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Derivatives of the insect moulting hormone for affinity chromatography, and their biological activities.

Several derivatives of the arthropod moulting hormone have been synthesized which were coupled to AH Sepharose 4B yielding about 2 mumole ligand per g wet gel. As an indication of the suitability of the ligands for biological work the puff inducing capacity of their methyl esters was tested. The methyl ester of inokosterone-C-26-carboxylic acid possesses the highest biological activity; lower activities were obtained with the esters of ecdysterone-C-6-CM-oxime and ecdysterone hemisuccinates. Therefore, inokosterone-C-26-carbocylic acid should be a useful ligand for affinity chromatography of ecdysone recptors from insect tissues.

Cholestenes↗

Inhibition of insect juvenile hormone epoxide hydrolase: asymmetric synthesis and assay of glycidol-ester and epoxy-ester inhibitors of trichoplusia ni epoxide hydrolase.

Juvenile hormone (JH) undergoes metabolic degradation by two major pathways involving JH esterase and JH epoxide hydrolase (EH). While considerable effort has been focussed on the study of JH esterase and the development of inhibitors for this enzyme, much less has been reported on the study of JH-EH. In this work, the asymmetric synthesis of two classes of inhibitors of recombinant JH-EH from Trichoplusia ni, a glycidol-ester series and an epoxy-ester series is reported. The most effective glycidol-ester inhibitor, compound 1, exhibited an I(50) of 1.2x10(-8) M, and the most effective epoxy-ester inhibitor, compound 11, exhibited an I(50) of 9.4x10(-8) M. The potency of the inhibitors was found to be dependent on the absolute configuration of the epoxide. In both series of inhibitors, the C-10 R-configuration was found to be significantly more potent that the corresponding C-10 S-configuration. A mechanism for epoxide hydration catalyzed by insect EH is also presented.

Animals↗

[Expression of human follicle stimulating hormone in insect cells].

To study the expression of hFSH in insect cells, the cDNA encoding the hFSH beta chain was cloned by overlapping-PCR using human chromosome DNA extracted from placental tissue as template. Then we constructed expression vector pVL1393/hFSH beta using an unfused protein nuclear polyhedrosis virus (AcNPV) expression vector. The insect cells (SF9) were cotransfected with the expression vector and nuclear polyhedrosis linearized virus DNA, and recombinant viruses AcNPV-hFSH beta were collected. The beta subunit of hFSH expressed in plasma of the SF9 cells was detected by Western blot analysis, and showed apparent molecular masses of 21 kDa. After coinfecting SF9 cells with recombinant viruses AcNPV-hFSH beta and AcNPV-hCG alpha, secreted heterodimer of hFSH was detected by Western blot under non-reducing conditions. The apparent molecular weight of heterodimer was about 33 kDa.

Animals↗

Cucurbitacins are insect steroid hormone antagonists acting at the ecdysteroid receptor.

Two triterpenoids, cucurbitacins B and D, have been isolated from seeds of Iberis umbellata (Cruciferae) and shown to be responsible for the antagonistic activity of a methanolic extract of this species in preventing the 20-hydroxyecdysone (20E)-induced morphological changes in the Drosophila melanogaster BII permanent cell line. With a 20E concentration of 50 nM, cucurbitacins B and D give 50% responses at 1.5 and 10 microM respectively. Both cucurbitacins are able to displace specifically bound radiolabelled 25-deoxy-20-hydroxyecdysone (ponasterone A) from a cell-free preparation of the BII cells containing ecdysteroid receptors. The Kd values for cucurbitacins B and D (5 and 50 microM respectively) are similar to the concentrations required to antagonize 20E activity with whole cells. Cucurbitacin B (cucB) prevents stimulation by 20E of an ecdysteroid-responsive reporter gene in a transfection assay. CucB also prevents the formation of the Drosophila ecdysteroid receptor/Ultraspiracle/20E complex with the hsp27 ecdysteroid response element as demonstrated by gel-shift assay. This is therefore the first definitive evidence for the existence of antagonists acting at the ecdysteroid receptor. Preliminary structure/activity studies indicate the importance of the Delta23-22-oxo functional grouping in the side chain for antagonistic activity. Hexanorcucurbitacin D, which lacks carbon atoms C-22 to C-27, is found to be a weak agonist rather than an antagonist. Moreover, the side chain analogue 5-methylhex-3-en-2-one possesses weak antagonistic activity.

Animals↗

The HMG-CoA reductase inhibitor fluvastatin inhibits insect juvenile hormone biosynthesis.

Fluvastatin (Sandoz Compound XU 62-320), a synthetic HMG-CoA reductase inhibitor, was assayed in vitro and in vivo for its ability to suppress juvenile hormone (JH) biosynthesis by corpora allata of Locusta migratoria migratorioides. Fluvastatin inhibited JH biosynthesis by corpora allata in vitro. Exogenous mevalonic acid lactone restored JH biosynthesis in corpora allata inhibited by fluvastatin. Fluvastatin injected into locusts in vivo inhibited JH biosynthesis, but maximal inhibition lasted for only 6 hr. There were no discernible effects on either JH-regulated metamorphosis or oocyte maturation. Lengthening of the fourth larval stadium was observed and increased doses (single or repeated injections) were fatal.

Animals↗