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587 result(s) for "Genetic Diseases, Inborn - etiology"
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Emerging Place of JAK Inhibitors in the Treatment of Inborn Errors of Immunity
Among inborn errors of immunity (IEIs), some conditions are characterized by inflammation and autoimmunity at the front line and are particularly challenging to treat. Monogenic diseases associated with gain-of-function mutations in genes critical for cytokine signaling through the JAK-STAT pathway belong to this group. These conditions represent good candidates for treatment with JAK inhibitors. Type I interferonopathies, a group of recently identified monogenic auto-inflammatory diseases characterized by excessive secretion of type I IFN, are also good candidates with growing experiences reported in the literature. However, many questions remain regarding the choice of the drug, the dose (in particular in children), the efficacy on the various manifestations, the monitoring of the treatment, and the management of potent side effects in particular in patients with infectious susceptibility. This review will summarize the current experiences reported and will highlight the unmet needs.
Hereditary Pulmonary Alveolar Proteinosis: Pathogenesis, Presentation, Diagnosis, and Therapy
Abstract Rationale We identified a 6-year-old girl with pulmonary alveolar proteinosis (PAP), impaired granulocyte-macrophage colony–stimulating factor (GM-CSF) receptor function, and increased GM-CSF. Objectives Increased serum GM-CSF may be useful to identify individuals with PAP caused by GM-CSF receptor dysfunction. Methods We screened 187 patients referred to us for measurement of GM-CSF autoantibodies to diagnose autoimmune PAP. Five were children with PAP and increased serum GM-CSF but without GM-CSF autoantibodies or any disease causing secondary PAP; all were studied with family members, subsequently identified patients, and controls. Measurement and Main Results Eight children (seven female, one male) were identified with PAP caused by recessive CSF2RA mutations. Six presented with progressive dyspnea of insidious onset at 4.8 ± 1.6 years and two were asymptomatic at ages 5 and 8 years. Radiologic and histopathologic manifestations were similar to those of autoimmune PAP. Molecular analysis demonstrated that GM-CSF signaling was absent in six and severely reduced in two patients. The GM-CSF receptor β chain was detected in all patients, whereas the α chain was absent in six and abnormal in two, paralleling the GM-CSF signaling defects. Genetic analysis revealed multiple distinct CSF2RA abnormalities, including missense, duplication, frameshift, and nonsense mutations; exon and gene deletion; and cryptic alternative splicing. All symptomatic patients responded well to whole-lung lavage therapy. Conclusions CSF2RA mutations cause a genetic form of PAP presenting as insidious, progressive dyspnea in children that can be diagnosed by a combination of characteristic radiologic findings and blood tests and treated successfully by whole-lung lavage.
Genetic disorders caused by consanguineous marriage in Radfan districts – Yemen
Background Consanguineous marriage (≥ second cousins) is prevalent in Yemen (40–50%) and linked to increased genetic disorders. This study assesses its prevalence and health impacts in Radfan districts. Methodology A 2024 cross-sectional study of 1065 randomly selected households. Data were collected via validated questionnaires supplemented by medical records where available. Analyses included consanguinity rates, inbreeding coefficients (F), sociocultural factors, and clinically validated genetic disorders. Statistical analysis employed χ² tests, multivariable logistic regression (adjusted ORs), and Cohen’s d for effect sizes. Results The consanguinity rate was 57.46%, significantly higher in rural (37.09%) than urban areas (20.38%). Wives with a university education had a 71.9% lower likelihood of consanguineous marriage (adjusted OR = 0.28; 95% CI: 0.18–0.44). Consanguineous couples had significantly higher odds of adverse outcomes compared to non-consanguineous couples, including abortion (adjusted OR = 1.8; 95% CI: 1.4–2.3), child mortality (adjusted OR = 2.1; 95% CI: 1.6–2.8), blood disorders (adjusted OR = 3.5; 95% CI: 1.7–7.4), and disabilities (adjusted OR = 2.6; 95% CI: 1.4–4.8). Blood disorders were predominantly hemoglobinopathies (87%). The mean inbreeding coefficient was F = 0.0625 (first-cousin equivalent). Conclusions The high prevalence of consanguineous marriages is a significant, modifiable risk factor for the increased burden of genetic disorders in the population. Addressing this urgent public health challenge requires a multi-faceted strategy: implementing mandatory premarital screening for hemoglobinopathies, launching community-based genetic literacy programs, and establishing economic incentives to encourage non-consanguineous unions.
Extended Phenotyping and Functional Validation Facilitate Diagnosis of a Complex Patient Harboring Genetic Variants in MCCC1 and GNB5 Causing Overlapping Phenotypes
Identifying multiple ultra-rare genetic syndromes with overlapping phenotypes is a diagnostic conundrum in clinical genetics. This study investigated the pathogenicity of a homozygous missense variant in GNB5 (GNB5L; NM_016194.4: c.920T > G (p. Leu307Arg); GNB5S; NM_006578.4: c.794T > G (p. Leu265Arg)) identified through exome sequencing in a female child who also had 3-methylcrotonyl-CoA carboxylase (3-MCC) deficiency (newborn screening positive) and hemoglobin E trait. The proband presented with early-onset intellectual disability, the severity of which was more in keeping with GNB5-related disorder than 3-MCC deficiency. She later developed bradycardia and cardiac arrest, and upon re-phenotyping showed cone photo-transduction recovery deficit, all known only to GNB5-related disorders. Patient-derived fibroblast assays showed preserved GNB5S expression, but bioluminescence resonance energy transfer assay showed abolished function of the variant reconstituted Gβ5S containing RGS complexes for deactivation of D2 dopamine receptor activity, confirming variant pathogenicity. This study highlights the need for precise phenotyping and functional assays to facilitate variant classification and clinical diagnosis in patients with complex medical conditions.
Is it acceptable to contact an anonymous egg donor to facilitate diagnostic genetic testing for the donor-conceived child?
We discuss a case where medically optimal investigations of health problems in a donor-conceived child would require their egg donor to participate in genetic testing. We argue that it would be justified to contact the egg donor to ask whether she would consider this, despite her indicating on a historical consent form that she did not wish to take part in future research and that she did not wish to be informed if she was found to be a carrier of a ‘harmful inherited condition’. We suggest that we cannot conjecture what her current answer might be if, by participating in clinical genetic testing, she might help reach a diagnosis for the donor-conceived child. At the point that she made choices regarding future contact, it was not yet evident that the interests of the donor-conceived child might be compromised by her answers, as it was not foreseen that the egg donor’s genome might one day have the potential to enable diagnosis for this child. Fertility consent forms tend to be conceptualised as representing incontrovertible historical boundaries, but we argue that rapid evolution in genomic practice means that consent in such cases is better seen as an ongoing and dynamic process. It cannot be possible to compel the donor to aid in the diagnosis of the donor-conceived child, but she should be given the opportunity to do so.
Epigenetic Mechanisms of ART-Related Imprinting Disorders: Lessons From iPSC and Mouse Models
The rising frequency of ART-conceived births is accompanied by the need for an improved understanding of the implications of ART on gametes and embryos. Increasing evidence from mouse models and human epidemiological data suggests that ART procedures may play a role in the pathophysiology of certain imprinting disorders (IDs), including Beckwith-Wiedemann syndrome, Silver-Russell syndrome, Prader-Willi syndrome, and Angelman syndrome. The underlying molecular basis of this association, however, requires further elucidation. In this review, we discuss the epigenetic and imprinting alterations of in vivo mouse models and human iPSC models of ART. Mouse models have demonstrated aberrant regulation of imprinted genes involved with ART-related IDs. In the past decade, iPSC technology has provided a platform for patient-specific cellular models of culture-associated perturbed imprinting. However, despite ongoing efforts, a deeper understanding of the susceptibility of iPSCs to epigenetic perturbation is required if they are to be reliably used for modelling ART-associated IDs. Comparing the patterns of susceptibility of imprinted genes in mouse models and IPSCs in culture improves the current understanding of the underlying mechanisms of ART-linked IDs with implications for our understanding of the influence of environmental factors such as culture and hormone treatments on epigenetically important regions of the genome such as imprints.
The Role of Mitochondrial DNA Mutations in Mammalian Aging
Mitochondrial DNA (mtDNA) accumulates both base-substitution mutations and deletions with aging in several tissues in mammals. Here, we examine the evidence supporting a causative role for mtDNA mutations in mammalian aging. We describe and compare human diseases and mouse models associated with mitochondrial genome instability. We also discuss potential mechanisms for the generation of these mutations and the means by which they may mediate their pathological consequences. Strategies for slowing the accumulation and attenuating the effects of mtDNA mutations are discussed.
Primary Generalized Glucocorticoid Resistance and Hypersensitivity
Context: The human glucocorticoid receptor (hGR) is a ubiquitously expressed intracellular, ligand-dependent transcription factor, which mediates the action of glucocorticoids and influences physiological functions essential for life. Alterations in the molecular mechanisms of hGR action impair glucocorticoid signal transduction and alter tissue sensitivity to glucocorticoids. This review summarizes the pathophysiology, molecular mechanisms and clinical aspects of primary generalized glucocorticoid resistance (PGGR) and hypersensitivity (PGGH). Evidence Acquisition: A systematic review of the published, peer-reviewed medical literature (PubMed: 1975 through May 2011) was conducted to identify original articles and reviews on this topic. Evidence Synthesis: Evidence synthesis was relied upon the experience of a number of experts in the field, including our extensive personal experience. Conclusions: The molecular basis of PGGR and PGGH has been ascribed to mutations in the hGR gene, which alter tissue sensitivity to glucocorticoids. The stochastic nature of glucocorticoid signaling pathways in association with the variable effect that hGR gene mutations/polymorphisms might have on glucocorticoid signal transduction indicates that alterations in hGR action may have important implications for many critical biological processes, such as the behavioral and physiological responses to stress, the immune and inflammatory reaction, as well as growth and reproduction.
TGF-β SIGNAL TRANSDUCTION
The transforming growth factor β (TGF-β) family of growth factors control the development and homeostasis of most tissues in metazoan organisms. Work over the past few years has led to the elucidation of a TGF-β signal transduction network. This network involves receptor serine/threonine kinases at the cell surface and their substrates, the SMAD proteins, which move into the nucleus, where they activate target gene transcription in association with DNA-binding partners. Distinct repertoires of receptors, SMAD proteins, and DNA-binding partners seemingly underlie, in a cell-specific manner, the multifunctional nature of TGF-β and related factors. Mutations in these pathways are the cause of various forms of human cancer and developmental disorders.
Nivolumab-induced hypothyroidism followed by isolated ACTH deficiency
Cancer immunotherapy has been used in several malignancies with clinical benefit. Despite the clinical success, immune-related adverse events are frequent and endocrinopathies can be particularly severe. We report a 55-year-old male patient with stage IV pulmonary carcinoma treated with nivolumab who presented with thyroid dysfunction after the sixth administration of the drug. One year after thyroid dysfunction, the patient complained of severe fatigue, asthenia and weight loss. Laboratory testing showed low morning cortisol with undetected adrenocorticotropic hormone; other pituitary hormones were normal and MRI showed homogeneous enhancement of the pituitary gland and no space-occupying lesions. The diagnosis of nivolumab-induced hypophysitis was made and replacement treatment with hydrocortisone was started with clinical improvement. This case demonstrates that patients under immunotherapy are at risk for a large spectrum of endocrine dysfunctions that may worsen their prognosis. Close monitoring of these patients is warranted.