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Cohort analysis of novel SPAST variants in SPG4 patients and implementation of in vitro and in vivo studies to identify the pathogenic mechanism caused by splicing mutations.
Ferese, Rosangela; Scala, Simona; Suppa, Antonio; Campopiano, Rosa; Asci, Francesco; Zampogna, Alessandro; Chiaravalloti, Maria Antonietta; Griguoli, Annamaria; Storto, Marianna; Pardo, Alba Di; Giardina, Emiliano; Zampatti, Stefania; Fornai, Francesco; Novelli, Giuseppe; Fanelli, Mirco; Zecca, Chiara; Logroscino, Giancarlo; Centonze, Diego; Gambardella, Stefano.
Afiliação
  • Ferese R; IRCCS Neuromed, Pozzilli, Italy.
  • Scala S; IRCCS Neuromed, Pozzilli, Italy.
  • Suppa A; IRCCS Neuromed, Pozzilli, Italy.
  • Campopiano R; Department of Human Neurosciences, Sapienza University of Rome, Rome, Italy.
  • Asci F; IRCCS Neuromed, Pozzilli, Italy.
  • Zampogna A; IRCCS Neuromed, Pozzilli, Italy.
  • Chiaravalloti MA; Department of Human Neurosciences, Sapienza University of Rome, Rome, Italy.
  • Griguoli A; IRCCS Neuromed, Pozzilli, Italy.
  • Storto M; IRCCS Neuromed, Pozzilli, Italy.
  • Pardo AD; IRCCS Neuromed, Pozzilli, Italy.
  • Giardina E; IRCCS Neuromed, Pozzilli, Italy.
  • Zampatti S; Genomic Medicine Laboratory, IRCCS Fondazione Santa Lucia, Rome, Italy.
  • Fornai F; Genomic Medicine Laboratory, IRCCS Fondazione Santa Lucia, Rome, Italy.
  • Novelli G; IRCCS Neuromed, Pozzilli, Italy.
  • Fanelli M; Department of Translational Research and New Technologies in Medicine and Surgery, University of Pisa, Pisa, Italy.
  • Zecca C; IRCCS Neuromed, Pozzilli, Italy.
  • Logroscino G; Department of Biomedicine and Prevention, University of Rome "Tor Vergata", Rome, Italy.
  • Centonze D; Department of Biomolecular Sciences, University of Urbino "Carlo Bo", Urbino, Italy.
  • Gambardella S; Center for Neurodegenerative Diseases and the Aging Brain, Department of Clinical Research in Neurology of the University of Bari "Aldo Moro" at "Pia Fondazione Card G. Panico" Hospital Tricase, Lecce, Italy.
Front Neurol ; 14: 1296924, 2023.
Article em En | MEDLINE | ID: mdl-38145127
ABSTRACT

Introduction:

Pure hereditary spastic paraplegia (SPG) type 4 (SPG4) is caused by mutations of SPAST gene. This study aimed to analyze SPAST variants in SPG4 patients to highlight the occurrence of splicing mutations and combine functional studies to assess the relevance of these variants in the molecular mechanisms of the disease.

Methods:

We performed an NGS panel in 105 patients, in silico analysis for splicing mutations, and in vitro minigene assay. Results and

discussion:

The NGS panel was applied to screen 105 patients carrying a clinical phenotype corresponding to upper motor neuron syndrome (UMNS), selectively affecting motor control of lower limbs. Pathogenic mutations in SPAST were identified in 12 patients (11.42%), 5 missense, 3 frameshift, and 4 splicing variants. Then, we focused on the patients carrying splicing variants using a combined approach of in silico and in vitro analysis through minigene assay and RNA, if available. For two splicing variants (i.e., c.1245+1G>A and c.1414-2A>T), functional assays confirm the types of molecular alterations suggested by the in silico analysis (loss of exon 9 and exon 12). In contrast, the splicing variant c.1005-1delG differed from what was predicted (skipping exon 7), and the functional study indicates the loss of frame and formation of a premature stop codon. The present study evidenced the high splice variants in SPG4 patients and indicated the relevance of functional assays added to in silico analysis to decipher the pathogenic mechanism.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Front Neurol Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Front Neurol Ano de publicação: 2023 Tipo de documento: Article