Literature DB >> 25627895

Splicing factor NSSR1 reduces neuronal injury after mouse transient global cerebral ischemia.

Yao Qi1, Ya Li, Shi-Chao Cui, Jing-Jing Zhao, Xiao-Yan Liu, Chun-Xia Ji, Feng-Yan Sun, Ping Xu, Xian-Hua Chen.   

Abstract

This study focuses on the function of NSSR1, a splicing factor, in neuronal injury in the ischemic mouse brain using the transient global cerebral ischemic mouse model and the cultured cells treated with oxygen-glucose deprivation (OGD). The results showed that the cerebral ischemia triggers the expression of NSSR1 in hippocampal astrocytes, predominantly the dephosphorylated NSSR1 proteins, and the Exon3 inclusive NCAM-L1 variant and the Exon4 inclusive CREB variant. While in the hippocampus of astrocyte-specific NSSR1 conditional knockdown (cKD) mice, where cerebral ischemia no longer triggers NSSR1 expression in astrocytes, the expression of Exon3 inclusive NCAM-L1 variant and Exon4 inclusive CREB variant were no longer triggered as well. In addition, the injury of hippocampal neurons was more severe in astrocyte-specific NSSR1 cKD mice compared with in wild-type mice after brain ischemia. Of note, the culture media harvested from the astrocytes with overexpression of NSSR1 or the Exon3 inclusive NCAM-L1 variant, or Exon4 inclusive CREB variant were all able to reduce the neuronal injury induced by OGD. The results provide the evidence demonstrating that: (1) Splicing factor NSSR1 is a new factor involved in reducing ischemic injury. (2) Ischemia induces NSSR1 expression in astrocytes, not in neurons. (3) NSSR1-mediated pathway in astrocytes is required for reducing ischemic neuronal injury. (4) NCAM-L1 and CREB are probably mediators in NSSR1-mediated pathway. In conclusion, our results suggest for the first time that NSSR1 may provide a novel mechanism for reducing neuronal injury after ischemia, probably through regulation on alternative splicing of NCAM-L1 and CREB in astrocytes.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  CREB; NCAM-L1; alternative splicing; astrocytes; expression

Mesh:

Substances:

Year:  2015        PMID: 25627895     DOI: 10.1002/glia.22787

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  2 in total

1.  Identification of SRSF10 as a regulator of SMN2 ISS-N1.

Authors:  Sabrina B Frederiksen; Lise L Holm; Martin R Larsen; Thomas K Doktor; Henriette S Andersen; Michelle L Hastings; Yimin Hua; Adrian R Krainer; Brage S Andresen
Journal:  Hum Mutat       Date:  2020-12-16       Impact factor: 4.878

Review 2.  SRSF10: an atypical splicing regulator with critical roles in stress response, organ development, and viral replication.

Authors:  Lulzim Shkreta; Aurélie Delannoy; Anna Salvetti; Benoit Chabot
Journal:  RNA       Date:  2021-07-27       Impact factor: 4.942

  2 in total

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