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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.
Abstract:
Fasciclin I is a homophilic cell adhesion molecule in insects that is dynamically expressed on a subset of axon pathways in the embryonic nervous system, and on a variety of other cells and tissues during development. The fasciclin I protein consists of four homologous 150 amino acid domains. In this article, we describe the complete sequence of the Drosophila fasciclin I (fasI) gene. The gene consists of 15 exons and is distributed over 14 kilobases of DNA. We examine the structure and temporal expression pattern of multiple fasciclin I mRNAs that differ in the lengths of their 3' untranslated regions. We also show that a highly conserved sequence at the end of the second domain can be altered by the addition of three or six amino acids that are encoded by two alternatively spliced 9 base pair (bp) micro-exons. In grasshopper fasciclin I mRNAs, there are 9 bp and 6 bp insertions at the same position. The first of these insertions is identical in sequence to the first fly micro-exon. The grasshopper insertions are not found together in the same mRNA, so grasshopper fasciclin I species differ by the addition of three or two extra amino acids to the second domain. The alternatively spliced mRNAs are differentially expressed during embryogenesis, and all three of them are present in nerve cord preparations. We suggest that the amino acids inserted by alternative micro-exon splicing may alter the binding specificity of fasciclin I.
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.