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Alternative splicing of sept9a and sept9b in zebrafish produces multiple mRNA transcripts expressed throughout development.


ABSTRACT:

Background

Septins are involved in a number of cellular processes including cytokinesis and organization of the cytoskeleton. Alterations in human septin-9 (SEPT9) levels have been linked to multiple cancers, whereas mutations in SEPT9 cause the episodic neuropathy, hereditary neuralgic amyotrophy (HNA). Despite its important function in human health, the in vivo role of SEPT9 is unknown.

Methodology/principal findings

Here we utilize zebrafish to study the role of SEPT9 in early development. We show that zebrafish possess two genes, sept9a and sept9b that, like humans, express multiple transcripts. Knockdown or overexpression of sept9a transcripts results in specific developmental alterations including circulation defects and aberrant epidermal development.

Conclusions/significance

Our work demonstrates that sept9 plays an important role in zebrafish development, and establishes zebrafish as a valuable model organism for the study of SEPT9.

SUBMITTER: Landsverk ML 

PROVIDER: S-EPMC2873287 | biostudies-literature | 2010 May

REPOSITORIES: biostudies-literature

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Publications

Alternative splicing of sept9a and sept9b in zebrafish produces multiple mRNA transcripts expressed throughout development.

Landsverk Megan L ML   Weiser Douglas C DC   Hannibal Mark C MC   Kimelman David D  

PloS one 20100519 5


<h4>Background</h4>Septins are involved in a number of cellular processes including cytokinesis and organization of the cytoskeleton. Alterations in human septin-9 (SEPT9) levels have been linked to multiple cancers, whereas mutations in SEPT9 cause the episodic neuropathy, hereditary neuralgic amyotrophy (HNA). Despite its important function in human health, the in vivo role of SEPT9 is unknown.<h4>Methodology/principal findings</h4>Here we utilize zebrafish to study the role of SEPT9 in early  ...[more]

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