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Published on: April 3, 2017
PPa1 insufficiency drives lysosomal storage disease and inflammatory macrophage expansion in the bone marrow
Magdalena Grzemska1, Luming Chen2, Jamie Russell3
1Division of Rheumatology, Department of Internal Medicine, UT Southwestern Medical Center, Dallas, TX 75390.
Abstract:
Inorganic pyrophosphatase-1 (PPa1) is an essential enzyme proposed to limit accumulation of the ubiquitous metabolic byproduct inorganic pyrophosphate, yet its role beyond a general housekeeping function remains poorly understood. We generated viable hypomorphic alleles of PPa1 through random mutagenesis in mice and unexpectedly found that PPa1 insufficiency causes a lysosomal storage disease of the bone marrow. Mutant mice developed impaired hematopoiesis and defective skeletal mineralization in a hematopoietic-intrinsic manner. The bone marrow was infiltrated by glycolipid-laden macrophages that were marked by high Spp1 and CD14 expression, blunted lysosomal acidification, metabolic stress, and a distinct inflammatory transcriptional program. Consistent with a lysosomal storage defect, PPa1-deficient bone marrow accumulated elevated levels of long-chain glucosyl-sphingolipids and sphingosine. These findings identify PPa1 as a previously unrecognized regulator of lysosomal function in myeloid cells that restrains inflammatory macrophage expansion and prevents bone marrow lysosomal storage pathology.
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