Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 272
Filter
Add more filters

Country/Region as subject
Publication year range
1.
Anal Chem ; 96(26): 10791-10799, 2024 07 02.
Article in English | MEDLINE | ID: mdl-38914924

ABSTRACT

The analysis and detection of snake venom toxins are a matter of great importance in clinical diagnosis for fast treatment and the discovery of new pharmaceutical products. Current detection methods have high associated costs and require the use of sophisticated bioreceptors, which in some cases are difficult to obtain. Herein, we report the synthesis of template-based molecularly imprinted micromotors for dynamic detection of α-bungarotoxin as a model toxin present in the venom of many-banded krait (Bungarus multicinctus). The specific recognition sites are built-in in the micromotors by incubation of the membrane template with the target toxin, followed by a controlled electrodeposition of a poly(3,4-ethylenedioxythiophene)/poly(sodium 4-styrenesulfonate) polymeric layer, a magnetic Ni layer to promote magnetic guidance and facilitate washing steps, and a Pt layer for autonomous propulsion in the presence of hydrogen peroxide. The enhanced fluid mixing and autonomous propulsion increase the likelihood of interactions with the target analyte as compared with static counterparts, retaining the tetramethylrhodamine-labeled α-bungarotoxin on the micromotor surface with extremely fast dynamic sensor response (after just 20 s navigation) in only 3 µL of water, urine, or serum samples. The sensitivity achieved meets the clinically relevant concentration postsnakebite (from 0.1 to 100 µg/mL), illustrating the feasibility of the approach for practical applications. The selectivity of the protocol is very high, as illustrated by the absence of fluorescence in the micromotor surface in the presence of α-cobratoxin as a representative toxin with a size and structure similar to those of α-bungarotoxin. Recoveries higher than 95% are obtained in the analysis of urine- and serum-fortified samples. The new strategy holds considerable promise for fast, inexpensive, and even onsite detection of several toxins using multiple molecularly imprinted micromotors with tailored recognition abilities.


Subject(s)
Bungarotoxins , Bungarotoxins/chemistry , Bungarotoxins/urine , Animals , Polymers/chemistry , Snake Venoms/chemistry , Bungarus , Bridged Bicyclo Compounds, Heterocyclic/chemistry , Molecular Imprinting , Sulfonic Acids
2.
Arch Toxicol ; 98(2): 375-393, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38153416

ABSTRACT

Snakebite in India is a severe problem as it causes a mortality rate of 58,000 and a disability rate of 140,000 every year which is the highest among any other country. Antivenom is the primary therapy for snakebite, and its manufacturing techniques have essentially stayed unaltered for over a century. Indian polyvalent antivenom, a scientifically validated medicine for treating the toxic effects of snakebites, is available against the venom of the so-called Big Four snakes namely Spectacled cobra (Naja naja), Saw-scaled viper (Echis carinatus), Russell's viper (Daboia russelli) and the Common krait (Bungarus caeruleus), responsible for majority of the deaths in India. India hosts many other species of snakes, including cobras, kraits, saw-scaled vipers, sea snakes, and pit vipers, responsible for clinically severe envenomation. Neutralization strategy has been applied to access the efficacy of antivenoms, crucial for reducing snake bite deaths and disabilities. This review aims to conduct a systematic review and meta-analysis on the neutralization efficiency of the Polyvalent Antivenom (PAV) and focus on the factors that may contribute to the poor recognition of the antivenom towards the venom toxins. Reports focusing on the investigation of antivenom efficacy were searched and collected from several databases. Preclinical studies that reported the neutralization efficacy of the commercial antivenom against the medically important snakes of India were included. The articles were screened based on the inclusion criteria and 8 studies were shortlisted for meta-analysis. Pooled proportion was calculated for the antivenom efficacy reported by the studies and was found to be statistically significant with a 95% confidence interval. The heterogenicity in the venom toxicity and neutralization potency of the antivenom was evident in the overall estimate (proportion) and individual data. We provide comprehensive evidence on antivenom efficacy against medically important snakes from various parts of India which may aid in identifying the gaps in snake envenomation therapy and the need for novel potentially improved treatment of snakebites.


Subject(s)
Bungarus , Daboia , Echis , Snake Bites , Venomous Snakes , Animals , Antivenins/therapeutic use , Snake Bites/drug therapy , Clinical Relevance
3.
J Proteome Res ; 22(6): 1734-1746, 2023 06 02.
Article in English | MEDLINE | ID: mdl-37010854

ABSTRACT

In this study, we present high-throughput (HT) venomics, a novel analytical strategy capable of performing a full proteomic analysis of a snake venom within 3 days. This methodology comprises a combination of RP-HPLC-nanofractionation analytics, mass spectrometry analysis, automated in-solution tryptic digestion, and high-throughput proteomics. In-house written scripts were developed to process all the obtained proteomics data by first compiling all Mascot search results for a single venom into a single Excel sheet. Then, a second script plots each of the identified toxins in so-called Protein Score Chromatograms (PSCs). For this, for each toxin, identified protein scores are plotted on the y-axis versus retention times of adjacent series of wells in which a toxin was fractionated on the x-axis. These PSCs allow correlation with parallel acquired intact toxin MS data. This same script integrates the PSC peaks from these chromatograms for semiquantitation purposes. This new HT venomics strategy was performed on venoms from diverse medically important biting species; Calloselasma rhodostoma, Echis ocellatus, Naja pallida, Bothrops asper, Bungarus multicinctus, Crotalus atrox, Daboia russelii, Naja naja, Naja nigricollis, Naja mossambica, and Ophiophagus hannah. Our data suggest that high-throughput venomics represents a valuable new analytical tool for increasing the throughput by which we can define venom variation and should greatly aid in the future development of new snakebite treatments by defining toxin composition.


Subject(s)
Snake Bites , Viperidae , Animals , Proteomics/methods , Snake Venoms/chemistry , Bungarus/metabolism , Viperidae/metabolism , Elapid Venoms/chemistry
4.
Zhongguo Zhong Yao Za Zhi ; 48(22): 6234-6248, 2023 Nov.
Article in Zh | MEDLINE | ID: mdl-38114230

ABSTRACT

Bungarus Parvus, a precious animal Chinese medicinal material used in clinical practice, is believed to be first recorded in Ying Pian Xin Can published in 1936. This study was carried out to analyze the names, geographical distribution, morphological characteristics, ecological habits, poisonousness, and medicinal parts by consulting ancient Chinese medical books and local chronicles, Chinese Pharmacopeia, different processing standards of trditional Chinese medicine(TCM) decoction pieces, and modern literatures. The results showed that the earliest medicinal record of Bungarus Parvus was traced to 1894. In 1930, this medicinal material was used in the formulation of Annao Pills. The original animal, Bungarus multicinctus, was recorded by the name of "Bojijia" in 1521. The morphological characteristics, ecological habits, and poisonousness of the original animal are the same in ancient and modern records. The geographical distribution is similar between the ancient records and modern documents such as China Medicinal Animal Fauna. The dried body of young B. multicinctus is used as Bungarus Parvus, which lack detailed references. As a matter of fact, it is still inconclusive whether there are differences between young snakes and adult snakes in terms of active ingredients, pharmacological effects, and clinical applications. This study clarified the medicinal history and present situation of Bungarus Parvus. On the basis of the results, it is suggested that systematic comparison on young and adult B. multicinctus should be carried out to provide references for revising the medicinal parts of B. multicinctus.


Subject(s)
Bungarus , Drugs, Chinese Herbal , Animals , Snakes , China , Medicine, Chinese Traditional
5.
Forensic Sci Med Pathol ; 18(4): 497-502, 2022 12.
Article in English | MEDLINE | ID: mdl-36045276

ABSTRACT

Bungarus multicinctus (B. multicinctus) is one of the top ten venomous snakes in China, ranking first in lethality at 26.9-33.3%. However, to our knowledge, no forensic autopsy-related cases of death from B. multicinctus bite poisoning have been reported. There are surprisingly few reported cases of death from poisoning by other species of neurotoxic snakes. Neurotoxic snake venom is often highly toxic, and death can quickly occur when bitten in the wild if victims are not taken to a doctor in time. We presented a case of an adult female in Fujian Province of China who was bitten by a poisonous snake while digging for bamboo shoots in the mountains and died from the bite of B. multicinctus confirmed by enzyme-linked immunosorbent assays (ELISA) results. The autopsy's results, histopathological findings, and ELISA results reported here can be helpful for future forensic practice in B. multicinctus venom poisoning; we also briefly review the pathological changes of neurotoxin poisoning, which may be useful in other types of neurotoxin snake venom poisoning.


Subject(s)
Bungarus , Snake Bites , Humans , Adult , Animals , Female , Neurotoxins , Forensic Medicine , Autopsy
6.
Dokl Biochem Biophys ; 503(1): 98-103, 2022 Apr.
Article in English | MEDLINE | ID: mdl-35538287

ABSTRACT

To search for compounds with antiprotozoal activity, effects of snake venoms on the ciliates Tetrahymena pyriformis was studied. T. pyriformis from subkingdom of Protozoa, including the protozoal pathogens, was used as a model organism to select the venoms that are the most active against parasitic protozoans. Various concentrations of venoms were added to the cells, and the cells that survived after 24 h were counted. Among the six snake species from the Viperidae family, the venom of the viper Vipera berus, which completely killed the cells at 49 µg/mL, was the most active. Among four species from the Elapidae family, the previously studied cobra venoms containing cytotoxins with strong antiprotozoal activity as well as the venom of krait Bungarus multicinctus (10 µg/mL) were the most active. The venoms of the pit vipers and Nikolsky's viper did not show any activity at 12.5 mg/mL. Thus, the venoms of V. berus and B. multicinctus are promising for the isolation of new antiprotozoal compounds.


Subject(s)
Tetrahymena pyriformis , Viperidae , Animals , Bungarus , Elapid Venoms , Elapidae , Snake Venoms , Viper Venoms
7.
Expert Rev Proteomics ; 17(5): 411-423, 2020 05.
Article in English | MEDLINE | ID: mdl-32579411

ABSTRACT

INTRODUCTION: The 'Big Four' venomous snakes - Daboia russelii, Naja naja, Bungarus caeruleus, and Echis carinatus - are primarily responsible for the majority of snake envenomation in India. Several other lesser-known venomous snake species also inflict severe envenomation in the country. AREAS COVERED: A comprehensive analysis of the venom proteome composition of the 'Big Four' and other medically important venomous snakes of India and the effect of regional variation in venom composition on immunorecognition and/or neutralization by commercial antivenom was undertaken by searching the literature (from 1985 to date) available in large public databases. Further, mass spectrometric identification of poorly immunogenic toxins of snake venom (against which commercial polyvalent antivenom contains a significantly lower proportion of antibodies) and its impact on antivenom therapy against snakebite are discussed. The application of mass spectrometry to identify protein (toxin) complexes as well as drug prototypes from Indian snake venoms and the clinical importance of such studies are also highlighted. EXPERT OPINION: Further detailed clinical and proteomic research is warranted to better understand the effects of regional snake venom composition on the clinical manifestation of envenomation and antivenom therapy and to improve the production of antibodies against poorly immunogenic venom components.


Subject(s)
Antivenins/genetics , Proteome/genetics , Proteomics , Snake Bites/genetics , Animals , Bungarus/genetics , Elapid Venoms/chemistry , Elapid Venoms/genetics , India , Mass Spectrometry/trends , Naja naja/genetics , Snake Bites/prevention & control , Snakes/genetics , Viper Venoms/chemistry , Viper Venoms/genetics
8.
J Med Virol ; 92(4): 433-440, 2020 04.
Article in English | MEDLINE | ID: mdl-31967321

ABSTRACT

The current outbreak of viral pneumonia in the city of Wuhan, China, was caused by a novel coronavirus designated 2019-nCoV by the World Health Organization, as determined by sequencing the viral RNA genome. Many initial patients were exposed to wildlife animals at the Huanan seafood wholesale market, where poultry, snake, bats, and other farm animals were also sold. To investigate possible virus reservoir, we have carried out comprehensive sequence analysis and comparison in conjunction with relative synonymous codon usage (RSCU) bias among different animal species based on the 2019-nCoV sequence. Results obtained from our analyses suggest that the 2019-nCoV may appear to be a recombinant virus between the bat coronavirus and an origin-unknown coronavirus. The recombination may occurred within the viral spike glycoprotein, which recognizes a cell surface receptor. Additionally, our findings suggest that 2019-nCoV has most similar genetic information with bat coronovirus and most similar codon usage bias with snake. Taken together, our results suggest that homologous recombination may occur and contribute to the 2019-nCoV cross-species transmission.


Subject(s)
Betacoronavirus/genetics , Chiroptera/virology , Coronavirus Infections/transmission , Coronavirus Infections/virology , Disease Reservoirs , Pneumonia, Viral/transmission , Pneumonia, Viral/virology , Snakes/virology , Spike Glycoprotein, Coronavirus/genetics , Animals , Betacoronavirus/classification , Betacoronavirus/physiology , Bungarus/genetics , Bungarus/virology , COVID-19 , Chiroptera/genetics , Codon Usage , Coronavirus Infections/epidemiology , Disease Outbreaks , Evolution, Molecular , Genome, Viral , Homologous Recombination , Host Specificity , Humans , Naja naja/genetics , Naja naja/virology , Phylogeny , Pneumonia, Viral/epidemiology , SARS-CoV-2 , Snakes/genetics , Zoonoses
9.
Biochem J ; 476(8): 1285-1302, 2019 04 26.
Article in English | MEDLINE | ID: mdl-30944155

ABSTRACT

αδ-Bungarotoxins, a novel group of long-chain α-neurotoxins, manifest different affinity to two agonist/competitive antagonist binding sites of muscle-type nicotinic acetylcholine receptors (nAChRs), being more active at the interface of α-δ subunits. Three isoforms (αδ-BgTx-1-3) were identified in Malayan Krait (Bungarus candidus) from Thailand by genomic DNA analysis; two of them (αδ-BgTx-1 and 2) were isolated from its venom. The toxins comprise 73 amino acid residues and 5 disulfide bridges, being homologous to α-bungarotoxin (α-BgTx), a classical blocker of muscle-type and neuronal α7, α8, and α9α10 nAChRs. The toxicity of αδ-BgTx-1 (LD50 = 0.17-0.28 µg/g mouse, i.p. injection) is essentially as high as that of α-BgTx. In the chick biventer cervicis nerve-muscle preparation, αδ-BgTx-1 completely abolished acetylcholine response, but in contrast with the block by α-BgTx, acetylcholine response was fully reversible by washing. αδ-BgTxs, similar to α-BgTx, bind with high affinity to α7 and muscle-type nAChRs. However, the major difference of αδ-BgTxs from α-BgTx and other naturally occurring α-neurotoxins is that αδ-BgTxs discriminate the two binding sites in the Torpedo californica and mouse muscle nAChRs showing up to two orders of magnitude higher affinity for the α-δ site as compared with α-ε or α-γ binding site interfaces. Molecular modeling and analysis of the literature provided possible explanations for these differences in binding mode; one of the probable reasons being the lower content of positively charged residues in αδ-BgTxs. Thus, αδ-BgTxs are new tools for studies on nAChRs.


Subject(s)
Bungarotoxins/chemistry , Bungarus , Fish Proteins/chemistry , Muscle Proteins/chemistry , Receptors, Nicotinic/chemistry , Animals , Binding Sites , Bungarotoxins/metabolism , Female , Fish Proteins/metabolism , Male , Mice , Muscle Proteins/metabolism , Receptors, Nicotinic/metabolism , Torpedo
10.
Expert Rev Proteomics ; 16(5): 457-469, 2019 05.
Article in English | MEDLINE | ID: mdl-31002271

ABSTRACT

OBJECTIVES: To study the venom proteome composition of Southern India (SI) Common Krait (Bungarus caeruleus) and immunological cross-reactivity between venom against commercial antivenom. METHODS: Proteomic analysis was done by nano LC-MS/MS and toxins were quantitated by label-free analysis. The immunological cross-reactivity of venom towards polyvalent antivenom (PAV) was assessed by ELISA, Immunoblotting, and immuno-chromatographic methods. RESULTS: A total of 57 enzymatic and non-enzymatic proteins belonging to 12 snake venom protein families were identified. The three finger toxins (3FTx) (48.3%) and phospholipase A2 (PLA2) (37.6%) represented the most abundant non-enzymatic and enzymatic proteins, respectively. ß-bungarotoxin (12.9%), a presynaptic neurotoxin, was also identified. The venom proteome composition is well correlated with its enzymatic activities, reported pharmacological properties, and clinical manifestations of krait envenomation. Immuno-cross-reactivity studies demonstrated better recognition of high molecular weight proteins (>45 kDa) of this venom by PAVs compared to low molecular weight (<15 kDa) toxins such as PLA2 and 3FTxs. CONCLUSION: The poor recognition of <15 kDa mass SI B. caeruleus venom proteins is of grave concern for the successful treatment of krait envenomation. Therefore, emphasis should be given to improve the immunization protocols and/or supplement of antibodies raised specifically against the <15 kDa toxins of this venom.


Subject(s)
Antivenins/immunology , Bungarus/metabolism , Elapid Venoms/metabolism , Proteomics , Animals , Antibody Specificity/immunology , Cross Reactions/immunology , Goats , Humans , India , Molecular Weight , Neutralization Tests , Proteome/metabolism , Snake Bites/immunology
11.
J Biochem Mol Toxicol ; 33(4): e22273, 2019 Apr.
Article in English | MEDLINE | ID: mdl-30536558

ABSTRACT

Trancriptomic analysis of the venom gland cDNA library of Bungarus flaviceps revealed Kunitz-type serine protease inhibitor as one of the major venom protein families with three groups A, B, C. One of the group B isoforms named Flavikunin, which lacked an extra cysteine residue involved in disulfide bond formation in ß-bungarotoxin, was synthesized, cloned, and overexpressed in Escherichia coli. To decipher the structure-function relationship, the P1 residue of Flavikunin, histidine, was mutated to alanine and arginine. Purified wild-type and mutant Flavikunins were screened against serine proteases-thrombin, factor Xa, trypsin, chymotrypsin, plasmin, and elastase. The wild-type and mutant Flavikunin (H∆R) inhibited plasmin with an IC 50 of 0.48 and 0.35 µM, respectively. The in-silico study showed that P1 residue of wild-type and mutant (H∆R) Flavikunin interacted with S1' and S1 site of plasmin, respectively. Thus, histidine at the P1 position was found to be involved in plasmin inhibition with mild anticoagulant activity.


Subject(s)
Bungarus/genetics , Bungarus/metabolism , DNA, Complementary/chemistry , DNA, Complementary/genetics , Serine Proteinase Inhibitors/pharmacology , Snake Venoms/chemistry , Animals , Inhibitory Concentration 50
12.
Indian J Exp Biol ; 54(9): 569-76, 2016 09.
Article in English | MEDLINE | ID: mdl-28699722

ABSTRACT

Pain and inflammation are intimately associated with rheumatoid arthritis, a growing bone-joint related problem of the modern society. Though several therapeutic managements are available for arthritis, their side effects not only limit their use, but also advocate the quest for natural therapies. In this study, we explored the antinociceptive, anti-inflammatory and antiarthritic activities of Bungarus fasciatus venom (BFV) in experimental animal models. Rheumatoid arthritis was induced by Freund's complete adjuvant (FCA) in male Wistar albino rats. Lyophilized BFV was diluted in 0.9% NaCl. Antiarthritic activity showed that BFV significantly reduced the paw and ankle diameters; urinary hydroxyproline, glucosamine levels and serum ACP/ALP/TNF-α/IL-1ß/IL-17/Cathepsin-K/MMP-1 levels. These parameters were significantly increased in FCA induced arthritic animals. Joint histopathology study indicated the partial restoration of joint structure. Treatment with BFV significantly reduced the mean latency time of tail flick response, acetic acid induced writhing response and formalin induced licking response in male albino mice. BFV treatment also significantly reduced carrageenan induced paw edema and xylene induced ear edema in male albino mice. The results indicated that BFV possess antinociceptive, anti-inflammatory and antiarthritic properties and further studies are warranted to find the active constituents present in BFV.


Subject(s)
Analgesics/pharmacology , Anti-Inflammatory Agents/pharmacology , Arthritis, Experimental/drug therapy , Bungarus , Elapid Venoms/pharmacology , Animals , Male , Mice , Rats , Rats, Wistar
13.
Mol Pharm ; 12(5): 1648-61, 2015 May 04.
Article in English | MEDLINE | ID: mdl-25807257

ABSTRACT

Antimicrobial peptides are molecules of innate immunity. Cathelicidin-BF is the first cathelicidin peptide found in reptiles. However, the immunoregulatory and epithelial barrier protective properties of C-BF have not been reported. Inflammatory bowel diseases, including ulcerative colitis and Crohn's disease, can lead to colon cancer, the third most common malignant tumor. The objective is to develop the new found cathelicidin-BF as a therapeutic to patients of ulcerative colitis. The morphology of the colon epithelium was observed by H&E staining; apoptosis index and infiltration of inflammatory cells in colonic epithelium were measured by TUNEL and immunohistochemistry; the expression level of endogenous mCRAMP was analyzed by immunofluorescence; and phosphorylation of the transcription factors c-jun and NF-κB in colon were analyzed by Western blot. Our results showed that the morphology of the colon epithelium in the C-BF+DSS group was improved compared with the DSS group. Apoptosis and infiltration of inflammatory cells in colonic epithelium were also significantly attenuated in the C-BF+DSS group compared with the DSS group, and the expression level of endogenous mCRAMP in the DSS group was significantly higher than other groups. DSS-induced phosphorylation level of c-jun and NF-κB while C-BF effectively inhibited phosphorylation of NF-κB (p65). The barrier protective effect of C-BF was still excellent. In conclusion, C-BF effectively attenuated inflammation and improved disrupted barrier function. Notably, this is the first report to demonstrate that C-BF attenuates DSS-induced UC both through the regulation of intestinal immune and retention of barrier function, and the exact pathway was through NF-κB.


Subject(s)
Anti-Infective Agents/therapeutic use , Antimicrobial Cationic Peptides/therapeutic use , Bungarus/metabolism , Cathelicidins/therapeutic use , Colitis/drug therapy , Animals , Apoptosis/drug effects , Colon/metabolism , Disease Models, Animal , Male , Mice , Mice, Inbred C57BL , NF-kappa B/metabolism , Signal Transduction
15.
J Ind Microbiol Biotechnol ; 42(4): 647-53, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25578306

ABSTRACT

The intein expression system has been widely applied in Escherichia coli to express various proteins and peptides. However, the removal of endotoxin from the recombinant proteins expressed in E. coli is very difficult and therefore complicates the purification process. In this study, we constructed an intein-based expression vector for an antimicrobial peptide (cathelicidin from Bungarus fasciatus) and expressed the intein fusion peptide in a Bacillus subtilis expression system. The fusion peptide was secreted into the culture medium, identified by Western blot and purified by affinity chromatography and intein self-cleavage in just one step. Approximately, 0.5 mg peptide was obtained from 1 litre of culture medium. The purified peptide showed antimicrobial activity. Our results indicate that the intein expression system may be a safe and efficient method to produce soluble peptides and proteins in B. subtilis.


Subject(s)
Antimicrobial Cationic Peptides/biosynthesis , Antimicrobial Cationic Peptides/isolation & purification , Bacillus subtilis/metabolism , Cathelicidins/biosynthesis , Cathelicidins/isolation & purification , Inteins/physiology , Protein Splicing , Animals , Antimicrobial Cationic Peptides/metabolism , Antimicrobial Cationic Peptides/pharmacology , Bacillus subtilis/genetics , Blotting, Western , Bungarus , Cathelicidins/metabolism , Cathelicidins/pharmacology , Chromatography, Affinity , Culture Media/chemistry , Microbial Sensitivity Tests , Recombinant Fusion Proteins/biosynthesis , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/metabolism , Solubility
17.
Biochem J ; 454(2): 311-21, 2013 Sep 01.
Article in English | MEDLINE | ID: mdl-23802200

ABSTRACT

The crystal structure of a pentameric α7 ligand-binding domain chimaera with bound α-btx (α-bungarotoxin) showed that of the five conserved aromatic residues in α7, only Tyr¹84 in loop C of the ligand-binding site was required for high-affinity binding. To determine whether the contribution of Tyr¹84 depends on local residues, we generated mutations in an α7/5HT(3A) (5-hydroxytryptamine type 3A) receptor chimaera, individually and in pairs, and measured ¹²5I-labelled α-btx binding. The results show that mutations of individual residues near Tyr¹84 do not affect α-btx affinity, but pairwise mutations decrease affinity in an energetically coupled manner. Kinetic measurements show that the affinity decreases arise through increases in the α-btx dissociation rate with little change in the association rate. Replacing loop C in α7 with loop C from the α-btx-insensitive α2 or α3 subunits abolishes high-affinity α-btx binding, but preserves acetylcholine-elicited single channel currents. However, in both the α2 and α3 construct, mutating either residue that flanks Tyr¹84 to its α7 counterpart restores high-affinity α-btx binding. Analogously, in α7, mutating both residues that flank Tyr¹84 to the α2 or α3 counterparts abolishes high-affinity α-btx binding. Thus interaction between Tyr¹84 and local residues contributes to high-affinity subtype-selective α-btx binding.


Subject(s)
Bungarotoxins/metabolism , Models, Molecular , Neurotoxins/metabolism , Receptors, Nicotinic/metabolism , Receptors, Serotonin, 5-HT3/metabolism , Reptilian Proteins/metabolism , Tyrosine/chemistry , Amino Acid Substitution , Animals , Binding Sites , Bungarotoxins/chemistry , Bungarus , HEK293 Cells , Humans , Ligands , Mutant Proteins/chemistry , Mutant Proteins/metabolism , Neurotoxins/chemistry , Peptide Fragments/chemistry , Peptide Fragments/genetics , Peptide Fragments/metabolism , Protein Conformation , Protein Interaction Domains and Motifs , Protein Isoforms/chemistry , Protein Isoforms/genetics , Protein Isoforms/metabolism , Receptors, Nicotinic/chemistry , Receptors, Nicotinic/genetics , Receptors, Serotonin, 5-HT3/chemistry , Receptors, Serotonin, 5-HT3/genetics , Recombinant Fusion Proteins/chemistry , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/metabolism , Reptilian Proteins/chemistry , alpha7 Nicotinic Acetylcholine Receptor
18.
Biochem J ; 454(2): 303-310, 2013 Sep 01.
Article in English | MEDLINE | ID: mdl-23800261

ABSTRACT

To identify high-affinity interactions between long-chain α-neurotoxins and nicotinic receptors, we determined the crystal structure of the complex between α-btx (α-bungarotoxin) and a pentameric ligand-binding domain constructed from the human α7 AChR (acetylcholine receptor) and AChBP (acetylcholine-binding protein). The complex buries ~2000 Ų (1 Å=0.1 nm) of surface area, within which Arg³6 and Phe³² from finger II of α-btx form a π-cation stack that aligns edge-to-face with the conserved Tyr¹84 from loop-C of α7, while Asp³° of α-btx forms a hydrogen bond with the hydroxy group of Tyr¹84. These inter-residue interactions diverge from those in a 4.2 Å structure of α-ctx (α-cobratoxin) bound to AChBP, but are similar to those in a 1.94 Å structure of α-btx bound to the monomeric α1 extracellular domain, although compared with the monomer-bound complex, the α-btx backbone exhibits a large shift relative to the protein surface. Mutational analyses show that replacing Tyr¹84 with a threonine residue abolishes high-affinity α-btx binding, whereas replacing with a phenylalanine residue maintains high affinity. Comparison of the α-btx complex with that coupled to the agonist epibatidine reveals structural rearrangements within the binding pocket and throughout each subunit. The overall findings highlight structural principles by which α-neurotoxins interact with nicotinic receptors.


Subject(s)
Bungarotoxins/metabolism , Carrier Proteins/metabolism , Models, Molecular , Neurotoxins/metabolism , Receptors, Nicotinic/metabolism , Reptilian Proteins/metabolism , Amino Acid Substitution , Animals , Binding Sites , Bridged Bicyclo Compounds, Heterocyclic/chemistry , Bridged Bicyclo Compounds, Heterocyclic/metabolism , Bungarotoxins/chemistry , Bungarus , Carrier Proteins/chemistry , Carrier Proteins/genetics , Cobra Neurotoxin Proteins/chemistry , Cobra Neurotoxin Proteins/metabolism , Humans , Ligands , Lymnaea , Mutant Proteins/chemistry , Mutant Proteins/metabolism , Neurotoxins/chemistry , Nicotinic Agonists/chemistry , Nicotinic Agonists/metabolism , Peptide Fragments/chemistry , Peptide Fragments/genetics , Peptide Fragments/metabolism , Protein Conformation , Protein Interaction Domains and Motifs , Pyridines/chemistry , Pyridines/metabolism , Receptors, Nicotinic/chemistry , Receptors, Nicotinic/genetics , Recombinant Fusion Proteins/chemistry , Recombinant Fusion Proteins/metabolism , Reptilian Proteins/chemistry , alpha7 Nicotinic Acetylcholine Receptor
19.
Int J Biol Macromol ; 262(Pt 2): 130080, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38354918

ABSTRACT

Animal testing has been the primary approach to assess the neutralization potency of antivenom for decades. However, the necessity to sacrifice large numbers of experimental animals during this process has recently raised substantial welfare concerns. Furthermore, the laborious and expensive nature of animal testing highlights the critical need to develop alternative in vitro assays. Here, we developed an antibody-detection enzyme-linked immunosorbent assay (ELISA) technique as an alternative approach to evaluate the neutralization potency of hyperimmunized equine plasma against B. multicinctus, a medically important venomous snake in Taiwan. Firstly, five major protein components of B. multicinctus venom, specifically, α-BTX, ß-BTX, γ-BTX, MTX, and NTL, were isolated. To rank their relative medical significance, a toxicity score system was utilized. Among the proteins tested, ß-BTX presenting the highest score was regarded as the major toxic component. Subsequently, antibody-detection ELISA was established based on the five major proteins and used to evaluate 55 hyperimmunized equine plasma samples with known neutralization potency. ELISA based on ß-BTX, the most lethal protein according to the toxicity score, exhibited the best sensitivity (75.6 %) and specificity (100 %) in discriminating between high-potency and low-potency plasma, supporting the hypothesis that highly toxic proteins offer better discriminatory power for potency evaluation. Additionally, a phospholipase A2 (PLA2) competition process was implemented to eliminate the antibodies targeting toxicologically irrelevant domains. This optimization greatly enhanced the performance of our assay, resulting in sensitivity of 97.6 % and specificity of 92.9 %. The newly developed antibody-detection ELISA presents a promising alternative to in vivo assays to determine the neutralization potency of antisera against B. multicinctus during the process of antivenom production.


Subject(s)
Bungarotoxins , Bungarus , Animals , Horses , Bungarus/metabolism , Bungarus multicinctus , Antivenins , Taiwan , Enzyme-Linked Immunosorbent Assay
20.
Toxins (Basel) ; 16(3)2024 Feb 22.
Article in English | MEDLINE | ID: mdl-38535778

ABSTRACT

It is with interest that I read the case report by Senthilkumaran et al [...].


Subject(s)
Optic Neuritis , Toxins, Biological , Humans , Animals , Naja naja , Bungarus
SELECTION OF CITATIONS
SEARCH DETAIL