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Unveiling the Molecular Pathogenesis of MCPH: Insights From Drosophila Model System
1Department of Biology and Biotechnology "Charles Darwin", Sapienza University of Rome, Rome, Italy.
Abstract:
Primary microcephaly (MCPH) is a rare genetic neurodevelopmental disorder caused by homologous recessive mutations of the MCPH genes. It manifests as a significant reduction in brain volume and intellectual disability at birth. More than 28 genes with several pathogeneses have been identified so far. These genes have a strong effect on DNA damage repair and apoptosis, neuronal proliferation, neuronal differentiation, and neuronal migration. These pathogenesis pathways result in aberrant cell division and cell maturation, as well as an imbalance of the type of neural cells, and eventually a reduction of brain volume. Hence, researching in a multidisciplinary approach promotes research into the different etiologies of MCPH genes and offers a positive outcome for patients. However, investigating the etiology pathways has been given less focus, and limited studies and model systems have been carried out for this complex disease. Research using simple model organisms to study these pathogenic genes is beneficial. Recently, Drosophila melanogaster has been used as a powerful and promising model organism for efficient in vivo experiments and for deciphering complex multicellular activities to unravel the function of the MCPH genes. Interestingly, about 80% of the genes that cause genetic diseases in humans have functional counterparts in D. melanogaster . Additionally, genetic similarity, simple genetics, rapid reproduction, high-throughput screening, and ease of generating transgenics make it unique. These features have prompted researchers to widely use it in research, contributing significantly to our understanding of human diseases such as cancer, Alzheimer's disease, Parkinson's disease, MCPH, and muscular dystrophy. In this review, I focus on the various pathways of MCPH genes pathogenesis and the advantage of leveraging the D. melanogaster model to dissect the etiology of MCPH genes. [Correction added on 9 August 2025, after first online publication: In the Abstract section, last sentence, pronoun 'we' has been changed to 'I'.].
Insights
Primary microcephaly (MCPH) is a rare neurodevelopmental disorder. This review explores MCPH gene pathogenesis and highlights the utility of Drosophila melanogaster as a model organism for studying this complex genetic disease.
Area of Science:
- Neurogenetics
- Developmental Biology
- Model Organism Research
Background:
- Primary microcephaly (MCPH) is a rare genetic neurodevelopmental disorder characterized by reduced brain volume and intellectual disability at birth.
- Over 28 MCPH genes have been identified, impacting DNA repair, apoptosis, and neuronal development.
- Current research faces challenges due to limited focus on etiology pathways and model systems.
Purpose of the Study:
- To review the pathogenesis pathways of MCPH genes.
- To highlight the advantages of using Drosophila melanogaster as a model organism for MCPH research.
- To underscore the potential of D. melanogaster in dissecting the etiology of MCPH genes.
Main Methods:
- Literature review focusing on MCPH gene pathogenesis.
- Analysis of the utility of Drosophila melanogaster as a model for studying human genetic diseases.
- Examination of genetic and experimental advantages of D. melanogaster.
Main Results:
- MCPH pathogenesis involves aberrant cell division, maturation, and neural cell imbalance.
- Drosophila melanogaster possesses functional counterparts for approximately 80% of human disease genes.
- D. melanogaster offers genetic similarity, rapid reproduction, and ease of genetic manipulation.
Conclusions:
- Understanding MCPH pathogenesis requires multidisciplinary approaches.
- Drosophila melanogaster is a powerful model for in vivo investigation of MCPH genes.
- Leveraging D. melanogaster can significantly advance the study of MCPH etiology and potential treatments.
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