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Meckel-Gruber Syndrome: An Update on Diagnosis, Clinical Management, and Research Advances
Verity Hartill1,2, Katarzyna Szymanska2, Saghira Malik Sharif1
1Department of Clinical Genetics, Yorkshire Regional Genetics Service, Leeds Teaching Hospitals NHS Trust, Leeds, United Kingdom.
Abstract:
Meckel-Gruber syndrome (MKS) is a lethal autosomal recessive congenital anomaly syndrome caused by mutations in genes encoding proteins that are structural or functional components of the primary cilium. Conditions that are caused by mutations in ciliary genes are collectively termed the ciliopathies, and MKS represents the most severe condition in this group of disorders. The primary cilium is a microtubule-based organelle, projecting from the apical surface of vertebrate cells. It acts as an "antenna" that receives and transduces chemosensory and mechanosensory signals, but also regulates diverse signaling pathways, such as Wnt and Shh, that have important roles during embryonic development. Most MKS proteins localize to a distinct ciliary compartment called the transition zone (TZ) that regulates the trafficking of cargo proteins or lipids. In this review, we provide an up-to-date summary of MKS clinical features, molecular genetics, and clinical diagnosis. MKS has a highly variable phenotype, extreme genetic heterogeneity, and displays allelism with other related ciliopathies such as Joubert syndrome, presenting significant challenges to diagnosis. Recent advances in genetic technology, with the widespread use of multi-gene panels for molecular testing, have significantly improved diagnosis, genetic counseling, and the clinical management of MKS families. These include the description of some limited genotype-phenotype correlations. We discuss recent insights into the molecular basis of disease in MKS, since the functions of some of the relevant ciliary proteins have now been determined. A common molecular etiology appears to be disruption of ciliary TZ structure and function, affecting essential developmental signaling and the regulation of secondary messengers.
Insights
Meckel-Gruber syndrome (MKS), a severe ciliopathy, arises from primary cilium gene mutations affecting embryonic development. Advances in genetic testing improve diagnosis and management of this complex congenital anomaly.
Area of Science:
- Genetics
- Developmental Biology
- Cell Biology
Background:
- Meckel-Gruber syndrome (MKS) is a lethal, autosomal recessive congenital anomaly.
- It is caused by mutations in genes critical for primary cilium structure and function.
- MKS is the most severe disorder within the ciliopathies, a group of diseases linked to ciliary gene defects.
Purpose of the Study:
- To provide an updated summary of Meckel-Gruber syndrome.
- To cover clinical features, molecular genetics, and diagnostic challenges.
- To discuss recent insights into the molecular basis and management of MKS.
Main Methods:
- Review of current literature on Meckel-Gruber syndrome.
- Analysis of clinical features, genetic heterogeneity, and diagnostic approaches.
- Discussion of advances in genetic technologies and genotype-phenotype correlations.
Main Results:
- Meckel-Gruber syndrome exhibits extreme genetic heterogeneity and variable phenotypes.
- Diagnosis is challenging due to allelism with related ciliopathies like Joubert syndrome.
- Recent genetic technologies, including multi-gene panels, have enhanced diagnostic accuracy and clinical management.
Conclusions:
- Disruption of the transition zone (TZ) in primary cilia is a common molecular etiology in MKS.
- This disruption impacts crucial embryonic signaling pathways and secondary messenger regulation.
- Improved genetic understanding facilitates better diagnosis, counseling, and management for families affected by MKS.
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