Francesca Alberti’s research while affiliated with Foundation Santa Lucia and other places

What is this page?


This page lists works of an author who doesn't have a ResearchGate profile or hasn't added the works to their profile yet. It is automatically generated from public (personal) data to further our legitimate goal of comprehensive and accurate scientific recordkeeping. If you are this author and want this page removed, please let us know.

Publications (3)


Figure 1
Figure 2
Figure 3
Figure 4
Graphical Abstract
Pan-neuronal expression of human mutant SOD1 in Drosophila impairs survival and motor performance, induces early neuroinflammation and chromosome aberrations
  • Article
  • Full-text available

April 2024

·

105 Reads

·

5 Citations

Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease

·

Francesca Alberti

·

·

[...]

·

Several mutations in the SOD1 gene encoding for the antioxidant enzyme Superoxide Dismutase 1, are associated with amyotrophic lateral sclerosis, a rare and devastating disease characterized by motor neuron degeneration and patients’ death within 2-5 years from diagnosis. Motor neuron loss and related symptomatology manifest mostly in adult life and, to date, there is still a gap of knowledge on the precise cellular and molecular events preceding neurodegeneration. To deepen our awareness of the early phases of the disease, we leveraged two Drosophila melanogaster models pan-neuronally expressing either the mutation A4V or G85R of the human gene SOD1 (hSOD1A4V or hSOD1G85R). We demonstrate that pan-neuronal expression of the hSOD1A4V or hSOD1G85R pathogenic construct impairs survival and motor performance in transgenic flies. Moreover, protein and transcript analysis on fly heads indicates that mutant hSOD1 induction stimulates the glial marker Repo, up-regulates the IMD/Toll immune pathways through antimicrobial peptides and interferes with oxidative metabolism. Finally, cytological analysis of larval brains demonstrates hSOD1-induced chromosome aberrations. Of note, these parameters are found modulated in a timeframe when neurodegeneration is not detected. The novelty of our work is twofold: we have expressed for the first time hSOD1 mutations in all neurons of Drosophila and confirmed some ALS-related pathological phenotypes in these flies, confirming the power of SOD1 mutations in generating ALS-like phenotypes. Moreover, we have related SOD1 pathogenesis to chromosome aberrations and antimicrobial peptides up-regulation. These findings were unexplored in the SOD1-ALS field.

Download


Adenosine signal transduction in Drosophila. AdoR: Adenosine Receptor; ENT: Equilibrative Nucleoside Transporter; CNT: Concentrative Nucleoside Transporter; e5′N: ecto-5′-nucleotidase; Adgf: Adenosine Deaminase; ADK: Adenosine Kinase. Figure 1 was created with BioRender.com.
Delineating Purinergic Signaling in Drosophila

December 2022

·

64 Reads

·

3 Citations

Simplistic models can aid in discovering what is important in the context of normal and pathological behavior. First recognized as a genetic model more than 100 years ago, to date, fruit flies (Drosophila melanogaster) still remain an astonishingly good laboratory stand-in for scientists to study development and physiology and to investigate the molecular mechanisms of human diseases. This is because fruit flies indeed represent a simplistic model. Furthermore, about 75% of human disease-related genes have their counterparts in the Drosophila genome, added to the fact that fruit flies are inexpensive and extremely easy to maintain, being invertebrates and, moreover, lacking any ethical concern issues. Purinergic signaling is, by definition, mediated by extracellular purinergic ligands, among which ATP represents the prototype molecule. A key feature that has progressively emerged when dissecting the purinergic mechanisms is the multilayer and dynamic nature of the signaling sustained by purinergic ligands. Indeed, these last are sequentially metabolized by several different ectonucleotidases, which generate the ligands that simultaneously activate several different purinergic receptors. Since significant purinergic actions have also been described in Drosophila, the aim of the present work is to provide a comprehensive picture of the purinergic events occurring in fruit flies.

Citations (2)


... TopoII knockdown also inhibited poly(GR) toxicity in flies, further confirming this story [88]. In addition, in a model where pan-neuronal expression of mutant SOD1 in Drosophila led to motor neuron degeneration, transcriptome analysis also revealed upregulation of several AMPs, including Mtk [89]. ...

Reference:

Non-Immune Functions of Innate Immunity Acting on Physiological Processes: Insights from Drosophila
Pan-neuronal expression of human mutant SOD1 in Drosophila impairs survival and motor performance, induces early neuroinflammation and chromosome aberrations

Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease

... Volonte et al. [9] provide a highly unique review, in which they introduce Drosophila (fruit fly) as an experimental model to study purinergic signalling. This review includes the benefits, barriers and uncertainties using this insect model. ...

Delineating Purinergic Signaling in Drosophila