82 results match your criteria: "Inserm-Universite de Bourgogne[Affiliation]"

EGLN1 mutations in Cis can induce congenital erythrocytosis with thromboses by increasing protein instability.

Br J Haematol

January 2025

Laboratoire de Cytologie Clinique et Cytogénétique, LBMR néoplasies myéloprolifératives, CHU CAREMEAU, Nîmes, France.

Hereditary congenital erythrocytosis results from constitutive activation of the hypoxia pathway. This pathway is controlled by regulation of the α isoforms of the hypoxia-inducible factor α/β heterodimer, notably via hydroxylation by prolyl hydroxylase domain 2 (PHD2). Mutations affecting PHD2 are involved in Type 3 erythrocytosis.

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Neuropsychological profile of French adults with early-treated phenylketonuria: a multicenter study.

J Neurol

December 2024

Service de Médecine Interne, Centre de Référence Des Maladies Héréditaires du Métabolisme, UMR INSERM 1253 « iBraiN », Université de Tours, CHU de Tours, Tours, France.

Background And Objective: Adult patients with early-treated phenylketonuria (AwET-PKU) may present some subtle neurocognitive deficits. The aim of the study was to investigate 1) neurocognitive functions in a large group of AwET-PKU 2) the influence of plasma phenylalanine (Phe).

Methods: Participants: 187 AwET-PKU (classic PKU [cPKU] 81%, mild PKU [mPKU] 14%, and mild persistent hyperphenylalaninemia [MPH] 5%).

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Purpose: Cluster of differentiation 40 (CD40) is expressed on B-cell acute lymphoblastic leukemia (B-ALL) cases. However, the effect of CD40 activation on B-ALL cells has never been tested in vivo.

Experimental Design: The aim of our preclinical study was to investigate the therapeutic potential of a CD40 agonist in the treatment of B-ALL using patient-derived xenograft mouse models.

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Clinical and genetic delineation of autosomal recessive and dominant ACTL6B-related developmental brain disorders.

Genet Med

September 2024

Department of Neuromuscular Diseases, University College London, Queen Square, Institute of Neurology, WC1N 3BG London, UK. Electronic address:

Purpose: This study aims to comprehensively delineate the phenotypic spectrum of ACTL6B-related disorders, previously associated with both autosomal recessive and autosomal dominant neurodevelopmental disorders. Molecularly, the role of the nucleolar protein ACTL6B in contributing to the disease has remained unclear.

Methods: We identified 105 affected individuals, including 39 previously reported cases, and systematically analysed detailed clinical and genetic data for all individuals.

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Members of the leucine rich repeat (LRR) and PDZ domain (LAP) protein family are essential for animal development and histogenesis. Densin-180, encoded by LRRC7, is the only LAP protein selectively expressed in neurons. Densin-180 is a postsynaptic scaffold at glutamatergic synapses, linking cytoskeletal elements with signalling proteins such as the α-subunit of Ca/calmodulin-dependent protein kinase II.

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Article Synopsis
  • In biomedical research for rare diseases, model organisms are essential for understanding disease mechanisms, identifying biomarkers, and developing therapies.
  • Solve-RD is an EU-funded project focused on addressing numerous previously unresolved rare diseases.
  • The project has led to the creation of the European Rare Disease Models & Mechanisms Network (RDMM-Europe) to enhance research efforts in this area.
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We created valrubicin-loaded immunoliposomes (Val-ILs) using the antitumor prodrug valrubicin, a hydrophobic analog of daunorubicin. Being lipophilic, valrubicin readily incorporated Val-lLs that were loaded with specific antibodies. Val-ILs injected intravenously rapidly reached the bone marrow and spleen, indicating their potential to effectively target cancer cells in these areas.

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A novel fatty acid analogue triggers CD36-GPR120 interaction and exerts anti-inflammatory action in endotoxemia.

Cell Mol Life Sci

April 2024

Physiologie de la Nutrition & Toxicologie, UMR U1231 INSERM/Université de Bourgogne/Agro-Sup, Université Bourgogne Franche-Comté, 6 Boulevard Gabriel, 21000, Dijon, France.

Inflammation is a mediator of a number of chronic pathologies. We synthesized the diethyl (9Z,12Z)-octadeca-9,12-dien-1-ylphosphonate, called NKS3, which decreased lipopolysaccharide (LPS)-induced mRNA upregulation of proinflammatory cytokines (IL-1β, IL-6 and TNF-α) not only in primary intraperitoneal and lung alveolar macrophages, but also in freshly isolated mice lung slices. The in-silico studies suggested that NKS3, being CD36 agonist, will bind to GPR120.

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DNA methylation episignature and comparative epigenomic profiling for Pitt-Hopkins syndrome caused by TCF4 variants.

HGG Adv

July 2024

Amsterdam Reproduction & Development, Amsterdam, the Netherlands; Amsterdam UMC location University of Amsterdam, Emma Children's Hospital, Department of Pediatrics, Amsterdam, the Netherlands; Amsterdam Neuroscience - Cellular & Molecular Mechanisms, Amsterdam, the Netherlands. Electronic address:

Pitt-Hopkins syndrome (PTHS) is a neurodevelopmental disorder caused by pathogenic variants in TCF4, leading to intellectual disability, specific morphological features, and autonomic nervous system dysfunction. Epigenetic dysregulation has been implicated in PTHS, prompting the investigation of a DNA methylation (DNAm) "episignature" specific to PTHS for diagnostic purposes and variant reclassification and functional insights into the molecular pathophysiology of this disorder. A cohort of 67 individuals with genetically confirmed PTHS and three individuals with intellectual disability and a variant of uncertain significance (VUS) in TCF4 were studied.

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Article Synopsis
  • Xq28 int22h-1/int22h-2 duplication results from recombination between specific genetic repeats and is linked to a form of intellectual disability along with recurrent infections and atopic diseases.
  • In a study involving 15 families, many carriers exhibited mild or no symptoms, suggesting that the condition can manifest variably.
  • The findings point towards potential incomplete penetrance, meaning not all carriers show obvious signs of the condition, indicating a need for further research to understand the genetic implications better.
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Purpose: Interneuronopathies are a group of neurodevelopmental disorders characterized by deficient migration and differentiation of gamma-aminobutyric acidergic interneurons resulting in a broad clinical spectrum, including autism spectrum disorders, early-onset epileptic encephalopathy, intellectual disability, and schizophrenic disorders. SP9 is a transcription factor belonging to the Krüppel-like factor and specificity protein family, the members of which harbor highly conserved DNA-binding domains. SP9 plays a central role in interneuron development and tangential migration, but it has not yet been implicated in a human neurodevelopmental disorder.

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Article Synopsis
  • The study analyzes data from two groups of individuals with DDX3X variations, one from physicians (48 individuals) and the other from caregivers (44 individuals).
  • The results reveal shared symptoms between the two groups, including previously unreported early childhood issues like feeding difficulties and delayed developmental milestones.
  • The discussion emphasizes that both datasets complement each other, highlighting the importance of addressing symptoms such as ADHD, anxiety, and sleep disturbances in affected individuals.
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Highly conserved transport protein particle (TRAPP) complexes regulate subcellular trafficking pathways. Accurate protein trafficking has been increasingly recognized to be critically important for normal development, particularly in the nervous system. Variants in most TRAPP complex subunits have been found to lead to neurodevelopmental disorders with diverse but overlapping phenotypes.

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SRSF1 haploinsufficiency is responsible for a syndromic developmental disorder associated with intellectual disability.

Am J Hum Genet

May 2023

UMR1231 GAD, Inserm - Université de Bourgogne, Dijon, France; Unité Fonctionnelle Innovation en Diagnostic génomique des maladies rares, FHU-TRANSLAD, CHU Dijon Bourgogne, 21000 Dijon, France. Electronic address:

Article Synopsis
  • SRSF1 is a protein that plays a crucial role in mRNA processing and is essential for proper brain development; its complete loss is fatal during embryonic stages in mice.
  • Researchers identified 17 individuals with neurodevelopmental disorders (NDD) who have specific genetic changes in the SRSF1 gene, which lead to developmental delays, intellectual disability, and other health issues.
  • Advanced analysis techniques demonstrated that most genetic variants linked to SRSF1 result in a loss of its function, causing syndromic NDD due to impaired splicing activity.
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Multi-omics offer worthwhile and increasingly accessible technologies to diagnostic laboratories seeking potential second-tier strategies to help patients with unresolved rare diseases, especially patients clinically diagnosed with a rare OMIM (Online Mendelian Inheritance in Man) disease. However, no consensus exists regarding the optimal diagnostic care pathway to adopt after negative results with standard approaches. In 15 unsolved individuals clinically diagnosed with recognizable OMIM diseases but with negative or inconclusive first-line genetic results, we explored the utility of a multi-step approach using several novel omics technologies to establish a molecular diagnosis.

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Article Synopsis
  • Pathogenic variants in KMT5B, a lysine methyltransferase, are linked to global developmental issues, macrocephaly, autism, and other congenital anomalies, but the disorder is still not fully understood.
  • A study examining 43 patients revealed new significant features like hypotonia and congenital heart defects not previously associated with this condition.
  • Research using patient cell lines and KMT5B knockout mice showed that these variants lead to slow growth and highlighted alterations in pathways related to nervous system development, enhancing our understanding of the disorder's molecular mechanisms.
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You-Hoover-Fong syndrome (YHFS) is an autosomal recessive condition caused by pathogenic variants in the TELO2 gene. Affected individuals were reported to have global developmental delay, intellectual disability, microcephaly, dysmorphic facial features, ocular involvement including cortical visual impairment, strabismus, cataract and rotatory nystagmus, movement disorder, hypertonia and spasticity, balance disturbance and ataxia, and abnormal sleep pattern. Other features reported include poor growth, cleft palate, cardiac malformations, epilepsy, scoliosis, and hearing loss.

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Colorectal cancer is considered the second most deadly cancer in the world. Studies have indicated that diet can prevent the risk of developing colorectal cancer. Recently, there has been an increasing interest in polyphenols due to their plausible effect on cancer prevention and treatment.

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Patients with rare or ultra-rare genetic diseases, which affect 350 million people worldwide, may experience a diagnostic odyssey. High-throughput sequencing leads to an etiological diagnosis in up to 50% of individuals with heterogeneous neurodevelopmental or malformation disorders. There is a growing interest in additional omics technologies in translational research settings to examine the remaining unsolved cases.

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Structural variants are a common cause of disease and contribute to a large extent to inter-individual variability, but their detection and interpretation remain a challenge. Here, we investigate 11 individuals with complex genomic rearrangements including germline chromothripsis by combining short- and long-read genome sequencing (GS) with Hi-C. Large-scale genomic rearrangements are identified in Hi-C interaction maps, allowing for an independent assessment of breakpoint calls derived from the GS methods, resulting in >300 genomic junctions.

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Article Synopsis
  • The study focuses on "episignatures," which are unique DNA methylation patterns used as biomarkers for diagnosing various genetic syndromes, particularly neurodevelopmental disorders.
  • Researchers analyzed DNA methylation changes in 65 genetic syndromes, identifying specific differentially methylated probes (DMPs) and regions (DMRs) associated with these conditions.
  • Findings indicated that DMPs and DMRs were mostly located in gene promoters and pathways related to neurodevelopment, highlighting a connection between gene mutations and altered DNA methylation profiles in these disorders.
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Deoxyhypusine hydroxylase (DOHH) is the enzyme catalyzing the second step in the post-translational synthesis of hypusine [N-(4-amino-2-hydroxybutyl)lysine] in the eukaryotic initiation factor 5A (eIF5A). Hypusine is formed exclusively in eIF5A by two sequential enzymatic steps catalyzed by deoxyhypusine synthase (DHPS) and deoxyhypusine hydroxylase (DOHH). Hypusinated eIF5A is essential for translation and cell proliferation in eukaryotes, and all three genes encoding eIF5A, DHPS, and DOHH are highly conserved throughout eukaryotes.

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Quality of life and mental health of adolescents and adults with Silver-Russell syndrome.

Eur J Med Genet

May 2022

Service de Génétique Clinique, Centre Référence Anomalies du Développement CLAD Ouest, Univ Rennes, UMR 6290 IGDR (Institut de génétique et développement de Rennes), FHU GENOMEDS, CHU Rennes, F-35203 Rennes, France.

Silver-Russell syndrome (SRS) is a rare imprinting disorder characterized by prenatal and postnatal growth retardation. Despite normal intellectual functioning, psychosocial and behavioral difficulties have been observed in this syndrome. However, few studies have dealt with these aspects, even though this could enhance the current understanding of the SRS and, more importantly, improve the management of potential psychosocial problems.

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Overlapping clinical phenotypes and an expanding breadth and complexity of genomic associations are a growing challenge in the diagnosis and clinical management of Mendelian disorders. The functional consequences and clinical impacts of genomic variation may involve unique, disorder-specific, genomic DNA methylation episignatures. In this study, we describe 19 novel episignature disorders and compare the findings alongside 38 previously established episignatures for a total of 57 episignatures associated with 65 genetic syndromes.

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The ARID1A gene is an infrequent cause of Coffin-Siris syndrome (CSS) and has been associated with severe to profound developmental delays and hypotonia in addition to characteristic craniofacial and digital findings. We present three fetuses and a male neonate with ventriculomegaly/hydrocephalus, absence of the corpus callosum (ACC), cerebellar hypoplasia, retinal dysplasia, lung lobulation defects, renal dysplasia, imperforate or anteriorly placed anus, thymus hypoplasia and a single umbilical artery. Facial anomalies included downslanting palpebral fissures, wide-spaced eyes, low-set and posteriorly rotated ears, a small jaw, widely spaced nipples and hypoplastic nails.

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