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Unbalanced copper (Cu) homeostasis is associated with neurological development defects and diseases. However, the molecular mechanisms remain elusive. Here, central neural system (CNS) myelin defects and the down-regulated expression of WNT/NOTCH signaling and its down-stream mediator hoxb5b were observed in Cu stressed zebrafish larvae. The loss/knockdown-of-function of hoxb5b phenocopied the myelin and axon defects observed in Cu stressed embryos. Meanwhile, the activation of WNT/NOTCH signaling and ectopic expression of hoxb5b could rescue Cu induced myelin defects. Additionally, fam168b, similar to pou3f1/2, exhibited significant promoter hypermethylation and reduced expression in Cu stressed embryos. The hypermethylated locus in fam168b promoter acted pivotally in its transcription, and the loss/knockdown of fam168b/pou3f1 also induced myelin defects. This study also demonstrated that fam168b/pou3f1 and hoxb5b axis acted in a seesaw manner during fish embryogenesis: Cu induced the down-regulated expression of the WNT&NOTCH-hoxb5b axis through the function of copper transporter cox17, coupled with the promoter methylation of genes fam168b/pou3f1, and its subsequent down-regulated expression through the function of another transporter atp7b, making joint contributions to myelin defects in embryos.
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http://dx.doi.org/10.1016/j.bbagrm.2020.194612 | DOI Listing |
Gynecol Endocrinol
December 2025
National Clinical Research Center for Obstetric & Gynecologic Diseases, Department of Obstetrics and Gynecology, Peking Union Medical College Hospital, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing, People's Republic of China.
Objective: To expand the clinical phenotype associated with MYRF mutations in disorders of sex development (DSDs).
Methods: We present a case of a 17-year-old patient with a female phenotype who presented with primary amenorrhea.
Results: The patient's external genitalia was entirely female in appearance, though there was no opening of vagina below the orifice of urethra.
Stem Cell Reports
September 2025
Neural Stem Cells and Neuroimaging Group, Department of Neurobiology, Hellenic Pasteur Institute, 11521 Athens, Greece. Electronic address:
In the adult brain, neural stem cells (NSCs) constitutively generate new neurons in specific neurogenic domains. Recent research has unveiled reactive neurogenesis, whereby brain injury triggers NSC activation, enhancing their differentiation potential and guiding progeny to injured areas. Our study provides evidence of alternative migration pathways for newborn neurons in the mouse subcortical forebrain, revealed by administration of a chemotherapeutic agent.
View Article and Find Full Text PDFFront Hum Neurosci
August 2025
Signal Processing Laboratory (LTS5), École Polytechnique Féderale de Lausanne (EPFL), Lausanne, Switzerland.
Introduction: Absence of language development is a condition encountered across a large range of neurodevelopmental disorders, including a significant proportion of children with autism spectrum disorder. The neurobiological underpinnings of non-verbal ASD (nvASD) remain poorly understood.
Methods: This study employed multimodal MRI to investigate white matter (WM) microstructural abnormalities in nvASD, focusing on language-related pathways.
Brain Dev
September 2025
Department of Mental Retardation and Birth Defect Research, National Institute of Neuroscience, National Center of Neurology and Psychiatry (NCNP), Japan.
Hypomyelinating leukodystrophies (HLDs) are a group of inherited disorders characterized by impaired myelin formation in the central nervous system. Among them, Pelizaeus-Merzbacher disease (PMD) is a well-defined X-linked leukodystrophy caused by mutations in the PLP1 gene, including duplications, missense variants, and null mutations. Recent studies have revealed that different types of PLP1 mutations lead to distinct pathomechanisms: while missense mutations induce endoplasmic reticulum stress and activate the unfolded protein response (UPR), PLP1 duplications cause aberrant intracellular trafficking and cholesterol accumulation without UPR activation.
View Article and Find Full Text PDFbioRxiv
August 2025
Department of Biology, University of Iowa, Iowa City, IA 52242 USA.
Charcot-Marie-Tooth disease (CMT) is an inherited peripheral neuropathy characterized by sensory dysfunction and muscle weakness, manifesting in the most distal limbs first and progressing more proximal. Over a hundred genes are currently linked to CMT with enrichment for activities in myelination, axon transport, and protein synthesis. Mutations in tRNA synthetases cause dominantly inherited forms of CMT and animal models with CMT-linked mutations in these enzymes display defects in neuronal protein synthesis.
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