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A temporal (phospho-)proteomic dataset of neurotrophic receptor tyrosine kinase signalling in neuroblastoma. | LitMetric

AI Article Synopsis

  • Neurotrophic receptor tyrosine kinases TrkA, TrkB, and TrkC play different roles in neuroblastoma, a childhood cancer, with TrkA linked to better outcomes and lower disease stages, while TrkB is often found in more aggressive forms associated with MYCN amplification.
  • This study used advanced mass spectrometry to analyze proteins and phosphoproteins in neuroblastoma cells, revealing substantial data (4,907 proteins, 16,744 phosphosites) that highlights the distinct signaling of these Trk receptors and their interaction with MYCN status.
  • The findings could lead to better understanding and treatment strategies for neuroblastoma by clarifying how different Trk receptors influence the

Article Abstract

Neurotrophic receptor tyrosine kinases (TrkA, TrkB, TrkC), despite their homology, contribute to the clinical heterogeneity of the childhood cancer neuroblastoma. TrkA expression is associated with low-stage disease and is often seen with spontaneous tumour regression. Conversely, TrkB is present in unfavourable neuroblastomas that often harbour amplification of the MYCN oncogene. The role of TrkC is less clearly defined, although some studies suggest its association with a favourable outcome. Understanding the differences in activity of Trk receptors that drive divergent clinical phenotypes as well as the influence of MYCN amplification on downstream Trk receptor signalling remains poorly understood. Here, we present a comprehensive label-free mass spectrometry-based total proteomics and phosphoproteomics dataset (432 raw files with FragPipe search outputs; available on PRIDE with accession number PXD054441) where we identified and quantified 4,907 proteins, 16,744 phosphosites and 5,084 phosphoproteins, derived from NGF/BDNF/NT-3 treated TrkA/B/C-overexpressing neuroblastoma cells with differential MYCN status. Analysing our dataset offers valuable insights into TrkA/B/C receptor signalling in neuroblastoma and its modulation by MYCN status; and holds potential for advancing therapeutic strategies in this challenging childhood cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11467210PMC
http://dx.doi.org/10.1038/s41597-024-03965-yDOI Listing

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