Background: Myogenic Arthrogryposis Multiplex Congenita type 3 (AMC-3), is a rare congenital condition characterized by severe hypotonia, club feet, and multiple joint contractures often affecting both arms and legs which start prior to birth.
Case Presentation: We report a full-term neonate born to first-degree cousins from fourth-generation consanguineous families, who had with antenatal history of reduced fetal movements. At birth, he was noticed to have bilateral club feet, arthrogryposis, severe hypotonia, and absent deep tendon reflexes. The patient developed difficulty in breathing probably attributed to his generalized severe hypotonia, necessitating mechanical ventilation. His creatinine-phospho-kinase, electromyogram, and brain magnetic resonance imaging were normal. Whole-exome sequencing (WES) was requested for the genetic diagnosis of the case. WES identified a novel homozygous variant c.23415-3799C > G p. in the synaptic nuclear envelope protein1 [SYNE1] gene. Seven out of 20 bioinformatic in silico programs predicted a pathogenic effect for this variant. Segregation analysis of the variant in the parents and siblings revealed that both parents and one sibling were heterozygous for the same mutation which proved the variant significance and its autosomal recessive pattern of inheritance.
Conclusions: AMC3 should be suspected in patients with decreased fetal movements, severe hypotonia, absent deep tendon reflexes, and arthrogryposis. SYNE1 gene mutations can be the underlying genetic defect and molecular genetic testing can prove the diagnosis.
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http://dx.doi.org/10.1186/s13052-022-01301-x | DOI Listing |
J Pediatr Endocrinol Metab
January 2025
Department of Pediatric Endocrinology, Antalya Training and Research Hospital, University of Health Sciences, Antalya, Türkiye.
Objectives: Neonatal severe hyperparathyroidism (NSHPT) is a rare condition characterized by inactivating mutations in the calcium-sensing receptor () gene, leading to significant hypercalcemia and related complications.
Case Presentation: We present a case of a six-day-old male infant with weakness, jaundice, and hypotonia, later diagnosed with NSHPT due to a known homozygous mutation (c.242T>A; p.
Int Urogynecol J
January 2025
Department of Medical Genetics, Warsaw Medical University, Pawinskiego 3C, 02-106, Warsaw, Poland.
Introduction And Hypothesis: Pelvic floor dysfunction usually results in pelvic organ prolapse (POP) and/or urinary incontinence. In women, several factors, including pregnancy and vaginal delivery, can affect pelvic muscle conditions. The aim of the study was to perform a genetic analysis in young women with a family history of pelvic floor dysfunction to find potentially harmful variants or variants that increase the risk of developing pelvic floor disorders.
View Article and Find Full Text PDFMol Genet Genomic Med
January 2025
Department of Pediatrics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Background: Cornelia de Lange syndrome (CdLS) is a multisystem genetic disorder. Although individuals with variants in the SMC1A gene are less commonly seen in CdLS, they exhibit a high incidence of epilepsy and atypical phenotypic variability.
Methods: The clinical data of a patient with non-classic CdLS and epilepsy caused by an SMC1A variant were summarized.
Tunis Med
January 2025
University of Sfax, Military University Hospital of Sfax, Cardiology Department, Sfax, Tunisia.
Introduction: Nemaline myopathy (NM), also known as Nemalinosis, is a rare congenital muscle disease with an incidence of 1 in 50000. It is characterized by nemaline rods in muscle fibers, leading to muscle weakness. We reported a case of NM revealed by cardiac involvement, and we highlighted the challenges in diagnosing this condition as well as its poor prognosis.
View Article and Find Full Text PDFCurr Opin Psychiatry
December 2024
Departments of Psychiatry &, Behavioral Sciences and Pediatrics, University of Kansas Medical Centre, Kansas City, Kansas, United States.
Purpose Of Review: Prader-Willi (PWS) and Angelman (AS) syndromes arise from errors in 15q11-q13 imprinting. This review describes recent advances in genomics and how these expand our understanding of these rare disorders, guiding treatment strategies to improve patient outcomes.
Recent Findings: PWS features include severe infantile hypotonia, failure to thrive, hypogonadism, developmental delay, behavioral and psychiatric features, hyperphagia, and morbid obesity, if unmanaged.
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