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1.
JCI Insight ; 5(9)2020 05 07.
Article En | MEDLINE | ID: mdl-32376796

The TAFRO clinical subtype of idiopathic multicentric Castleman disease (iMCD-TAFRO) is a rare hematologic illness involving episodic disease flares of thrombocytopenia, anasarca, fever, reticulin myelofibrosis, renal dysfunction, and organomegaly (TAFRO) and progressive multiple organ dysfunction. We previously showed that the mTOR signaling pathway is elevated in lymph nodes of iMCD-TAFRO patients and that an mTOR inhibitor is effective in a small cohort of patients. However, the upstream mechanisms, cell types, and mediators involved in disease pathogenesis remain unknown. Here, we developed a targeted approach to identify candidate cellular drivers and mechanisms in iMCD-TAFRO through cellular and transcriptomic studies. Using paired iMCD-TAFRO PBMC samples collected during flare and remission, we identified T cell activation and alterations in NK cell and monocyte subset frequencies during iMCD-TAFRO flare. These changes were associated with increased Type I IFN (IFN-I) response gene signatures across CD8+ T cells, NK cells, and monocytes. Finally, we found that IFN-ß stimulation of monocytes and T cells from iMCD-TAFRO patient remission samples induced increased mTOR activation compared with healthy donors, and this was abrogated with either mTORC1 or JAK1/2 inhibition. The data presented here support a potentially novel role for IFN-I signaling as a driver of increased mTOR signaling in iMCD-TAFRO.


CD8-Positive T-Lymphocytes , Castleman Disease/immunology , Interferon Type I/immunology , Killer Cells, Natural , Monocytes , TOR Serine-Threonine Kinases/immunology , Adolescent , Adult , Aged , CD8-Positive T-Lymphocytes/cytology , CD8-Positive T-Lymphocytes/immunology , Female , Humans , Killer Cells, Natural/cytology , Killer Cells, Natural/immunology , Longitudinal Studies , Male , Middle Aged , Monocytes/cytology , Monocytes/immunology
2.
Cell Rep ; 26(12): 3298-3312.e4, 2019 03 19.
Article En | MEDLINE | ID: mdl-30893602

Commissural axons initially respond to attractive signals at the midline, but once they cross, they become sensitive to repulsive cues. This switch prevents axons from re-entering the midline. In insects and mammals, negative regulation of Roundabout (Robo) receptors prevents premature response to the midline repellant Slit. In Drosophila, the endosomal protein Commissureless (Comm) prevents Robo1 surface expression before midline crossing by diverting Robo1 into late endosomes. Notably, Comm is not conserved in vertebrates. We identified two Nedd-4-interacting proteins, Ndfip1 and Ndfip2, that act analogously to Comm to localize Robo1 to endosomes. Ndfip proteins recruit Nedd4 E3 ubiquitin ligases to promote Robo1 ubiquitylation and degradation. Ndfip proteins are expressed in commissural axons in the developing spinal cord and removal of Ndfip proteins results in increased Robo1 expression and reduced midline crossing. Our results define a conserved Robo1 intracellular sorting mechanism between flies and mammals to avoid premature responsiveness to Slit.


Axons/metabolism , Intercellular Signaling Peptides and Proteins/metabolism , Membrane Proteins/metabolism , Nedd4 Ubiquitin Protein Ligases/metabolism , Nerve Tissue Proteins/metabolism , Receptors, Immunologic/metabolism , Spinal Cord/metabolism , Animals , COS Cells , Chlorocebus aethiops , Drosophila , Drosophila Proteins/genetics , Drosophila Proteins/metabolism , HeLa Cells , Humans , Intercellular Signaling Peptides and Proteins/genetics , Membrane Proteins/genetics , Mice , Mice, Knockout , Nedd4 Ubiquitin Protein Ligases/genetics , Nerve Tissue Proteins/genetics , Proteolysis , Receptors, Immunologic/genetics , Roundabout Proteins
3.
Nat Commun ; 8: 15677, 2017 06 05.
Article En | MEDLINE | ID: mdl-28580955

Foxp3+ T regulatory (Treg) cells suppress immune cell activation and establish normal immune homeostasis. How Treg cells maintain their identity is not completely understood. Here we show that Ndfip1, a coactivator of Nedd4-family E3 ubiquitin ligases, is required for Treg cell stability and function. Ndfip1 deletion in Treg cells results in autoinflammatory disease. Ndfip1-deficient Treg cells are highly proliferative and are more likely to lose Foxp3 expression to become IL-4-producing TH2 effector cells. Proteomic analyses indicate altered metabolic signature of Ndfip1-deficient Treg cells and metabolic profiling reveals elevated glycolysis and increased mTORC1 signalling. Ndfip1 restricts Treg cell metabolism and IL-4 production via distinct mechanisms, as IL-4 deficiency does not prevent hyperproliferation or elevated mTORC1 signalling in Ndfip1-deficient Treg cells. Thus, Ndfip1 preserves Treg lineage stability and immune homeostasis by preventing the expansion of highly proliferative and metabolically active Treg cells and by preventing pathological secretion of IL-4 from Treg cells.


Carrier Proteins/metabolism , Inflammation/metabolism , Mechanistic Target of Rapamycin Complex 1/metabolism , Membrane Proteins/metabolism , Signal Transduction , T-Lymphocytes, Regulatory/immunology , Animals , Antigen Presentation , Cell Membrane/metabolism , Cell Proliferation , Female , Forkhead Transcription Factors/metabolism , Glycolysis , Hyaluronan Receptors/metabolism , Inflammation/immunology , Intercellular Signaling Peptides and Proteins , Interleukin-4/metabolism , Male , Mice , Mice, Knockout , Mice, Transgenic , Proteomics , Th2 Cells/immunology , Ubiquitination
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