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Macrophage Function is Regulated by NPM1-mediated 2’-O-methylation
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Abstract
The
NPM1
gene is frequently a target of genetic alteration in hematological tumors, particularly of the myeloid lineage. Complete inactivation of
Npm1
in the mouse disrupts primitive hematopoiesis and results in embryonic lethality.
Npm1
heterozygosity produces features similar to those of MDS that progress to overt leukemia, and specific point mutations of
Npm1
lead to bone marrow failure due to loss of hematopoietic stem cells. However, little is known about NPM1’s role in mature, differentiated cells. Here we generated a conditional mouse mutant to inactivate
Npm1
across the myelomonocytic lineage, and investigated its ability to influence macrophage maturation and function. We found that
Npm1
is not required to maintain macrophage viability, while its loss in mature macrophages reduces production of reactive oxygen species, chemotactic properties and phagocytic capacity. Taking advantage of our recently established
Npm1
D180del
mouse model of ribosome dysfunction and hematological disease, we identify cellular translation and rRNA 2’-O-methlyation as a crucial element in controlling macrophage function. These analyses demonstrate a role for
Npm1
in adult immune cells, and reveal the importance of translation regulation in macrophage function.
Statement of significance
Macrophages are a major component of the immune response to various insults including to cancer. Here we show that NPM1, the most frequently mutated gene in acute myeloid leukemia, displays a critical role in macrophage function, and we identify ribosome deregulation as one of the underlying mechanisms.
Title: Macrophage Function is Regulated by NPM1-mediated 2’-O-methylation
Description:
Abstract
The
NPM1
gene is frequently a target of genetic alteration in hematological tumors, particularly of the myeloid lineage.
Complete inactivation of
Npm1
in the mouse disrupts primitive hematopoiesis and results in embryonic lethality.
Npm1
heterozygosity produces features similar to those of MDS that progress to overt leukemia, and specific point mutations of
Npm1
lead to bone marrow failure due to loss of hematopoietic stem cells.
However, little is known about NPM1’s role in mature, differentiated cells.
Here we generated a conditional mouse mutant to inactivate
Npm1
across the myelomonocytic lineage, and investigated its ability to influence macrophage maturation and function.
We found that
Npm1
is not required to maintain macrophage viability, while its loss in mature macrophages reduces production of reactive oxygen species, chemotactic properties and phagocytic capacity.
Taking advantage of our recently established
Npm1
D180del
mouse model of ribosome dysfunction and hematological disease, we identify cellular translation and rRNA 2’-O-methlyation as a crucial element in controlling macrophage function.
These analyses demonstrate a role for
Npm1
in adult immune cells, and reveal the importance of translation regulation in macrophage function.
Statement of significance
Macrophages are a major component of the immune response to various insults including to cancer.
Here we show that NPM1, the most frequently mutated gene in acute myeloid leukemia, displays a critical role in macrophage function, and we identify ribosome deregulation as one of the underlying mechanisms.
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