Cargando…

Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation

Increased production of fetal hemoglobin (HbF) can ameliorate the severity of sickle cell disease and β-thalassemia(1). BCL11A represses the genes encoding HbF and regulates human hemoglobin switching through variation in its expression during development(2–7). However, the mechanisms underlying the...

Descripción completa

Detalles Bibliográficos
Autores principales: Basak, Anindita, Munschauer, Mathias, Lareau, Caleb A., Montbleau, Kara E., Ulirsch, Jacob C., Hartigan, Christina R., Schenone, Monica, Lian, John, Wang, Yaomei, Huang, Yumin, Wu, Xianfang, Gehrke, Lee, Rice, Charles M., An, Xiuli, Christou, Helen A., Mohandas, Narla, Carr, Steven A., Chen, Jane-Jane, Orkin, Stuart H., Lander, Eric S., Sankaran, Vijay G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7031047/
https://www.ncbi.nlm.nih.gov/pubmed/31959994
http://dx.doi.org/10.1038/s41588-019-0568-7
_version_ 1783499291238596608
author Basak, Anindita
Munschauer, Mathias
Lareau, Caleb A.
Montbleau, Kara E.
Ulirsch, Jacob C.
Hartigan, Christina R.
Schenone, Monica
Lian, John
Wang, Yaomei
Huang, Yumin
Wu, Xianfang
Gehrke, Lee
Rice, Charles M.
An, Xiuli
Christou, Helen A.
Mohandas, Narla
Carr, Steven A.
Chen, Jane-Jane
Orkin, Stuart H.
Lander, Eric S.
Sankaran, Vijay G.
author_facet Basak, Anindita
Munschauer, Mathias
Lareau, Caleb A.
Montbleau, Kara E.
Ulirsch, Jacob C.
Hartigan, Christina R.
Schenone, Monica
Lian, John
Wang, Yaomei
Huang, Yumin
Wu, Xianfang
Gehrke, Lee
Rice, Charles M.
An, Xiuli
Christou, Helen A.
Mohandas, Narla
Carr, Steven A.
Chen, Jane-Jane
Orkin, Stuart H.
Lander, Eric S.
Sankaran, Vijay G.
author_sort Basak, Anindita
collection PubMed
description Increased production of fetal hemoglobin (HbF) can ameliorate the severity of sickle cell disease and β-thalassemia(1). BCL11A represses the genes encoding HbF and regulates human hemoglobin switching through variation in its expression during development(2–7). However, the mechanisms underlying the developmental expression of BCL11A remain mysterious. Here we show that BCL11A is regulated at the level of mRNA translation during human hematopoietic development. Despite decreased BCL11A protein synthesis earlier in development, BCL11A mRNA continues to be associated with ribosomes. Through unbiased genomic and proteomic analyses, we demonstrate that the RNA-binding protein LIN28B, which is developmentally expressed in a reciprocal pattern to BCL11A, directly interacts with ribosomes and BCL11A mRNA. Furthermore, we show that BCL11A mRNA translation is suppressed by LIN28B through direct interactions, independent of its role in regulating let-7 microRNAs, and BCL11A is the major target of LIN28B-mediated HbF induction. Our results reveal a previously unappreciated mechanism underlying human hemoglobin switching that illuminates new therapeutic opportunities.
format Online
Article
Text
id pubmed-7031047
institution National Center for Biotechnology Information
language English
publishDate 2020
record_format MEDLINE/PubMed
spelling pubmed-70310472020-07-20 Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation Basak, Anindita Munschauer, Mathias Lareau, Caleb A. Montbleau, Kara E. Ulirsch, Jacob C. Hartigan, Christina R. Schenone, Monica Lian, John Wang, Yaomei Huang, Yumin Wu, Xianfang Gehrke, Lee Rice, Charles M. An, Xiuli Christou, Helen A. Mohandas, Narla Carr, Steven A. Chen, Jane-Jane Orkin, Stuart H. Lander, Eric S. Sankaran, Vijay G. Nat Genet Article Increased production of fetal hemoglobin (HbF) can ameliorate the severity of sickle cell disease and β-thalassemia(1). BCL11A represses the genes encoding HbF and regulates human hemoglobin switching through variation in its expression during development(2–7). However, the mechanisms underlying the developmental expression of BCL11A remain mysterious. Here we show that BCL11A is regulated at the level of mRNA translation during human hematopoietic development. Despite decreased BCL11A protein synthesis earlier in development, BCL11A mRNA continues to be associated with ribosomes. Through unbiased genomic and proteomic analyses, we demonstrate that the RNA-binding protein LIN28B, which is developmentally expressed in a reciprocal pattern to BCL11A, directly interacts with ribosomes and BCL11A mRNA. Furthermore, we show that BCL11A mRNA translation is suppressed by LIN28B through direct interactions, independent of its role in regulating let-7 microRNAs, and BCL11A is the major target of LIN28B-mediated HbF induction. Our results reveal a previously unappreciated mechanism underlying human hemoglobin switching that illuminates new therapeutic opportunities. 2020-01-20 2020-02 /pmc/articles/PMC7031047/ /pubmed/31959994 http://dx.doi.org/10.1038/s41588-019-0568-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Basak, Anindita
Munschauer, Mathias
Lareau, Caleb A.
Montbleau, Kara E.
Ulirsch, Jacob C.
Hartigan, Christina R.
Schenone, Monica
Lian, John
Wang, Yaomei
Huang, Yumin
Wu, Xianfang
Gehrke, Lee
Rice, Charles M.
An, Xiuli
Christou, Helen A.
Mohandas, Narla
Carr, Steven A.
Chen, Jane-Jane
Orkin, Stuart H.
Lander, Eric S.
Sankaran, Vijay G.
Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation
title Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation
title_full Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation
title_fullStr Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation
title_full_unstemmed Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation
title_short Control of human hemoglobin switching by LIN28B-mediated regulation of BCL11A translation
title_sort control of human hemoglobin switching by lin28b-mediated regulation of bcl11a translation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7031047/
https://www.ncbi.nlm.nih.gov/pubmed/31959994
http://dx.doi.org/10.1038/s41588-019-0568-7
work_keys_str_mv AT basakanindita controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT munschauermathias controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT lareaucaleba controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT montbleaukarae controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT ulirschjacobc controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT hartiganchristinar controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT schenonemonica controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT lianjohn controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT wangyaomei controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT huangyumin controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT wuxianfang controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT gehrkelee controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT ricecharlesm controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT anxiuli controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT christouhelena controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT mohandasnarla controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT carrstevena controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT chenjanejane controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT orkinstuarth controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT landererics controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation
AT sankaranvijayg controlofhumanhemoglobinswitchingbylin28bmediatedregulationofbcl11atranslation