[HTML][HTML] Deficiency of the ribosome biogenesis gene Sbds in hematopoietic stem and progenitor cells causes neutropenia in mice by attenuating lineage progression …

NA Zambetti, EMJ Bindels, PMH Van Strien… - …, 2015 - ncbi.nlm.nih.gov
NA Zambetti, EMJ Bindels, PMH Van Strien, MG Valkhof, MN Adisty, RM Hoogenboezem…
Haematologica, 2015ncbi.nlm.nih.gov
Shwachman-Diamond syndrome is a congenital bone marrow failure disorder characterized
by debilitating neutropenia. The disease is associated with loss-of-function mutations in the
SBDS gene, implicated in ribosome biogenesis, but the cellular and molecular events
driving cell specific phenotypes in ribosomopathies remain poorly defined. Here, we
established what is to our knowledge the first mammalian model of neutropenia in
Shwachman-Diamond syndrome through targeted downregulation of Sbds in hematopoietic …
Abstract
Shwachman-Diamond syndrome is a congenital bone marrow failure disorder characterized by debilitating neutropenia. The disease is associated with loss-of-function mutations in the SBDS gene, implicated in ribosome biogenesis, but the cellular and molecular events driving cell specific phenotypes in ribosomopathies remain poorly defined. Here, we established what is to our knowledge the first mammalian model of neutropenia in Shwachman-Diamond syndrome through targeted downregulation of Sbds in hematopoietic stem and progenitor cells expressing the myeloid transcription factor CCAAT/enhancer binding protein α (Cebpa). Sbds deficiency in the myeloid lineage specifically affected myelocytes and their downstream progeny while, unexpectedly, it was well tolerated by rapidly cycling hematopoietic progenitor cells. Molecular insights provided by massive parallel sequencing supported cellular observations of impaired cell cycle exit and formation of secondary granules associated with the defect of myeloid lineage progression in myelocytes. Mechanistically, Sbds deficiency activated the p53 tumor suppressor pathway and induced apoptosis in these cells. Collectively, the data reveal a previously unanticipated, selective dependency of myelocytes and downstream progeny, but not rapidly cycling progenitors, on this ubiquitous ribosome biogenesis protein, thus providing a cellular basis for the understanding of myeloid lineage biased defects in Shwachman-Diamond syndrome.
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