Myosin Light Chain–activating Phosphorylation Sites Are Required for Oogenesis in Drosophila
Open Access
- 29 December 1997
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 139 (7) , 1805-1819
- https://doi.org/10.1083/jcb.139.7.1805
Abstract
The Drosophila spaghetti squash (sqh) gene encodes the regulatory myosin light chain (RMLC) of nonmuscle myosin II. Biochemical analysis of vertebrate nonmuscle and smooth muscle myosin II has established that phosphorylation of certain amino acids of the RMLC greatly increases the actin-dependent myosin ATPase and motor activity of myosin in vitro. We have assessed the in vivo importance of these sites, which in Drosophila correspond to serine-21 and threonine-20, by creating a series of transgenes in which these specific amino acids were altered. The phenotypes of the transgenes were examined in an otherwise null mutant background during oocyte development in Drosophila females. Germ line cystoblasts entirely lacking a functional sqh gene show severe defects in proliferation and cytokinesis. The ring canals, cytoplasmic bridges linking the oocyte to the nurse cells in the egg chamber, are abnormal, suggesting a role of myosin II in their establishment or maintenance. In addition, numerous aggregates of myosin heavy chain accumulate in the sqh null cells. Mutant sqh transgene sqh-A20, A21 in which both serine-21 and threonine-20 have been replaced by alanines behaves in most respects identically to the null allele in this system, with the exception that no heavy chain aggregates are found. In contrast, expression of sqh-A21, in which only the primary phosphorylation target serine-21 site is altered, partially restores functionality to germ line myosin II, allowing cystoblast division and oocyte development, albeit with some cytokinesis failure, defects in the rapid cytoplasmic transport from nurse cells to cytoplasm characteristic of late stage oogenesis, and some damaged ring canals. Substituting a glutamate for the serine-21 (mutant sqh-E21) allows oogenesis to be completed with minimal defects, producing eggs that can develop normally to produce fertile adults. Flies expressing sqh-A20, in which only the secondary phosphorylation site is absent, appear to be entirely wild type. Taken together, this genetic evidence argues that phosphorylation at serine-21 is critical to RMLC function in activating myosin II in vivo, but that the function can be partially provided by phosphorylation at threonine-20.Keywords
This publication has 67 references indexed in Scilit:
- A single Drosophila melanogaster myosin light chain kinase gene produces multiple isoforms whose activities are differently regulatedGenes to Cells, 1996
- Regulation of Dictyostelium myosin II by phosphorylation: what is essential and what is important?The Journal of cell biology, 1994
- CONTROL OF NONMUSCLE MYOSINS BY PHOSPHORYLATIONAnnual Review of Biochemistry, 1992
- Regulation of smooth muscle myosinCell Motility, 1991
- Effects of modulators of myosin light-chain kinase activity in single smooth muscle cellsNature, 1989
- Myosins of Nonmuscle CellsAnnual Review of Biophysics, 1988
- Cloning and characterization of mammalian myosin regulatory light chain (RLC) cDNA: the RLC gene is expressed in smooth, sarcomeric, and nonmuscle tissues.The Journal of cell biology, 1987
- Disruption of the Dictyostelium Myosin Heavy Chain Gene by Homologous RecombinationScience, 1987
- Phosphorylation site sequence of smooth muscle myosin light chain (Mr = 20 000)FEBS Letters, 1984
- Clonal analysis of the tissue specificity of recessive female-sterile mutations of Drosophila melanogaster using a dominant female-sterile mutation Fs(1)K1237Developmental Biology, 1983