Literature DB >> 26878232

Rps14 haploinsufficiency causes a block in erythroid differentiation mediated by S100A8 and S100A9.

Rebekka K Schneider1,2, Monica Schenone3, Monica Ventura Ferreira2, Rafael Kramann4, Cailin E Joyce5, Christina Hartigan3, Fabian Beier2, Tim H Brümmendorf2, Ulrich Germing6, Uwe Platzbecker7, Guntram Büsche8, Ruth Knüchel9, Michelle C Chen1, Christopher S Waters1, Edwin Chen1, Lisa P Chu1, Carl D Novina5, R Coleman Lindsley1,5, Steven A Carr2, Benjamin L Ebert1,3.   

Abstract

Impaired erythropoiesis in the deletion 5q (del(5q)) subtype of myelodysplastic syndrome (MDS) has been linked to heterozygous deletion of RPS14, which encodes the ribosomal protein small subunit 14. We generated mice with conditional inactivation of Rps14 and demonstrated an erythroid differentiation defect that is dependent on the tumor suppressor protein p53 (encoded by Trp53 in mice) and is characterized by apoptosis at the transition from polychromatic to orthochromatic erythroblasts. This defect resulted in age-dependent progressive anemia, megakaryocyte dysplasia and loss of hematopoietic stem cell (HSC) quiescence. As assessed by quantitative proteomics, mutant erythroblasts expressed higher levels of proteins involved in innate immune signaling, notably the heterodimeric S100 calcium-binding proteins S100a8 and S100a9. S100a8--whose expression was increased in mutant erythroblasts, monocytes and macrophages--is functionally involved in the erythroid defect caused by the Rps14 deletion, as addition of recombinant S100a8 was sufficient to induce a differentiation defect in wild-type erythroid cells, and genetic inactivation of S100a8 expression rescued the erythroid differentiation defect of Rps14-haploinsufficient HSCs. Our data link Rps14 haploinsufficiency in del(5q) MDS to activation of the innate immune system and induction of S100A8-S100A9 expression, leading to a p53-dependent erythroid differentiation defect.

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Year:  2016        PMID: 26878232      PMCID: PMC4870050          DOI: 10.1038/nm.4047

Source DB:  PubMed          Journal:  Nat Med        ISSN: 1078-8956            Impact factor:   53.440


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Review 5.  S100 proteins in cancer.

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9.  KDM6B overexpression activates innate immune signaling and impairs hematopoiesis in mice.

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10.  MMP9 inhibition increases erythropoiesis in RPS14-deficient del(5q) MDS models through suppression of TGF-β pathways.

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