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A vertebrate-like blood--brain barrier, with intraganglionic blood channels and occluding junctions, in the scorpion.

India ink and ionic lanthanum injections have revealed that the central nervous system (CNS) of the scorpion possesses a highly vascularized cephalothoracic ganglionic mass. It, together with other abdominal ganglia which form a ventral nerve cord, are all ensheathed by an outer layer of modified glial, or perineurial, cells. These cells resemble those which line the blood channels permeating the CNS, in exhibiting both inverted gap and tight junctions. Although the latter show close or fused membrane appositions, lanthanum appears to penetrate past a number, but not all, of them. Freeze-fracturing reveals that these junctions are composed of E-face particles aligned into a network of rows, or ridges, which are frequently discontinuous, especially near the periphery of the perineurium. This produces a somewhat 'leaky' system but occlusion to tracers occurs ultimately, for in the CNS none can be found beyond the perineurium. The existence of this perineurial blood-brain barrier is also demonstrable electrophysiologically where cations such as Mg2+ are unable to penetrate beyond the perineurial layer although they can, it seems, leak in via the blood vascular system. Relative differences in tightness between the perineurium and the cells lining the blood channels may be attributed to differences in the relative number of discontinuous ridges. This is borne out by the observation that the peripheral nervous system has a highly attenuated perineurium with many fewer junctions, and some of these nerves tend to be leaky with respect to tracer penetration. In fixed material the junctional ridges may fracture on to the E-face or partly on both the EF and PF, while in unfixed tissue they are usually found on the PF. In both cases they exhibit complementary grooves that are coincident with the ridges across membrane transitions; in such cases the cell membranes are fused with concomitant obliteration of the intercellular space. These tight junctions, often closely associated with EF gap junctional particle aggregates which may be very loosely clustered, appear to form the basis of the observed blood-brain barrier in the scorpion CNS.

Animals↗

Effect of purified scorpion toxin (tityustoxin) on the pancreatic secretion of the rat.

Intravenous injection, in anesthetized rats, of a single dose of purified scorpion toxin (tityustoxin, TsTX), obtained from the venom of the Brazilian scorpion Tityus serrulatus, causes a striking increase in flow rate, protein content, kallikrein and amylase activities of the pancreatic juice. The flow rate and protein content of the juice remain significantly higher than in control rats, for at least one hour, whereas the kallikrein activity returns to control values 30 min after tityustoxin injection. Sub-diaphragmatic bilateral vagotomy does not prevent the pancreatic secretion induced by tityustoxin; moreover, vagotomy potentiates the flow rate and kallikrein secretion produced by the toxin. Pre-treatment of the rats with atropine blocks the pancreatic secretion evoked by tityustoxin. It is suggested that the pancreatic secretion induced by tityustoxin is due to actions of acetylcholine, released from postganglionic nerve fibers, on muscarinic receptors. The mechanism by which vagotomy potentiates the pancreatic secretion evoked by tityustoxin is under investigation.

Acetylcholine↗

Teratogenicity in the rat of the venom from the scorpion Androctonus amoreuxi (Aud. & Sav.).

A. amoreuxi venom caused a high foetal resorption rate in rats, particularly when injected on days 9-11 of gestation. Vertebral and ossification defects and foetal weight loss were observed in many of the viable foetuses obtained from mothers treated with scorpion venom. Treatment of the rats with phentolamine in addition to the venom significantly reduced the venom-induced hyperglycemia. It also conferred some protection against foetal resorption but had only a slight effect on chondrification or foetal weight loss. This shows that hyperglycemia might be responsible for foetal mortality, but alone is not a decisive factor in the effect of the venom on the chondrification process. Treatment of the rats with triamterene reduced the foetal resorption rate and significantly decreased the effects of the venom on chondrification. However, marked stippling was observed in the long bones and was ascribed to marked mobilization of ionized calcium in the foetus. Foetuses removed from rats treated with phentolamine or triamterene in addition to the venom, however, showed flattened and depressed skulls, possibly from a missing 1st cervical vertebra or failure of the occipital fontanel to close. Treatment of the rats with the scorpion venom over a longer period of time and starting at an earlier time of gestation (days 7-14) caused total foetal resorption, which may be due to inhibition of histamine formation by the venom. The teratogenic effect of the venom appears to be the result of its metabolic effect and action on body electrolytes of the maternal animal, rather than to a direct effect on the foetuses. This was evidenced from experiments with labelled venom, where only a small fraction (0.08-0.33%) was detected in foetuses or placenta.

Abnormalities, Drug-Induced↗

Covalent structure of toxins I and II from the scorpion Buthus occitanus tunetanus.

The amino acid sequences of neurotoxins I and II, which are active on mammals, purified from the venom of Buthus occitanus tunetanus have been determined using standard methods, including mainly automatic phenylisothiocyanate degradation of S-carboxymethylated derivatives of the two proteins and peptides derived by enzymatic hydrolyses. Both toxins are made of sixty-five amino acid residues cross-linked with four disulfide bridges. For toxin II, the complete covalent structure, including the positions of the four disulfide bridges was determined: the positions are similar to those previously found in toxin II of another scorpion from Africa, Androctonus australis Hector. This finding is in favor of a similar structure for all of the scorpion neurotoxins active on mammals.

Amino Acid Sequence↗

Purification and amino acid sequence of toxin I" from the venom of the North African scorpion Androctonus australis Hector.

When a large quantity of the venom of the scorpion Androctonus australis Hector is submitted to a purification procedure it is possible to purify a new toxin, toxin I", which is lethal to mouse, and present in very low quantities. The yield is 0.04%. The amino acid sequence of this newly discovered toxin only differs from toxin I of the same scorpion by an extra arginine residue at the C-terminal end provided that the sequence of toxin I, at positions 34 and 35, is in agreement with newer information provided in this paper.

Amino Acid Sequence↗

Characterization of ten proteins from the venom of the Moroccan scorpion Androctonus mauretanicus mauretanicus, six of which are toxic to the mouse.

When the venom of the scorpion Androctonus mauretanicus mauretanicus was submitted to purification procedures, ten proteins were obtained; six were lethal to mice and four were devoid of toxicity in the biological tests used. The ten molecules were characterized by their amino acid composition, and among them toxin V and polypeptide P2 by their amino acid sequences. Peptide P2 (35 amino acid residues), a structural homologue of the so called Buthus epeus short 'insectotoxins' I1 and I5, was inactive on fly larvae and absent from the 'manual venom' obtained by manual handling and excitation of the scorpions.

Amino Acid Sequence↗

Use of high performance liquid chromatography to demonstrate quantitative variation in components of venom from the scorpion Androctonus australis Hector.

Using reverse-phase high performance liquid chromatography (RP-HPLC), to resolve less than 1 mg of scorpion venom, quantitative variations in protein components were demonstrated in Androctonus australis Hector venoms obtained either by electric or manual stimulation. The results support polymorphism of scorpion venom components at an individual level.

Animals↗

Preparation of a polyvalent antivenom against various Mexican scorpion Centruroides species.

Antisera were obtained from rabbits injected with four different immunogens from the Mexican scorpion Centruroides suffusus suffusus i.e. the crude venom, a telson extract, a toxic fraction obtained from this telson extract by gel filtration and the same toxic fraction subjected to acetylation. The neutralizing capacity of these antisera are compared: it appears that a telson extract can be used instead of the crude venom to produce an efficient antiserum. The immunological properties of ground telsons obtained from three other species of the Mexican scorpion Centruroides (Centruroides noxius, Centruroides limpidus limpidus, Centruroides limpidus tecomanus) are studied with the antisera raised against Centruroides suffusus suffusus immunogens: an almost total cross-neutralization is observed.

Animals↗

Analysis by high-performance liquid chromatography of Androctonus mauretanicus mauretanicus (black scorpion) venom.

The venom of the black scorpion, Androctonus mauretanicus mauretanicus, was obtained by means of manual stimulation and was analyzed using high-performance liquid chromatography. Starting from 20 mg of venom and using only two chromatographic steps, six toxins were purified to homogeneity. They have been characterized by their amino acid content and compared to those already isolated from a pool of venoms obtained using electric stimulation (Rosso and Rochat, Toxicon 23, 113-125, 1985). The toxins Amm I and Amm II were not found, suggesting either different levels of toxin expression or the existence of Androctonus mauretanicus mauretanicus subspecies. Using rat brain synaptosomes, it was demonstrated that the toxins Amm III, Amm IV and Amm V were alpha-toxins. The toxin Amm VI was neither alpha- or beta-toxin. Unexpectedly, the toxin Amm VII was found to be a beta-toxin, the first one identified in a north African scorpion venom. In addition, some toxins active on mammals exhibited different levels of specificity towards phylogenetically related groups of arthropods.

Amino Acids↗

Acute gastric mucosal injury induced by toxins from Tityus serrulatus scorpion venom: a novel experimental model in the rat.

The effect of a partially purified fraction (T1) and toxin gamma purified from Tityus serrulatus scorpion venom, on gastric mucosa were investigated in anesthetized rats. The animals were injected i.v. with the T1 fraction (37.5 micrograms/100 g) or with saline and 60 min later were sacrificed and the stomachs resected. The gastric juice was measured and stereoscopic examination of the stomachs made. In animals injected with the T1 fraction there was an increase in volume, acidity and pepsin output of rat stomach. The T1 fraction also induced acute gastric injuries in the glandular mucosa, consisting of circular or linear ulcers, and punctiform lesions. Intravenous injection of 20 micrograms/100 g of a pure toxin obtained from Tityus serrulatus scorpion venom (toxin gamma) also induced similar lesions in the rat stomach. Our data indicate that the injection of T1 fraction or toxin gamma are good models to induce acute gastric ulcers in a short period of time in anesthetized rats.

Animals↗

Nucleotide sequence and structure analysis of a cDNA encoding an alpha insect toxin from the scorpion Leiurus quinquestriatus hebraeus.

A approximately 370 base pair cDNA encoding the alpha insect toxin Lqh alpha IT of the scorpion Leiurus quinquestriatus hebraeus was cloned and sequenced. The deduced amino acid sequence for the putative mature polypeptide is identical to the protein sequence determined chemically (Eitan et al., Biochemistry 29, 5941, 1990). A 19 amino acid signal peptide precedes the 64 amino acid long toxin. Two additional amino acid residues that do not correspond to the purified toxin are found at the COOH-terminus and may imply post-translational modification. The signal peptide region in the present clone differs obviously from that encoding the depressant insect toxin LqhIT2 derived from the same venom, but strongly resembles the leader peptide sequence of an alpha-mammal toxin from the scorpion Androctonus australis.

Amino Acid Sequence↗

The cDNA sequence of a depressant insect selective neurotoxin from the scorpion Buthotus judaicus.

A 400 nucleotide cDNA clone encoding the depressant insect toxin of the scorpion Buthotus judaicus (BjIT2), was isolated. DNA sequence analysis suggests that the toxin is a processed product of a precursor composed of: (1) a 21 amino acid residue signal peptide; (2) a 61 amino acid region of the mature toxin; and (3) an additional Arg-Lys-Lys tail at the carboxy terminus prior to a termination codon. Comparison between the precursor polypeptides of BjIT2 and another depressant insect toxin derived from the scorpion Leiurus quinquestriatus hebraeus (LqhIT2) shows similarities in their hydropathic profiles.

Amino Acid Sequence↗

Heparin or a PAF antagonist (BN-52021) prevents the acute pulmonary edema induced by Tityus serrulatus scorpion venom in the rat.

Experiments were performed in pentobarbital-anesthetized rats, to study the mechanism of the acute pulmonary edema induced by Tityus serrulatus scorpion venom. In control rats injection of venom (50 micrograms/100 g, i.v.) induced arterial hypertension and lung edema (lung/body index or LBI equal to 1.01 +/- 0.09). In rats pretreated with heparin (100 IU/100 g 30 min previously) the venom induced similar hypertensive effects, but no edema was detected (LBI = 0.63 +/- 0.06, P > 0.05). Similarly, in rats pretreated with the PAF antagonist BN-52021 (0.5 mg/100 g, i.v., 30 min previously), the venom-induced hypertension was not modified but the acute pulmonary edema was prevented (LBI = 0.67 +/- 0.08, P > 0.05). It is concluded that PAF plays an important role on the genesis of pulmonary edema induced by scorpion venom in the rat. It is suggested that the inhibitory action of heparin could be related to a decrease in the vascular permeability in the lungs.

Animals↗

The black scorpion Heterometrus longimanus: pharmacological and biochemical investigation of the venom.

Documentation on the biological activity (including the lethality) of the venom (BSV) from the black scorpion Heterometrus longimanus is lacking. We have investigated the effects of BSV on adrenergic transmission using the rat isolated anococcygeus muscle (Acm), since the venom from several species of scorpions causes peripheral sympathetic nerve stimulation with enhanced adrenergic responses. The catecholamine content in BSV was also measured by HPLC. The effects of phentolamine (5 microM), guanethidine (5 microM), desipramine (1.5 microM), tetrodotoxin (2 microM) and reserpine pretreatment in vivo (5 mg/kg s.c. x 24 hr and 5 mg/kg i.p. x 3 hr) on contractile responses of the rat Acm to field stimulation, crude BSV (2-10 microliters in 6 ml bath), noradrenaline (3 microM), tyramine (10-15 microM), carbachol (2-3 microM) and potassium chloride (50-75 mM) were investigated. BSV mimicked the agonist actions of noradrenaline (NA) by acting directly on postjunctional alpha-adrenoceptors in the anococcygeus muscle. The LD50 of crude BSV injected i.v. into mice was 0.13 ml per kg mouse. Sequential ultrafiltration of the crude BSV revealed the presence of a substance of low mol. wt which mediates the postjunctional alpha-agonist actions of BSV. HPLC measurements confirmed the presence of noradrenaline (NA; mean concentration of 1.8 +/- 0.3 mM) in BSV; the dopamine concentration (mean of 31 +/- 4 microM) was 60-fold lower than that of NA, whereas adrenaline was not detected in all the 15 samples investigated. Thus, the presence of NA in BSV can account for the postjunctional alpha-agonist actions of the venom in the Acm.

Animals↗

Cardiovascular effects of Buthus martensii (Karsch) scorpion venom.

Buthus martensii (Karsch) (BMK) scorpion envenomation is a common medical problem in China and BMK scorpion has been widely used in traditional Chinese medicine. However, the cardiovascular effects of this venom have not been systematically investigated. In the present study, i.v. BMK venom injection significantly increased the blood pressure in conscious rats in a concentration-dependent manner (ED50 = 59 +/- 12 micrograms/kg). The increase in blood pressure occurred within 1 min of injection of the venom and was sustained for more than 50 min. Heart rate was not changed by the venom in conscious rats. In vitro studies with BMK venom revealed the increase in the force of contraction, without modification of the contraction frequency (within 20 min) of isolated atrial strips. Contractions of isolated arterial strips from aorta, renal and vertebral arteries were also enhanced by BMK venom with a time lag of 8 min between the application of the venom and the initiation of the contraction. Furthermore, BMK venom-induced rises in blood pressure in vivo and increased contraction of isolated vessel strips were inhibited by prazosin and tolazoline, respectively, two alpha 1-adrenergic antagonists. BMK venom alone did not alter intracellular calcium concentrations, [Ca2+]i, in cultured vascular smooth muscle cells and endothelial cells. However, BMK venom significantly increased the metabolism of InsP3 in dispersed cardiac myocytes, indicating a direct effect on cardiac myocytes. These results demonstrate the significant cardiovascular effects of BMK venom, which may be mediated by an alteration in InsP3 in cardiac myocytes but not by [Ca2+]i in vascular smooth muscle cells.

Animals↗

Involvement of the L-arginine-nitric oxide synthase pathway in the relaxant responses of the rat isolated anococcygeus muscle to a scorpion (Leiurus quinquestriatus quinquestriatus) venom.

Venom from several species of scorpions can cause generalized depolarization of peripheral nerves with enhancement of neurotransmitter release. The effects of the venom (LQV) from the scorpion Leiurus quinquestriatus quinquestriatus were investigated using the rat isolated carbachol (CCh) precontracted anococcygeus muscle (Acm) mounted in Krebs solution containing phentolamine (5 microM). LQV (0.2 microgram/ml and 1.5 micrograms/ml) markedly relaxed the tone of the CCh precontracted (non-stimulated) Acm by 31.5 +/- 5.1% and 35.5 +/- 4.7%, respectively; the onset was immediate after the high dose, followed by a slow and gradual return of the muscle tone to 88.7 +/- 1.8% of the initial peak tension in 50.2 +/- 4 min. Subsequent doses of LQV produced essentially no appreciable changes in muscle tone, but the addition of L-arginine (250 microM) or, especially sodium nitroprusside (SNP; 1 microM) produced marked and rapid relaxations of the Acm. Similar results were obtained with LQV during electrical field stimulation (EFS) of the precotracted Acm; however, during the gradual return of the muscle tone from the relaxed state induced by LQV, the EFS-induced relaxant (NANC) responses were also progressively inhibited by 84.9 +/- 3.4% and 64.3 +/- 4.5 by LQV 0.2 microgram/ml and 1.5 micrograms/ml, respectively. Tetrodotoxin (TTx; 2 microM) or NG-nitro-L-arginine methylester (L-NAME; 50 microM) markedly inhibited the relaxant responses of the Acm to EFS as well as to LQV but not the responses to SNP: L-arginine (250 microM) partially restored the relaxant (NANC) responses of the Acm to EFS. Thus, the L-arginie-nitric oxide synthase-nitric oxide pathway is involved in mediating the marked relaxant responses of the CCh precontracted Acm to LQO.

Animals↗

Immunochemistry of scorpion alpha-toxins: purification and characterization of two functionally independent IgG populations raised against toxin II of Androctonus australis Hector.

We report the isolation and characterization of two IgG populations specific to two synthetic peptides corresponding to two antigenic sites of toxin II of the North African scorpion Androctonus australis Hector. Firstly, thanks to the use of: (1) antigenic homology studies between toxin II of A. australis Hector and toxin III of Buthus occitanus tunetanus, (2) chemical modification of toxin II of A. australis Hector, and (3) prediction of the localization of the four major antigenic sites of scorpion alpha-toxins by the method developed by Hopp and Woods [Proc. natn. Acad. Sci. U.S.A. 78, 3824-3828 (1981)], we have established that the region around the disulfide bridge between cysteines 12 and 63 as well as the stretch of residues 50-59 probably each enclosed an antigenic site. Secondly, the synthetic replicates of these regions linked to Sepharose allowed us to isolate, by immunoaffinity chromatography, two IgG populations from the whole anti-toxin II of A. australis Hector IgGs. Finally, each of these two IgG populations was shown to be specific to one antigenic site as evidenced by the multideterminant effect on the slopes of binding curves developed by Berzofsky et al. [Biochemistry 15, 2113-2121 (1976)]. Furthermore, these two IgG populations were found to be functionally independent and this could be related to the fact that the two regions carrying the two antigenic sites are not close to each other in space and that there is neither steric hindrance nor cooperative effects between them. The association constant of these site-specific IgG populations was calculated and found to be equal to 1.18-5.14 X 10(9) l/mole for IgG anti-site 1 and 1.16-5.62 X 10(9) l/mole for IgG anti-site 2 respectively by Sips [J. chem. Phys. 16, 490-495 (1948)], Scatchard [Am. N.Y. Acad. Sci. 51, 660-772 (1949)] and Steward and Petty [Immunology 23, 881-887 (1972)] representations. The index of heterogeneity of 0.9 for anti-P1 and anti-P2 indicates the purification of essentially homogeneous affinity IgG populations.

Amino Acid Sequence↗

The antigenic structure of a scorpion toxin.

Scorpion toxins constitute a family of homologous proteins that exert potent pharmacological effects on ion channels. These proteins are immunogenic and constitute a good model for investigation of the molecular basis of antigenicity. In the first part of this article we summarize the results we have obtained in recent years concerning the location of the main antigenic regions of a model toxin, toxin II of the North African scorpion Androctonus australis Hector. Then, thanks to the recently available atomic coordinates of this toxin, we analyzed the relationships between the structural features of the protein and the location of the antigenic regions: we found that antigenic regions are located at exposed parts of the molecular surface, i.e. in reverse turns and the alpha-helix. These surface parts also correspond to segments of the polypeptide chain which are most accessible to a large spherical probe modelizing an antibody molecule. Finally, we obtained a general idea of what could be the main discontinuous antigenic determinants by looking for the neighboring relationships between the most exposed residues of the protein.

Animals↗