated cofactors and supports SCL’s reported DNA-binding-independent functions. Importantly, this work will drive the design of small molecules inhibiting leukemogenic processes. Cell Press 2013-07-11 /pmc/articles/PMC3714592/ /pubmed/23831025 http://dx.doi.org/10.1016/j.celrep.2013.06.008 Text en © 2013 The Authors https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Article
El Omari, Kamel
Hoosdally, Sarah J.
Tuladhar, Kapil
Karia, Dimple
Hall-Ponselé, Elisa
Platonova, Olga
Vyas, Paresh
Patient, Roger
Porcher, Catherine
Mancini, Erika J.
Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets
title Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets
title_full Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets
title_fullStr Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets
title_full_unstemmed Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets
title_short Structural Basis for LMO2-Driven Recruitment of the SCL:E47(bHLH) Heterodimer to Hematopoietic-Specific Transcriptional Targets
title_sort structural basis for lmo2-driven recruitment of the scl:e47(bhlh) heterodimer to hematopoietic-specific transcriptional targets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3714592/
https://www.ncbi.nlm.nih.gov/pubmed/23831025
http://dx.doi.org/10.1016/j.celrep.2013.06.008
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