Frontiers in Cellular Neuroscience (Oct 2014)

BDNF and the maturation of posttranscriptional regulatory networks in human SH-SY5Y neuroblast differentiation

  • Belinda J Goldie,
  • Belinda J Goldie,
  • Michelle M Barnett,
  • Murray J Cairns,
  • Murray J Cairns

DOI
https://doi.org/10.3389/fncel.2014.00325
Journal volume & issue
Vol. 8

Abstract

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The SH-SY5Y culture system is a convenient neuronal model with the potential to elaborate human/primate-specific transcription networks and pathways related to human cognitive disorders. While this system allows for the exploration of specialised features in the human genome, there is still significant debate about how this model should be implemented, and its appropriateness for answering complex functional questions related to human neural architecture. In view of these questions we sought to characterise the posttranscriptional regulatory structure of the two-stage ATRA differentiation, BDNF maturation protocol proposed by Encinas and colleagues (2010) using integrative whole-genome gene and microRNA (miRNA) expression analysis. We report that ATRA-BDNF induced significant increases in expression of key synaptic genes, brain-specific miRNA and miRNA biogenesis machinery, and in AChE activity, compared with ATRA alone. Functional annotation clustering associated BDNF more significantly with neuronal terms, and with synaptic terms not found in ATRA-only clusters. While our results support use of SH-SY5Y as a neuronal model, we advocate considered selection of the differentiation agent/s relative to the system being modelled.

Keywords