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Alternative splicing of micro-exons creates multiple forms of the insect cell adhesion molecule fasciclin I

L McAllister1, E J Rehm, G S Goodman

  • 1Howard Hughes Medical Institute, Department of Molecular and Cell Biology, University of California, Berkeley 94720.

Insights

The Drosophila fasciclin I gene (fasI) has 15 exons. Alternative splicing of micro-exons in fasciclin I can alter protein binding specificity during embryonic development.

Area of Science:

  • Molecular Biology
  • Developmental Biology
  • Genetics

Background:

  • Fasciclin I is a homophilic cell adhesion molecule crucial for insect development.
  • It is expressed on specific axon pathways and various tissues during embryogenesis.
  • The fasciclin I protein comprises four homologous 150 amino acid domains.

Purpose of the Study:

  • To describe the complete sequence of the Drosophila fasciclin I (fasI) gene.
  • To investigate the structure and expression patterns of fasciclin I mRNAs.
  • To explore the functional implications of alternative splicing in fasciclin I.

Main Methods:

  • Gene sequencing of the Drosophila fasciclin I (fasI) gene.
  • Analysis of mRNA structures, focusing on 3' untranslated regions.
  • Examination of alternative splicing events involving micro-exons.

Main Results:

  • The Drosophila fasI gene spans 15 exons over 14 kilobases.
  • Multiple fasciclin I mRNA variants with differing 3' UTR lengths were identified.
  • Alternative splicing of two micro-exons introduces 3 or 6 amino acids into the second domain, a phenomenon also observed in grasshopper fasciclin I.

Conclusions:

  • Alternative micro-exon splicing in fasciclin I generates differentially expressed mRNA isoforms.
  • These alternatively spliced variants are present in nerve cord preparations.
  • The inserted amino acids may modulate the binding specificity of fasciclin I.

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