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  4. fumble encodes a pantothenate kinase homolog required for proper mitosis and meiosis in Drosophila melanogaster
 
research article

fumble encodes a pantothenate kinase homolog required for proper mitosis and meiosis in Drosophila melanogaster

Afshar, K.  
•
Gönczy, P.  
•
DiNardo, S.
Show more
2001
Genetics

A number of fundamental processes comprise the cell division cycle, including spindle formation, chromosome segregation, and cytokinesis. Our current understanding of these processes has benefited from the isolation and analysis of mutants, with the meiotic divisions in the male germline of Drosophila being particularly well suited to the identification of the required genes. We show here that the fumble (fbl) gene is required for cell division in Drosophila. We find that dividing cells in fbl-deficient testes exhibit abnormalities in bipolar spindle organization, chromosome segregation, and contractile ring formation. Cytological analysis of larval neuroblasts from null mutants reveals a reduced mitotic index and the presence of polyploid cells. Molecular analysis demonstrates that fbl encodes three protein isoforms, all of which contain a domain with high similarity to the pantothenate kinases of A. nidulans and mouse. The largest Fumble isoform is dispersed in the cytoplasm during interphase, concentrates around the spindle at metaphase, and localizes to the spindle midbody at telophase. During early embryonic development, the protein localizes to areas of membrane deposition and/or rearrangement, such as the metaphase and cellularization furrows. Given the role of pantothenate kinase in production of Coenzyme A and in phospholipid biosynthesis, this pattern of localization is suggestive of a role for fbl in membrane synthesis. We propose that abnormalities in synthesis and redistribution of membranous structures during the cell division cycle underlie the cell division defects in fbl mutant cells.

  • Details
  • Metrics
Type
research article
PubMed ID

11238410

Author(s)
Afshar, K.  
Gönczy, P.  
DiNardo, S.
Wasserman, S. A.
Date Issued

2001

Published in
Genetics
Volume

157

Issue

3

Start page

1267

End page

76

Subjects

Amino Acid Sequence

•

Animals

•

Cell Division/*genetics

•

Cell Membrane/metabolism

•

Cloning

•

Molecular

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Coenzyme A/biosynthesis

•

Cytoplasm/metabolism

•

DNA

•

Complementary/metabolism

•

Drosophila melanogaster/*genetics

•

Embryo

•

Nonmammalian/metabolism

•

Immunoblotting

•

Male

•

Meiosis/*genetics

•

Mice

•

Microscopy

•

Phase-Contrast

•

Mitosis/*genetics

•

Molecular Sequence Data

•

Mutation

•

Phenotype

•

Phosphotransferases (Alcohol Group

•

Acceptor)/biosynthesis/chemistry/*genetics/physiology

•

Physical Chromosome Mapping

•

Protein Isoforms

•

Research Support

•

Non-U.S. Gov't

•

Research Support

•

U.S. Gov't

•

Non-P.H.S.

•

Research Support

•

U.S. Gov't

•

P.H.S.

•

Sequence Analysis

•

DNA

•

Sequence Homology

•

Amino Acid

•

Testis/metabolism

•

Time Factors

Note

Center for Molecular Genetics, Division of Biology, University of California, San Diego, California 92093, USA. kafshar@biomail.ucsd.edu

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPGON  
Available on Infoscience
August 24, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/233773
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