Interallelic Complementation at the Drosophila melanogaster gastrulation defective Locus Defines Discrete Functional Domains of the Protein

Author:

Ponomareff Gregory1,Giordano Heidi2,DeLotto Yvonne3,DeLotto Robert3

Affiliation:

1. Cornell Graduate School of Medicine, New York, New York 10021

2. Tularik, South San Francisco, California 94080

3. Department of Genetics, University of Copenhagen, Copenhagen K, Denmark

Abstract

Abstract The gastrulation defective (gd) locus encodes a novel serine protease that is involved in specifying the dorsal-ventral axis during embryonic development. Mutant alleles of gd have been classified into three complementation groups, two of which exhibit strong interallelic (intragenic) complementation. To understand the molecular basis of this interallelic complementation, we examined the complementation behavior of additional mutant alleles and sequenced alleles in all complementation groups. The data suggest that there are two discrete functional domains of Gd. A two-domain model of Gd suggesting that it is structurally similar to mammalian complement factors C2 and B has been previously proposed. To test this model we performed SP6 RNA microinjection to assay for activities associated with various domains of Gd. The microinjection data are consistent with the complement factor C2/B-like model. Site-directed mutagenesis suggests that Gd functions as a serine protease. An allele-specific interaction between an autoactivating form of Snake (Snk) and a gd allele altered in the protease domain suggests that Gd directly activates Snk in a protease activation cascade. We propose a model in which Gd is expressed during late oogenesis and bound within the perivitelline space but only becomes catalytically active during embryogenesis.

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference37 articles.

1. Genetic analysis of dorsal-ventral embryonic pattern in Drosophila;Anderson,1984

2. Dorsal group genes of Drosophila;Anderson,1986

3. The atypical serine proteases of the complement system;Arlaud;Adv. Immunol.,1998

4. rhomboid, a gene required for dorsoventral axis establishment and peripheral nervous system development in Drosophila melanogaster;Bier;Genes Dev.,1990

5. The role of easter, an apparent serine protease, in organizing the dorsal-ventral axis of the Drosophila embryo;Chasen;Cell,1989

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