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Srp20 regulates TrkB pre-mRNA splicing to generate TrkB-Shc transcripts with implications for Alzheimer's disease

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posted on 2024-11-16, 07:16 authored by Jenny Wong, Brett Garner, Glenda M Halliday, John BJ Kwok
Previously, we reported elevated levels of the neuronspecific tropomyosin receptor kinase B (TrkB) transcript, TrkB- sarc homology containing (Shc) in the hippocampus of Alzheimer’s disease (AD) brains. In this study, we determined how TrkB-Shc transcripts are increased in AD. Utilizing a TrkB minigene transiently transfected into SHSY5Y cells, we found increased exon 19 inclusion in TrkB minigene transcripts (to generate TrkB-Shc) following cellular exposure to amyloid beta 1–42 (Ab42). As this suggested altered TrkB pre-mRNA splicing in AD, we conducted an in silico screening for putative splice regulatory protein-binding sites in the intron/exon splice regulatory regions of exons 18 and 19 of the TrkB gene and then assessed their gene expression profiles using a microarray database of control/AD post mortem human hippocampal brain tissue. We found significant changes in serine/arginine protein 20 (Srp20) gene expression in AD cases and confirmed this using a second cohort of control/AD. In vitro, we found increased Srp20 mRNA levels in SHSY5Y cells treated with Ab42 fibrils. Moreover, Srp20 over-expression was found to increase exon 19 inclusion in TrkB minigene transcripts and ratio of endogenous TrkB-Shc:TrkB-TK+ mRNA expression. Conversely, Srp20 expression knockdown produced the opposite effects. Our findings suggest that dysregulation of factors regulating TrkB pre-mRNA splicing may contribute to gene expression changes that occur in AD.

Funding

EVIDENCE OF (SELF)TRAINING OF WORKERS IN THE PRESS: AFFECTING THE SENSES, PRODUCING SENSITIVITIES (between the final decades of the 19th century and the beginning of the 21st century)

Coordenação de Aperfeicoamento de Pessoal de Nível Superior

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History

Citation

Wong, J., Garner, B., Halliday, G. M. & Kwok, J. BJ. (2012). Srp20 regulates TrkB pre-mRNA splicing to generate TrkB-Shc transcripts with implications for Alzheimer's disease. Journal of Neurochemistry, 123 (1), 159-171.

Journal title

Journal of neurochemistry

Volume

123

Issue

1

Pagination

159-171

Language

English

RIS ID

64121

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