4.6 Article

Wax moth, Galleria mellonella, high density lipophorin receptor:: alternative splicing, tissue-specific expression, and developmental regulation

Journal

INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY
Volume 33, Issue 8, Pages 761-771

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/S0965-1748(03)00066-3

Keywords

Galleria mellonella; Lepidoptera; lipophorin receptor; VLDL receptor; O-linked sugar domain; 20-hydroxyecdysone

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A lipophorin (Lp) receptor cDNA from the fat body of Galleria mellonella (Lepidoptera) was cloned and sequenced. This is the first result in this order, Lepidoptera. It showed the pattern of the VLDL receptor belonging to the LDL receptor family. Sequence homology with other Lp receptors in insects, Locusta migratoria and Aedes aegypti, was 70 and 61%, respectively and each domain was highly conserved. Polyclonal anti-Lp receptor antibody prepared against expressed Lp receptor fragment between ligand binding domain and EGF-precursor homology domain (R305rD549 of amino acid residues) specifically detected the Lp receptor. Through immuno-blotting, the Lp receptor of larval fat body has an approximate molecular mass of about 97 and 110 kDa under non-reducing and reducing conditions, respectively. This result was in agreement with that of the ligand-blotting. The variant Lp receptors were expressed in the fat body of G. mellonella; one is an Lp receptor which lacks 84 bp of O-linked sugar domain and the other is a full length form of the Lp receptor. Both forms were detected by the polyclonal anti-Lp receptor antibody. The Lp receptor from the fat body of G. mellonella was differently expressed depending on the tissue and the developmental stage with specific abundance in prepupal stage. A steroid hormone, 20-hydroxyecdysone (20-HE) plays a crucial role in insect development. With regards to this conception, day 1-2 last instar larvae were treated with 20-HE and drastic induction of the Lp receptor was observed 48 It after treatment. It was also observed that cholesterol caused an induction of the Lp receptor. (C) 2003 Elsevier Ltd. All rights reserved.

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