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Assaf, N.

Publications and source records attributed to Assaf, N..

2 recordsLinked to original sources

INTS6 loss of function disrupts transcriptional regulation in mild intellectual disability

Pathogenic variants in genes involved in transcriptional regulation and RNA processing have emerged as points of functional convergence in neurodevelopmental disorders (NDDs), but their specific disease mechanisms remain unknown. By screening 1,562 Finnish extended families from the Northern Finland Intellectual Disability cohort affected by cognitive impairment, we discovered a family with six affected members carrying a heterozygous loss- of-function variant in INTS6. INTS6 is a conserved member of the phosphatase module of the Integrator complex, which regulates RNA polymerase II activity, with a reported role in the pathogenesis of NDDs. To determine the variants transcriptomic effects, we performed RNA-sequencing of induced pluripotent stem cells (iPSCs) and iPSC-derived neuronal cells from cases and controls, revealing transcriptome-wide splicing defects, with increased intron retention observed in genes involved in translation, cell cycle and RNA processing in variant carriers. CRISPR-Cas9 knock-in iPSCs confirmed that the variant was associated with downregulation of transcription factors and developmental processes in early neuron differentiation. In addition, downregulated genes in variant carrier neurons were enriched for synaptic genes, suggesting effects on neuronal development. These findings highlight the critical role of INTS6 in transcriptional regulation of human neurodevelopment and reinforce its association with NDDs.

genetics↗

VSIG4-Expressing Macrophages Contribute To Anti-Parasitic And Anti-Metastatic Responses In The Peritoneal Cavity

Peritoneal tissue-resident macrophages, also referred to as large peritoneal macrophages (LPMs), play an important role as gatekeepers of peritoneal homeostasis by providing a first line of defense against pathogenic threats. About a third of the LPMs express the surface receptor V-set and Immunoglobulin domain containing 4 (VSIG4), but it is unclear to what extent these cells differ from their VSIG4-negative counterparts and perform dedicated functions. Here, we demonstrate that VSIG4+ LPMs, in contrast to VSIG4- LPMs, are in majority derived from embryonal precursors and their occurrence is to a large extent independent from sex and microbiota. Although their transcriptome and surface proteome are indistinguishable from VSIG4- LPMs at steady-state, VSIG4+ LPMs are superior in phagocytosing Gram-positive bacteria and colorectal carcinoma (CRC) cells. In-house generated anti-VSIG4 nanobody constructs that are antibody-dependent cell-mediated cytotoxicity (ADCC)-enabled allowed a selective elimination of the VSIG4+ LPM subset without affecting the overall LPM content of the peritoneal cavity. This strategy uncovered a role for VSIG4+ LPMs in lowering the first peak of parasitemia in a Trypanosoma brucei brucei infection model and in reducing the outgrowth of CRC cells in the peritoneal cavity, a prime metastatic site in CRC patients. Altogether, our data uncover a protective role for VSIG4+ LPMs in infectious and oncological diseases in the peritoneal cavity.

immunology↗