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B-raf Alternative Splicing Is Dispensable for Development but Required for Learning and Memory Associated with the Hippocampus in the Adult Mouse
Author(s) -
Agathe Valluet,
Isabelle Hmitou,
Sabrina Davis,
Sabine Druillennec,
Magalie Larcher,
Serge Laroche,
Alain Eychène
Publication year - 2010
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0015272
Subject(s) - exon , alternative splicing , biology , gene isoform , rna splicing , conditional gene knockout , hippocampus , microbiology and biotechnology , hippocampal formation , knockout mouse , genetics , gene , neuroscience , phenotype , rna
The B-raf proto-oncogene exerts essential functions during development and adulthood. It is required for various processes, such as placental development, postnatal nervous system myelination and adult learning and memory. The mouse B-raf gene encodes several isoforms resulting from alternative splicing of exons 8b and 9b located in the hinge region upstream of the kinase domain. These alternative sequences modulate the biochemical and biological properties of B-Raf proteins. To gain insight into the physiological importance of B-raf alternative splicing, we generated two conditional knockout mice of exons 8b and 9b. Homozygous animals with a constitutive deletion of either exon are healthy and fertile, and survive up to 18 months without any visible abnormalities, demonstrating that alternative splicing is not essential for embryonic development and brain myelination. However, behavioural analyses revealed that expression of exon 9b-containing isoforms is required for B-Raf function in hippocampal-dependent learning and memory. In contrast, mice mutated on exon 8b are not impaired in this function. Interestingly, our results suggest that exon 8b is present only in eutherians and its splicing is differentially regulated among species.

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