4.7 Article

PMP22 messenger RNA levels in skin biopsies: testing the effectiveness of a Charcot-Marie-Tooth 1A biomarker

Journal

BRAIN
Volume 137, Issue -, Pages 1614-1620

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/brain/awu071

Keywords

PMP22; ascorbic acid; CMT1A; biological marker

Funding

  1. Telethon-UILDM [GUP04002, GUP05007]
  2. AIFA (Italian Medicines Agency) [FARM53APAH]
  3. MRC [MR/K000608/1] Funding Source: UKRI
  4. Medical Research Council [MR/K000608/1] Funding Source: researchfish

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Charcot-Marie-Tooth 1A disease is caused by PMP22 gene duplication and is currently incurable and lacking reliable biomarkers. Nobbio et al. report that PMP22 messenger RNA varies extensively among patients at baseline and following ascorbic acid treatment. PMP22 messenger RNA relates poorly to clinical outcome and lacks sensitivity as a diagnostic and prognostic biomarker.Charcot-Marie-Tooth disease type 1A (CMT1A) is associated with increased gene dosage for PMP22. Therapeutic approaches are currently aiming at correcting PMP22 over-expression. It is unknown whether PMP22 can be used as a biological marker of disease progression and therapy efficacy. We performed quantitative real-time polymerase chain reaction on skin biopsies of 45 patients with CMT1A, obtained at study entry and after 24-months of treatment either with ascorbic acid or placebo. Data of a subgroup of patients were also compared with matched healthy subjects. Finally, we analysed PMP22 messenger RNA levels in sural nerve biopsies. We did not find significant differences in the levels of any known PMP22 transcripts in treated or untreated patients with CMT1A, thus confirming that ascorbic acid does not impact on the molecular features of CMT1A. Most importantly, we did not observe any correlation between PMP22 messenger RNA levels and the different clinical and electrophysiological outcome measures, underscoring the weakness of PMP22 to mirror the phenotypic variability of patients with CMT1A. We did not find increased PMP22 messenger RNA levels in skin and sural nerve biopsies of patients with CMT1A compared with relative controls. In conclusion, this study shows that ascorbic acid does not impact on PMP22 transcriptional regulation and PMP22 is not a suitable biomarker for CMT1A.

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