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Feingold syndrome type 1, caused by loss-of-function of MYCN, is characterized by varied phenotypes including esophageal and duodenal atresia. However, no adequate model exists for studying the syndrome's pathological or molecular mechanisms, nor is there a treatment strategy. Here, we developed a zebrafish Feingold syndrome type 1 model with nonfunctional mycn, which had severe intestinal atresia. Single-cell RNA-seq identified a subcluster of intestinal cells that were highly sensitive to Mycn, and impaired cell proliferation decreased the overall number of intestinal cells in the mycn mutant fish. Bulk RNA-seq and metabolomic analysis showed that expression of ribosomal genes was down-regulated and that amino acid metabolism was abnormal. Northern blot and ribosomal profiling analysis showed abnormal rRNA processing and decreases in free 40S, 60S, and 80S ribosome particles, which led to impaired translation in the mutant. Besides, both Ribo-seq and western blot analysis showed that mTOR pathway was impaired in mycn mutant, and blocking mTOR pathway by rapamycin treatment can mimic the intestinal defect, and both L-leucine and Rheb, which can elevate translation via activating TOR pathway, could rescue the intestinal phenotype of mycn mutant. In summary, by this zebrafish Feingold syndrome type 1 model, we found that disturbance of ribosomal biogenesis and blockage of protein synthesis during development are primary causes of the intestinal defect in Feingold syndrome type 1. Importantly, our work suggests that leucine supplementation may be a feasible and easy treatment option for this disease.
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http://dx.doi.org/10.1371/journal.pbio.3001856 | DOI Listing |
Twin Res Hum Genet
September 2025
Department of Psychology, California State University, Fullerton, CA, USA.
Twin highlights from the 2025 summer meeting of the International Society for Human Ethology are reviewed. The value of observing twins in naturalistic and semi-naturalistic settings is revealed. Research reports involving twins with Feingold syndrome, twins with language delays, breastfeeding of twins, and twins with Olmsted syndrome are reviewed.
View Article and Find Full Text PDFAuris Nasus Larynx
August 2025
Department of Otorhinolaryngology and Head and Neck Surgery, Kitasato University School of Medicine, Kanagawa, Japan.
Congenital hearing loss is the most common birth defect, with genetic factors implicated in 50 % of prelingual cases. GJB2 variant, causing up to 50 % of autosomal recessive non-syndromic hearing loss, typically show stable hearing profiles and favorable cochlear implant (CI) outcomes. In this case, however, the atypical clinical course prompted further evaluation.
View Article and Find Full Text PDFFront Oncol
May 2024
Department of Pediatrics and Neonatology, Nagoya City University Graduate School of Medical Sciences, Nagoya, Japan.
HGG Adv
October 2023
Department of Pediatrics and Neonatology, Nagoya City University Graduate School of Medical Sciences, Nagoya 467-8601, Japan. Electronic address:
MYCN, a member of the MYC proto-oncogene family, regulates cell growth and proliferation. Somatic mutations of MYCN are identified in various tumors, and germline loss-of-function variants are responsible for Feingold syndrome, characterized by microcephaly. In contrast, one megalencephalic patient with a gain-of-function variant in MYCN, p.
View Article and Find Full Text PDFBMJ Case Rep
March 2023
Genetics Department of Faculty of Medicine, Universidade do Porto, Porto, Portugal.
We report a case of fetal microcephaly found during the second trimester ultrasound and confirmed by further ultrasound scans and fetal MRI. The array comparative genomic hybridisation analysis of the fetus and the male parent showed a 1.5 Mb deletion overlapping the Feingold syndrome region, an autosomal dominant syndrome that can cause microcephaly, facial/hand abnormalities, mild neurodevelopmental delay and others.
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