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Phenotypic analysis of EcR-A mutants suggests that EcR isoforms have unique functions during Drosophila development

  • Melissa B. Davis
    ,
  • Ginger E. Carney
    ,
  • Anne E. Robertson
    ,
  • Michael Bender(corresponding author)
*Corresponding author for this work
  • University of Georgia
    ,
  • Yale University
    ,
  • Texas A&M University
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Abstract

The steroid hormone ecdysone triggers transitions between developmental stages in Drosophila by acting through a heterodimer consisting of the EcR and USP nuclear receptors. The EcR gene encodes three protein isoforms (EcR-A, EcR-B1, and EcR-B2) that have unique amino termini but that contain a common carboxy-terminal region including DNA-binding and ligand-binding domains. EcR-A and EcR-B1 are expressed in a spatially complementary pattern at the onset of metamorphosis, suggesting that specific responses to ecdysone involve distinct EcR isoforms. Here, we describe phenotypes of EcR-A specific deletion mutants isolated using transposon mutagenesis. Western blot analysis shows that each of these mutants completely lacks EcR-A protein, while the EcR-B1 protein is still present. The EcR112 strain has a deletion of EcR-A specific non-coding and regulatory sequences but retains the coding exons, while the EcR139 strain has a deletion of EcR-A specific protein coding exons but retains the regulatory region. In these mutants, the developmental progression of most internal tissues that normally express EcR-B1 is unaffected by the lack of EcR-A. Surprisingly, however, we found that one larval tissue, the salivary gland, fails to degenerate even though EcR-B1 is the predominant isoform. This result may indicate that the low levels of EcR-A in this tissue are in fact required. We identified yet another type of mutation, the EcR 94 deletion, that removes the EcR-A specific protein coding exons as well as the introns between the EcR-A and EcR-B transcription start sites. This deletion places the EcR-A regulatory region adjacent to the EcR-B transcription start site. While EcR112 and EcR139 mutant animals die during mid and late pupal development, respectively, EcR94 mutants arrest prior to pupariation. EcR-A mutant phenotypes and lethal phases differ from those of EcR-B mutants, suggesting that the EcR isoforms have distinct developmental functions.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 385-396 (12 pages)

Journal (Volume, Issue Number)

Developmental Biology (Volume 282, Issue 2)

Publication milestones

  • Published - 06/15/2005

Publication status

Published - 06/15/2005

ISSN

0012-1606

Publication IDs

  • Scopus: 20444372635
  • PubMed: 15950604

Publication metrics

Metrics

SciVal
citations
77
Scopus
citations
SciVal
FWCI
1.40
SciVal
Author count
4
SciVal
Paper percentile
92
SciVal
Top percentile
10
Fractional count
1
Fractional count
0.25
Fractional count
3
Fractional count
0.75
Fractional count
1
Fractional count
1

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Citation count
92
Captures
82

Funding Details

We would like to thank the laboratories of Dr. Richard Meagher and Dr. Carl Thummel for the provision of antibody reagents. We thank Tong-Ruei Li and Heidi Weaver for help with Western blots, and Dave Brown for assistance with image processing. This work was supported by a grant from the National Institutes of Health (GM-053681) to M.B., an NIH pre-doctoral fellowship (GM-020095), and a Ford Foundation Dissertation fellowship to M.B.D. and by an NIH training grant (GM-07103) to G.E.C. Special thanks go to Drs. Judy Willis, Sue Wessler, Bob Ivarie, Mary Bedell, Claiborne Glover, and Kevin White for assistance and helpful comments in preparation of the manuscript.
FundersFunding numbers
NIH
-
Ford Foundation
GM-07103
NIGMS
R01GM053681, F31GM020095