Three Drosophila beta-tubulin sequences: a developmentally regulated isoform (beta 3), the testis-specific isoform (beta 2), and an assembly-defective mutation of the testis-specific isoform (B2t8) reveal both an ancient divergence in metazoan isotypes and structural constraints for beta-tubulin function.
Open Access
- 1 June 1987
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 7 (6) , 2231-2242
- https://doi.org/10.1128/mcb.7.6.2231
Abstract
The genomic DNA sequence and deduced amino acid sequence are presented for three Drosophila melanogaster beta-tubulins: a developmentally regulated isoform beta 3-tubulin, the wild-type testis-specific isoform beta 2-tubulin, and an ethyl methanesulfonate-induced assembly-defective mutation of the testis isoform, B2t8. The testis-specific beta 2-tubulin is highly homologous to the major vertebrate beta-tubulins, but beta 3-tubulin is considerably diverged. Comparison of the amino acid sequences of the two Drosophila isoforms to those of other beta-tubulins indicates that these two proteins are representative of an ancient sequence divergence event which at least preceded the split between lines leading to vertebrates and invertebrates. The intron/exon structures of the genes for beta 2- and beta 3-tubulin are not the same. The structure of the gene for the variant beta 3-tubulin isoform, but not that of the testis-specific beta 2-tubulin gene, is similar to that of vertebrate beta-tubulins. The mutation B2t8 in the gene for the testis-specific beta 2-tubulin defines a single amino acid residue required for normal assembly function of beta-tubulin. The sequence of the B2t8 gene is identical to that of the wild-type gene except for a single nucleotide change resulting in the substitution of lysine for glutamic acid at residue 288. This position falls at the junction between two major structural domains of the beta-tubulin molecule. Although this hinge region is relatively variable in sequence among different beta-tubulins, the residue corresponding to glu 288 of Drosophila beta 2-tubulin is highly conserved as an acidic amino acid not only in all other beta-tubulins but in alpha-tubulins as well.This publication has 64 references indexed in Scilit:
- Genetic analysis of microtubule structure: a beta-tubulin mutation causes the formation of aberrant microtubules in vivo and in vitro.The Journal of cell biology, 1987
- Tubulin domains probed by limited proteolysis and subunit-specific antibodiesJournal of Molecular Biology, 1985
- Sequence of a highly divergent beta tubulin gene reveals regional heterogeneity in the beta tubulin polypeptide.The Journal of cell biology, 1984
- Regulation of Drosophila α- and β-tubulin genes during developmentDevelopmental Biology, 1984
- Identification of the pleiotropic cell division cycle gene NDA2 as one of two different α-tubulin genes in schizosaccharomyces pombeCell, 1984
- Lambda replacement vectors carrying polylinker sequencesJournal of Molecular Biology, 1983
- Isolation of cloned genes differentially expressed at early and late stages of Drosophila embryonic developmentDevelopmental Biology, 1981
- Nucleotide sequence and evolution of a mammalian α-Tubulin messenger RNAJournal of Molecular Biology, 1981
- Prediction of the Secondary Structure of Proteins from their Amino Acid SequencePublished by Wiley ,1979
- Screening λgt Recombinant Clones by Hybridization to Single Plaques in SituScience, 1977