Cargando…

Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis

Oncogenic mutations in RAS genes, like KRAS(G12D) or NRAS(G12D), trap Ras in the active state and cause myeloproliferative disorder and T cell leukemia (T-ALL) when induced in the bone marrow via Mx1CRE. The RAS exchange factor RASGRP1 is frequently overexpressed in T-ALL patients. In T-ALL cell lin...

Descripción completa

Detalles Bibliográficos
Autores principales: Karra, Laila, Romero-Moya, Damia, Ksionda, Olga, Krush, Milana, Gu, Zhaohui, Mues, Marsilius, Depeille, Philippe, Mullighan, Charles, Roose, Jeroen P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7655557/
https://www.ncbi.nlm.nih.gov/pubmed/32989257
http://dx.doi.org/10.1038/s41388-020-01469-8
_version_ 1783608223514755072
author Karra, Laila
Romero-Moya, Damia
Ksionda, Olga
Krush, Milana
Gu, Zhaohui
Mues, Marsilius
Depeille, Philippe
Mullighan, Charles
Roose, Jeroen P.
author_facet Karra, Laila
Romero-Moya, Damia
Ksionda, Olga
Krush, Milana
Gu, Zhaohui
Mues, Marsilius
Depeille, Philippe
Mullighan, Charles
Roose, Jeroen P.
author_sort Karra, Laila
collection PubMed
description Oncogenic mutations in RAS genes, like KRAS(G12D) or NRAS(G12D), trap Ras in the active state and cause myeloproliferative disorder and T cell leukemia (T-ALL) when induced in the bone marrow via Mx1CRE. The RAS exchange factor RASGRP1 is frequently overexpressed in T-ALL patients. In T-ALL cell lines overexpression of RASGRP1 increases flux through the RASGTP/RasGDP cycle. Here we expanded RASGRP1 expression surveys in pediatric T-ALL and generated a RoLoRiG mouse model crossed to Mx1CRE to determine the consequences of induced RASGRP1 overexpression in primary hematopoietic cells. RASGRP1-overexpressing, GFP-positive cells outcompeted wild type cells and dominated the peripheral blood compartment over time. RASGRP1 overexpression bestows gain-of-function colony formation properties to bone marrow progenitors in medium containing limited growth factors. RASGRP1 overexpression enhances baseline mTOR-S6 signaling in the bone marrow, but not in vitro cytokine-induced signals. In agreement with these mechanistic findings, hRASGRP1-ires-EGFP enhances fitness of stem- and progenitor- cells, but only in the context of native hematopoiesis. RASGRP1 overexpression is distinct from KRAS(G12D) or NRAS(G12D), does not cause acute leukemia on its own, and leukemia virus insertion frequencies predict that RASGRP1 overexpression can effectively cooperate with lesions in many other genes to cause acute T cell leukemia.
format Online
Article
Text
id pubmed-7655557
institution National Center for Biotechnology Information
language English
publishDate 2020
record_format MEDLINE/PubMed
spelling pubmed-76555572021-03-28 Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis Karra, Laila Romero-Moya, Damia Ksionda, Olga Krush, Milana Gu, Zhaohui Mues, Marsilius Depeille, Philippe Mullighan, Charles Roose, Jeroen P. Oncogene Article Oncogenic mutations in RAS genes, like KRAS(G12D) or NRAS(G12D), trap Ras in the active state and cause myeloproliferative disorder and T cell leukemia (T-ALL) when induced in the bone marrow via Mx1CRE. The RAS exchange factor RASGRP1 is frequently overexpressed in T-ALL patients. In T-ALL cell lines overexpression of RASGRP1 increases flux through the RASGTP/RasGDP cycle. Here we expanded RASGRP1 expression surveys in pediatric T-ALL and generated a RoLoRiG mouse model crossed to Mx1CRE to determine the consequences of induced RASGRP1 overexpression in primary hematopoietic cells. RASGRP1-overexpressing, GFP-positive cells outcompeted wild type cells and dominated the peripheral blood compartment over time. RASGRP1 overexpression bestows gain-of-function colony formation properties to bone marrow progenitors in medium containing limited growth factors. RASGRP1 overexpression enhances baseline mTOR-S6 signaling in the bone marrow, but not in vitro cytokine-induced signals. In agreement with these mechanistic findings, hRASGRP1-ires-EGFP enhances fitness of stem- and progenitor- cells, but only in the context of native hematopoiesis. RASGRP1 overexpression is distinct from KRAS(G12D) or NRAS(G12D), does not cause acute leukemia on its own, and leukemia virus insertion frequencies predict that RASGRP1 overexpression can effectively cooperate with lesions in many other genes to cause acute T cell leukemia. 2020-09-28 2020-11 /pmc/articles/PMC7655557/ /pubmed/32989257 http://dx.doi.org/10.1038/s41388-020-01469-8 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
Karra, Laila
Romero-Moya, Damia
Ksionda, Olga
Krush, Milana
Gu, Zhaohui
Mues, Marsilius
Depeille, Philippe
Mullighan, Charles
Roose, Jeroen P.
Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis
title Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis
title_full Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis
title_fullStr Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis
title_full_unstemmed Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis
title_short Increased baseline RASGRP1 signals Enhance Stem Cell Fitness during Native Hematopoiesis
title_sort increased baseline rasgrp1 signals enhance stem cell fitness during native hematopoiesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7655557/
https://www.ncbi.nlm.nih.gov/pubmed/32989257
http://dx.doi.org/10.1038/s41388-020-01469-8
work_keys_str_mv AT karralaila increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT romeromoyadamia increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT ksiondaolga increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT krushmilana increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT guzhaohui increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT muesmarsilius increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT depeillephilippe increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT mullighancharles increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis
AT roosejeroenp increasedbaselinerasgrp1signalsenhancestemcellfitnessduringnativehematopoiesis