Septin Complexes Regulate Microtubule Organization and Synaptic Function at the Neuromuscular Junction
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ABSTRACT: Septins are GTP-binding cytoskeletal proteins that form filamentous structures and play key roles in cell division, membrane organisation, and cytoskeletal regulation. In Drosophila melanogaster, Septin2 (Sep2) and Septin5 (Sep5) are highly expressed in the nervous system, yet their combined transcriptomic impact remains poorly characterised. Here we performed bulk RNA-seq on w1118 control, Sep2[2] single mutant, Sep5[2] single mutant, and Sep2[2];Sep5[2] double homozygous mutant adult flies to identify synergistic gene expression changes. Differential expression analysis (edgeR, quasi-likelihood) revealed extensive dysregulation of cytoskeletal, microtubule, actin-binding, axon guidance, and signalling gene networks specifically in the double mutant, supporting a functional redundancy model between Sep2 and Sep5.
ORGANISM(S): Drosophila melanogaster
PROVIDER: GSE330240 | GEO | 2026/08/15
REPOSITORIES: GEO
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