The results reveal a unique human mechanism of disease and offer therapeutic insight for this inflammasomopathy and CRISPR editing of human CD34+ hematopoietic stem and progenitor cells (HSPCs) led to very efficient and persistent gene deletion in vivo.
Abstract
Loss-of-function mutation in the human gene dipeptidyl peptidase 9 (DPP9) causes Hatipoglu syndrome leading to severe inflammasomopathy. A key feature of the disease is pancytopenia, and patients require bone marrow transplantation, but the mechanism of cell loss is unclear, since Dpp9-mutant mice have normal hematopoiesis, suggesting that a distinct mechanism of disease occurs in humans. Here, we present a model of human DPP9 deficiency leveraging reverse genetics in the MISTRG6 humanized mice. We found that CRISPR editing of human CD34+ hematopoietic stem and progenitor cells (HSPCs) led to very efficient and persistent gene deletion in vivo. Human DPP9 deletion recapitulated cytopenia in peripheral blood and in the bone marrow, and cell loss was cell intrinsic. However, DPP9 deletion led to few transcriptional changes suggesting posttranscriptional regulation in human HSPCs. Mechanistically, DPP9 deficiency led to activation of the CARD8 inflammasome, resulting in HSPC pyroptosis, whereas NLRP1 was dispensable for cell death. Thus, our results reveal a unique human mechanism of disease and offer therapeutic insight for this inflammasomopathy.
This work establishes the first germline-edited heterozygous DFNA5-mutant chicken model using primordial germ cell mediated genome editing and demonstrates that genetic disruption of DFNA5 markedly attenuates Raptinal-induced pyroptosis and reduces IL-1β and IL-18 secretion.
Jin-Gui Hao, Fei-Yi Wang, Man Xue et al.· Transgenic research· 0 citations
Background VEXAS syndrome is an adult-onset autoinflammatory disorder caused by somatic UBA1 mutations. UBA1-mutated myeloid cells have been reported to exhibit increased susceptibility to inflammatory cell death; however, the mechanisms underlying this phenotype and the extracellular consequences of enhanced cell deat...
Summary In humans, the loss of function in a single copy of the CTLA4 gene leads to an immune disorder characterized by a spectrum of immunodeficient and autoimmune manifestations. To investigate the pathogenicity of CTLA-4 haploinsufficiency, we utilized a heterozygous mouse model carrying a patient-derived Y139C muta...
Myelodysplastic syndrome (MDS) is a heterogeneous myeloid malignancy driven by hematopoietic stem cell dysfunction, leading to ineffective hematopoiesis and cytopenias. Familial GATA2 deficiency is the most common cause of Myelodysplastic syndrome in adolescents, with progression often accelerated by co-occurring mutat...
Grace S. Freed, Miguel Quijada-Álamo, Linda Lee et al.· Blood Advances· 0 citations
DNA ligase IV (LIG4) is essential for DNA double-strand break (DSB) repair. Hypomorphic LIG4 variants cause LIG4 syndrome, characterized by growth disturbance, increased radiosensitivity, predisposition to malignancies, adaptive immunodeficiency and inflammatory conditions. Most of these manifestations are recapitulate...
Inflammasomes play a pivotal role in inflammation and infection, but the clinical relevance of inflammasomes goes beyond infectious disease. Here, we report a novel variant in the NLRP1 gene (p.V939M) identified in a patient with congenital sideroblastic anemia due to a homozygous SLC25A38 mutation. This patient exhibi...
Maria Sanchez-Villalobos, Eulalia Campos Baños, E. Martínez-Balsalobre et al.· Journal of Personalized Medi...· 0 citations
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