Publications by authors named "Miski Mohamed"

Article Synopsis
  • Inherited cutis laxa is a genetic condition that causes sagging skin and involves premature aging of connective tissues, often leading to severe neurological issues in specific syndromes.
  • A patient exhibiting movement disorders, unusual physical features, and intellectual disability was studied, revealing a significant mutation in the PI4K2A gene that impacts the synthesis of phosphatidylinositol lipids.
  • The research highlights the crucial role of the PI4K2A enzyme in regulating intracellular signaling and potential connections between metabolic defects and neurological symptoms associated with cutis laxa.
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Biogenesis of the mitochondrial oxidative phosphorylation system, which produces the bulk of ATP for almost all eukaryotic cells, depends on the translation of 13 mtDNA-encoded polypeptides by mitochondria-specific ribosomes in the mitochondrial matrix. These mitoribosomes are dual-origin ribonucleoprotein complexes, which contain mtDNA-encoded rRNAs and tRNAs and ∼80 nucleus-encoded proteins. An increasing number of gene mutations that impair mitoribosomal function and result in multiple OXPHOS deficiencies are being linked to human mitochondrial diseases.

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Defects of the V-type proton (H) ATPase (V-ATPase) impair acidification and intracellular trafficking of membrane-enclosed compartments, including secretory granules, endosomes, and lysosomes. Whole-exome sequencing in five families affected by mild to severe cutis laxa, dysmorphic facial features, and cardiopulmonary involvement identified biallelic missense mutations in ATP6V1E1 and ATP6V1A, which encode the E1 and A subunits, respectively, of the V domain of the heteromultimeric V-ATPase complex. Structural modeling indicated that all substitutions affect critical residues and inter- or intrasubunit interactions.

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Article Synopsis
  • - The study aimed to categorize patients with phosphoglucomutase-1 deficiency (PGM1-CDG) into phenotypic groups and identify factors predicting disease severity using the Tulane PGM1-CDG Rating Scale (TPCRS).
  • - Researchers evaluated 27 patients, finding a significant difference in TPCRS scores across the phenotypic groups, but no correlation between genotype, enzyme activity, and the TPCRS score.
  • - They identified five key clinical features—congenital malformation, cardiac involvement, endocrine deficiency, myopathy, and growth—that can predict disease severity, with some assessable through physical examination for quicker diagnosis and treatment.
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Autosomal recessive cutis laxa (ARCL) is a connective tissue disorder characterized by wrinkled, inelastic skin, frequently associated with a neurologic involvement and multisystem disease. Next generation sequencing was performed in genetically unsolved patients with progeroid features, neurological and eye involvement to assess the underlying etiology. We describe an 6 month old child, diagnosed with a novel, homozygous nonsense mutation c.

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Glycosylation is the posttranslational coupling of sugar chains to proteins or lipids. Proper glycosylation is essential for normal protein structure, function, and trafficking. Mutations in the glycosylation pathway lead to a phenotypically heterogeneous group of metabolic disorders, the congenital disorders of glycosylation (CDG).

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Cutis laxa (CL) is a connective tissue disorder, characterized by loose, inelastic, sagging skin. Both acquired and inherited (dominant, recessive, and X-linked) forms exist. Here, we describe a new phenotype, which overlaps with other known CL syndromes.

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Cutis laxa is an inherited or acquired disease characterized by redundant, sagging and inelastic skin. In inherited cutis laxa an abnormal synthesis of extracellular matrix proteins occurs due to genetic defects coding for diverse extracellular matrix components. Recently, different inborn errors of metabolism have been found to be associated with cutis laxa as well.

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Patients with cutis laxa (CL) have wrinkled, sagging skin with decreased elasticity. Skin symptoms are associated with variable systemic involvement. The most common, genetically highly heterogeneous form of autosomal recessive CL, ARCL2, is frequently associated with variable metabolic and neurological symptoms.

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Objective: To identify the underlying genetic defect in a patient with intellectual disability, seizures, ataxia, macrothrombocytopenia, renal and cardiac involvement, and abnormal protein glycosylation.

Methods: Genetic studies involved homozygosity mapping by 250K single nucleotide polymorphism array and SLC35A1 sequencing. Functional studies included biochemical assays for N-glycosylation and mucin-type O-glycosylation and SLC35A1-encoded cytidine 5'-monophosphosialic acid (CMP-sialic acid) transport after heterologous expression in yeast.

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Congenital disorders of glycosylation (CDG) are a rapidly growing family of inborn errors. Screening for CDG in suspected cases is usually performed in the first year of life by serum transferrin isoelectric focusing or mass spectrometry. Based on the transferrin analysis patients can be biochemically diagnosed with a type 1 or type 2 transferrin pattern, and labeled as CDG-I, or CDG-II.

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Glycoproteins are essential in the production, transport, storage and regulation of thyroid hormones. Altered glycosylation has a potential impact on thyroid function. Abnormal thyroid function tests have been described in patients with congenital disorders of glycosylation.

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We found that the missense mutation p.Pro1205Leu in the PHKA2 gene is a common cause of hepatic phosphorylase-kinase deficiency in Dutch patients, suggesting a founder-effect. Most patients presented with isolated growth delay and diarrhea, prior to the occurrence of hepatomegaly, delaying diagnosis.

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Congenital disorders of glycosylation (CDG) are a group of clinically heterogeneous inborn errors of metabolism. At present, treatment is available for only one CDG, but potential treatments for the other CDG are on the horizon. It will be vitally important in clinical trials of such agents to have a clear understanding of both the natural history of CDG and the corresponding burden of disability suffered by patients.

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Cutis laxa is a rare skin disorder characterized by wrinkled, redundant, inelastic and sagging skin due to defective synthesis of elastic fibers and other proteins of the extracellular matrix. Wrinkled, inelastic skin occurs in many cases as an acquired condition. Syndromic forms of cutis laxa, however, are caused by diverse genetic defects, mostly coding for structural extracellular matrix proteins.

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