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Perlecan domain V of Drosophila melanogaster. Sequence, recombinant analysis and tissue expression
M V Friedrich1, M Schneider, R Timpl
1Max-Planck-Institut für Biochemie, Germany.
Abstract:
The C-terminal domain V of the basement membrane proteoglycan perlecan was previously shown to play a major role in extracellular matrix and cell interactions. A homologous sequence of 708 amino-acid residues from Drosophila has now been shown to be 33% identical to mouse perlecan domain V. It consists of three laminin G-type (LG) and epidermal growth factor-like (EG) modules but lacks the EG3 module and a link region found in mammalian perlecans. Recombinant production of Drosophila perlecan domain V in mammalian cells yielded a 100-kDa protein which was folded into a linear array of three globular LG domains. Unlike the mouse counterpart, domain V from Drosophila was not modified by glycosaminoglycans and endogenous proteolysis, due to the absence of the link region. It showed moderate affinities for heparin and sulfatides but did not bind to chick alpha-dystroglycan or to various mammalian basement membrane proteins. A single RGD sequence in LG3 of Drosophila domain V was also incapable of mediating cell adhesion. Production of a proteoglycan form of perlecan (approximately 450 kDa) in one Drosophila cell line could be demonstrated by immunoblotting with antibodies against Drosophila domain V. A strong expression was also found by in situ hybridization and immunohistology at various stages of embryonic development and expression was localized to several basement membrane zones. This indicates, as for mammalian species, a distinct role of perlecan during Drosophila development.
Insights
Drosophila perlecan domain V, lacking certain mammalian modules, does not bind cells or proteins. However, it is expressed during development, suggesting a role in basement membrane formation.
Area of Science:
- Developmental Biology
- Extracellular Matrix
- Proteoglycan Research
Background:
- Perlecan domain V is crucial for extracellular matrix and cell interactions in mammals.
- A homologous sequence in Drosophila shares structural similarities but lacks key mammalian modules.
Purpose of the Study:
- To characterize Drosophila perlecan domain V and its functional properties.
- To investigate the expression and role of Drosophila perlecan during embryonic development.
Main Methods:
- Recombinant production of Drosophila perlecan domain V in mammalian cells.
- Biochemical assays to assess binding affinities and cell adhesion.
- Immunoblotting, in situ hybridization, and immunohistology for expression analysis.
Main Results:
- Drosophila perlecan domain V, composed of three LG domains, lacks glycosaminoglycan modification and a link region.
- It exhibits moderate binding to heparin and sulfatides but not to alpha-dystroglycan or mammalian basement membrane proteins.
- The RGD sequence in Drosophila perlecan domain V does not mediate cell adhesion.
- A proteoglycan form of perlecan is produced in Drosophila cells and highly expressed during embryonic development in basement membranes.
Conclusions:
- Drosophila perlecan domain V possesses distinct biochemical properties compared to its mammalian counterpart.
- Despite differences, Drosophila perlecan is expressed during development, indicating a conserved role in basement membrane formation and organismal development.