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At least 343 records · Page 19Linked to original sources

Chemical synthesis of a 7 kDa insect gonadotropic neurohormone.

An original insect neurohormone of 65 residues was synthesized by the solid-phase methodology using t-Boc strategy and Boc-Val-PAM-resin. The purification, conducted by several steps of liquid chromatography having mass, polarity or charge as separative criteria, yielded the product with the correct molecular weight of 6922 Da determined by mass spectrometry. The synthetic peptide had both the same affinity for the anti-native neurohormone serum and the same biological activity as the native neurohormone.

Amino Acid Sequence↗

Insect immunity: the diptericin promoter contains multiple functional regulatory sequences homologous to mammalian acute-phase response elements.

We are using the diptericin gene as a model system to study the control of expression of the genes encoding antibacterial peptides during the Drosophila immune reaction. In order to investigate the putative regulatory regions in the diptericin promoter, we performed DNaseI footprinting experiments combined with gel-shift assays in two inducible systems: the larval fat body and a tumorous Drosophila blood cell line. Our results confirm the importance of kappa B-like elements previously described in the immune response of insects and reveal for the first time the involvement of other regions containing sequences homologous to mammalian acute-phase response elements.

Acute-Phase Proteins↗

Induction of cecropin-like and attacin-like antibacterial but not antiviral activity in Heliothis virescens larvae.

Inducible cecropin-like and attacin-like proteins were isolated from immune hemolymph obtained from vaccinated Heliothis virescens larvae. The attacin-like protein had a molecular weight of approximately 25,000 daltons and was not dialyzable. The cecropin-like peptide had an estimated molecular weight of 6,000-7,000 daltons and was dialyzable, heat-stable and sensitive to trypsin digestion. The cecropin-like peptide showed bactericidal activity against Escherichia coli and Enterobacter cloacae, and the attacin-like protein showed bactericidal activity against E. coli. The immune hemolymph was bactericidal against E. coli, E. cloacae and Pseudomonas aeruginosa. Ultrastructural cell envelope damage to E. coli, produced by the immune hemolymph, was observed by scanning electron microscopy. No antiviral activity by the inducible cecropin-like and attacin-like proteins was detected against herpes simplex virus-1 and the vesicular stomatitis virus.

Animals↗

The relationship between size of a presecretory protein and extent of signal-recognition-particle-mediated arrest of its translation.

Small eukaryotic presecretory proteins, such as preprocecropinA, prepromelittin, and prepropeptideGLa, are transported into mammalian microsomes both with the aid of ribosome and signal recognition particle (SRP) and independently of these ribonucleoprotein particles. Typically, synthetic extensions of these precursor proteins show the phenotype of naturally occurring large presecretory proteins. However, it was shown that small truncated forms of naturally occurring large presecretory proteins are not transport competent or transport competent only in the presence of the two ribonucleoprotein particles. In order to directly address this apparent paradox, we studied the sensitivities of nascent polypeptide chains, related to preprocecropinA and prepromelittin, to SRP-mediated arrest of elongation and compared them with synthetic extensions of various length.

Animals↗

Maxadilan binds to membrane fractions of brain tissue.

Maxadilan is a potent vasodilator peptide isolated from salivary glands extracts of the hematophagous sand fly. Besides effects on the cutaneous vasculature, it has also been shown to relax rabbit aortic rings while elevating levels of cAMP. As a result of the effects on the skin and aorta, it was elected to undertake an examination of the tissue distribution of binding sites for maxadilan. In addition to specific binding in rabbit aorta and spleen, binding was detected in brain from various species including human, bovine, rabbit, rat and mouse with a kD of between 85 and 201 pM. Competitive displacement of [125I] maxadilan by a number of known vasoconstrictor peptides, vasodilator peptides and small molecule receptor ligands did not occur in the rabbit brain preparation. These results suggest the presence of specific binding sites in mammalian tissue for maxadilan whose endogenous ligand remains unknown.

Animals↗

Nucleotide sequence of 5'-upstream region and expression of a silkworm gene encoding a new member of the attacin family.

A genomic clone encoding a new member of attacin, an insect antibacterial protein, was isolated from a genomic library of the silkworm, Bombyx mori, and the nucleotide sequence of the 5'-upstream region was determined. The region contained Bm 1, a highly repetitive element of B. mori and a lipopolysaccharide (LPS) response element (RE)(NF-kappaB binding site), CAAT box and TATA box. Northern blot analysis showed that the attacin gene expression was rapidly induced by bacterial cell wall components such as LPS from Escherichia coli and peptidoglycan (PG) from Micrococcus luteus, suggesting that attacin plays an important role in an early phase of the self-defense system upon bacterial infection.

Animals↗

Elicitors triggering the simultaneous gene expression of antibacterial proteins of the silkworm, Bombyx mori.

Various elicitors were examined by Northern blot analysis to investigate the simultaneous induction of gene expression of antibacterial proteins such as cecropin B, attacin and lebocin from the silkworm, Bombyx mori. Lipopolysaccharide (LPS), lipid A, 2-keto-3-deoxyoctonate (KDO) and peptidoglycan (PG) triggered efficiently and simultaneously the gene expression of antibacterial proteins. Effects of inhibitors for signal transduction on the gene expression of Bombyx mori (Bm) cecropin B triggered by lipid A were observed using isolated adherent hemocytes consisting of granular cells and plasma cells. H-7, H-89 but not W-7 inhibited gene expression, suggesting that protein kinase C and A but not myosine light chain kinase may participate in signal transduction.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

In vitro phagocytosis of Escherichia coli and release of lipopolysaccharide by adhering hemocytes of the silkworm, Bombyx mori.

A primary culture containing adhering hemocytes mainly granular cells from the silkworm, Bombyx mori, was used to investigate in vitro phagocytosis of Escherichia coli. Phagocytosis was confirmed to occur in this system by microscopic observation. Lipopolysaccharide (LPS) concentration in the culture medium was measured by a Limulus test and a higher LPS concentration was detected in phagocytosis-occurred samples than in control samples, which omitted either E. coli cells or adhering hemocytes. Moreover, it was found that LPS containing sample but not control samples strongly induces gene expression of cecropin B, an antibacterial protein. These results suggest that bacterial cell wall components like LPS released by phagocytosis play an important role in the induction of insect antibacterial proteins.

Animals↗

Molecular cloning and genomic organization of a second probable allatostatin receptor from Drosophila melanogaster.

We (C. Lenz et al. (2000) Biochem. Biophys. Res. Commun. 269, 91-96) and others (N. Birgül et al. (1999) EMBO J. 18, 5892-5900) have recently cloned a Drosophila receptor that was structurally related to the mammalian galanin receptors, but turned out to be a receptor for a Drosophila peptide belonging to the insect allatostatin neuropeptide family. In the present paper, we screened the Berkeley "Drosophila Genome Project" database with "electronic probes" corresponding to the conserved regions of the four rat (delta, kappa, mu, nociceptin/orphanin FQ) opioid receptors. This yielded alignment with a Drosophila genomic database clone that contained a DNA sequence coding for a protein having, again, structural similarities with the rat galanin receptors. Using PCR with primers coding for the presumed exons of this second Drosophila receptor gene, 5'- and 3'-RACE, and Drosophila cDNA as template, we subsequently cloned the cDNA of this receptor. The receptor cDNA codes for a protein that is strongly related to the first Drosophila receptor (60% amino acid sequence identity in the transmembrane region; 47% identity in the overall sequence) and that is, therefore, most likely to be a second Drosophila allatostatin receptor (named DAR-2). The DAR-2 gene has three introns and four exons. Two of these introns coincide with two introns in the first Drosophila receptor (DAR-1) gene, and have the same intron phasing, showing that the two receptor genes are clearly evolutionarily related. The DAR-2 gene is located at the right arm of the third chromosome, position 98 D-E. This is the first report on the existence of two different allatostatin receptors in an animal.

Amino Acid Sequence↗

Protein kinase D is sufficient to suppress EGF-induced c-Jun Ser 63 phosphorylation.

Phosphorylation of c-Jun at Ser 63/73 by the c-Jun N-terminal kinase (JNK) potentiates the transactivation function of c-Jun. Protein kinase D (PKD), a downstream effector of protein kinase C (PKC), has been implicated in the attenuation of epidermal growth factor (EGF)-induced activation of JNK. In order to determine whether activated PKD is sufficient to modulate the EGF-JNK-c-Jun pathway, we have developed a cellular model system, utilizing human embryonic kidney cells (HEK 293), in which stably transfected, constitutively active or kinase dead mutants of PKD can be inducibly expressed by the insect hormone, ecdysone. Induced expression of constitutively active, but not kinase dead PKD, suppressed EGF stimulated c-Jun phosphorylation at Ser 63, demonstrating that activated PKD is sufficient to suppress c-Jun phosphorylation. This is the first demonstration that PKD modulates phosphorylation of the proto-oncogene c-Jun at a site critical for its ability to mediate cell proliferation and differentiation.

Animals↗

RNA interference demonstrates a role for nautilus in the myogenic conversion of Schneider cells by daughterless.

Schneider SL2 cells activate the myogenic program in response to the ectopic expression of daughterless alone, as indicated by exit from the cell cycle, syncytia formation, and the presence of muscle myosin fibrils. Myogenic conversion can be potentiated by the coexpression of DMEF2 and nautilus with daughterless. In RT-PCR assays Schneider cells express two mesodermal markers, nautilus and DMEF2 mRNAs, as well as very low levels of daughterless mRNA but no twist. Full-length RT-PCR products for nautilus and DMEF2 encode immunoprecipitable proteins. We used RNA-i to demonstrate that both endogenous nautilus expression and DMEF2 expression are required for the myogenic conversion of Schneider cells by daughterless. Coexpression of twist blocks conversion by daughterless but twist dsRNA has no effect. Our results indicate that Schneider cells are of mesodermal origin and that myogenic conversion with ectopic expression of daughterless occurs by raising the levels of daughterless protein sufficiently to allow the formation of nautilus/daughterless heterodimers. The effectiveness of RNA-i is dependent upon protein half-life. Genes encoding proteins with relatively short half-lives (10 h), such as nautilus or HSF, are efficiently silenced, whereas more stable proteins, such as cytoplasmic actin or beta-galactosidase, are less amenable to the application of RNA-i. These results support the conclusion that nautilus is a myogenic factor in Drosophila tissue culture cells with a functional role similar to that of vertebrate MyoD. This is discussed with regard to the in vivo functions of nautilus.

Animals↗

The Drosophila melanogaster X-linked mfs(1)6E locus is required for production of normal seminal fluid by the male accessory glands.

The Drosophila male accessory glands (paragonias) are two male-specific organs that produce seminal fluid, a secretion involved in sperm storage and subsequent sperm utilization by the female. This paper reports the first X-linked locus, male-female-sterile in region 6E [mfs(1)6E], required for the production of normal seminal fluid. Mutant males produce motile spermatozoa, which are transferred to females during mating, but which are not stored. Sterility of these males is mainly due to severe affected transfer of seminal fluid to females during mating. In addition, the mutant seminal fluid seems defective in triggering the behavioral (reduced receptivity to further mating) and physiological (increased egg-laying) changes normally observed in mated females. Mutant male accessory glands show notable abnormalities, connected with glandular secretion as well as qualitative and quantitative differences in their protein content.

Animals↗

Brugia pahangi: the effects of cecropins on microfilariae in vitro and in Aedes aegypti.

Synthetic cecropins, antibacterial peptides from insect haemolymph, have been tested for their ability to attenuate the motility of microfilariae of the filarial nematode Brugia pahangi in an in vitro assay. Fifty micromolar concentrations of these peptides, equivalent to physiological concentrations in immune-stimulated insects, cause significant attenuation of motility compared with untreated microfilariae. Similar results were obtained with cecropins A and B. This is the lowest concentration for which cecropin has been reported to be active against eukaryote organisms. Antiserum to the cecropin homologue sarcotoxin 1A successfully blocked the observed activity. When the same concentration of cecropin B was coinjected with B. pahangi microfilariae into adult females of the mosquito, Aedes aegypti, a significant reduction in the numbers of developing larvae was observed.

Aedes↗

Analysis of mosquito vitellogenin cDNA. Similarity with vertebrate phosvitins and arthropod serum proteins.

The cDNA coding for vitellogenin of the mosquito Aedes aegypti was cloned and sequenced. An immunological analysis of expressed deletions from the 5'-end of the vitellogenin cDNA clones using vitellogenin subunit-specific antibodies showed that the small vitellogenin subunit is located at the N terminus and the large one at the carboxy-portion of the pre-provitellogenin. The position of the cleavage between the vitellogenin subunits in the pre-provitellogenin was identified by locating the N terminus of the large subunit. The cleavage site has a consensus RXRR for the subtilisin-processing endoprotease. Mosquito vitellogenin is highly hydrophilic with 17 putative N-linked glycosylation sites and 13 potential tyrosine sulfation sites. In contrast to known invertebrate vitellogenins, mosquito vitellogenin contains three polyserine domains that are similar to those of phosvitins in vertebrate vitellogenins. These polyserine domains, originally presumed to be vertebrate-specific, have several phosphorylation consensus sites in their sequences. Unlike other known vitellogenins, mosquito vitellogenin is rich in aromatic amino acid residues, tyrosine and phenylalanine, and in this respect is similar to insect serum proteins, arylphorins. This similarity suggests that mosquito vitellogenin may supply aromatic amino acids to the cuticle of rapidly developing embryos.

Aedes↗

Solution structure of PMP-C: a new fold in the group of small serine proteinase inhibitors.

The solution structure and the disulfide pairings of a 36-residue proteinase inhibitor isolated from the insect Locusta migratoria have been determined using NMR spectroscopy and simulated annealing calculations. The peptide, termed PMP-C, was previously shown to inhibit bovine alpha-chymotrypsin as well as human leukocyte elastase, and was also found to block high-voltage-activated Ca2+ currents in rat sensory neurones. PMP-C has a prolate ellipsoid shape and adopts a tertiary fold hitherto unobserved in the large group of small "canonical" proteinase inhibitors. The over-all fold consists mainly of three strands arranged in a right-handed twisted, antiparallel, beta-sheet that demarcates a cavity, together with a linear amino-terminal segment oriented almost perpendicular to the three strands of the beta-sheet. Inside the cavity a phenyl ring constitutes the centre of a hydrophobic core. The proteinase binding loop is located in the carboxy-terminal part of the molecule, between two cysteine residues involved in disulfide bridges. Its conformation resembles that found in other small canonical proteinase inhibitors. A comparison of PMP-C structure with the recently published solution structure of the related peptide PMP-D2 shows that the most significant differences are complementary changes involved in the stabilization of similar folds. This comparison led us to review the structure of PMP-D2 and to identify two salt bridges in PMP-D2.

Amino Acid Sequence↗

Phylogenetic relationship of silkmoths inferred from sequence data of the arylphorin gene.

A portion of the arylphorin gene from 11 silkmoth species belonging to the families Saturniidae and Bombycidae was amplified by a polymerase chain reaction. Approximately 460 bp corresponding to the third exon, the third intron, and the fourth exon were successfully amplified, sequenced, and compared. Sequences corresponding to the third and fourth exons were the most conserved, whereas sequences corresponding to the third intron were conserved only between species belonging to the same genus. We also analyzed differences of substitution rates among codon positions and between synonymous and nonsynonymous sites. Phylogenetic trees were constructed using the entire nucleotide sequences, the first and second codon positions, nonsynonymous sites, transversions, and the inferred amino acid sequences in the exons by the neighbor-joining method. These trees supported the monophyly of the families Saturniidae and Bombycidae as well as the monophyly of the genera Actias, Bombyx, Antheraea, and Samia.

Amino Acid Sequence↗

Metabolic fates of herbicides in animals.

Many general aspects of the subjects were covered by the two previous reviews. Important recent changes in handling harvested cereal grains include more bulk transportation--particularly containerisation,processing closer to the site of production, resistance topesticides in many granivorous insects and the alarmingly unpredictable cross-resistance spectra in some sppecies, and a hardening in the attitude of governments and the food industry to the use of pesticides. Pesticide manufacturers arecurrently restricting their involvement in the stored grain area. The market is small and unpredictable due to crossresistance. However, a number of interesting and potentially useful compounds have appeared, notable )(bio) resmethrin, pirimiphos-methyl, andDursban-methyl, which reflect attempts to provide somewhat morepersistent compounds under adverse storage conditionnnnns than ismalathion--currently the most widely-used control agent.Inevitably, there is interest also in alternative methods, of control, from the obvious physical methods (drying, cooling, air-tight storage)to use of pheromones, insect hormone anaogues, and larvicides, all of which may have some future potential...

Amides↗