4000-520-616
欢迎来到免疫在线!(蚂蚁淘生物旗下平台)  请登录 |  免费注册 |  询价篮
主营:主营:动物毒液多肽毒素
咨询热线电话
4000-520-616
当前位置: 首页 > 产品中心 > acid_base_buffer_solution > Smartox/A型钾通道阻滞剂/AMX001-01000/1mg
商品详细Smartox/A型钾通道阻滞剂/AMX001-01000/1mg
Smartox/A型钾通道阻滞剂/AMX001-01000/1mg
Smartox/A型钾通道阻滞剂/AMX001-01000/1mg
商品编号: AMX001-01000
品牌: smartox-biotech
市场价: ¥11169.60
美元价: 8592.00
产地: 美国(厂家直采)
公司:
产品分类: 酸碱缓冲液
公司分类: acid_base_buffer_solution
联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍

AmmTx3hasbeenoriginallyisolatedfromthevenomofthescorpionAndroctonusmauretanicusandisnowofferedbySmartoxinitssyntheticversion.AmmTx3bindsonitstargetA-typepotassiumchannelwithanaffinityof66pMinratbrainsynaptosomes(Kv4channels).Assuch,AmmTx3shouldrepresentanexcellenttooltostudyactionpotentialfiringfrequency,spikeinitiationandwaveforminexcitablecells.AmmTx3wasindeedfoundtoblockA-typepotassiumcurrentsfromcerebellumgranularcellsandfromstriatumneuronsbutwithIC50valuesof130nM.AmmTx3appearstobeaporeblockerofKv4.2andKv4.3andseemstorequiretheexpressionoftheKv4associatedproteinDPP6.Itshouldalsocontributetoourunderstandingoflearning,memoryandbehavior.AmmTx3sharesveryhighsequencehomologywithtwootherA-typepotassiumchannelblockers,Aa1fromAndroctonusaustralis(94%)andBmTx3fromButhusmartensi(91%),andaccordingtobindingexperimentsthesamechanneltargetaswell.AmmTx3isamemberofthea-KTX15familyoftoxinsandconsistofasinglechainof37aminoacidresidues,withanN-terminalpyroglutamate,cross-linkedbythreedisulfidebridges.

Newproductcitation


Description:

Productcode:AMX001.Category:Kvchannels.Tags:Kv4.2,Kv4.3.

AAsequence:Pyr-Ile-Glu-Thr-Asn-Lys-Lys-Cys8-Gln-Gly-Gly-Ser-Cys13-Ala-Ser-Val-Cys17-Arg-Lys-Val-Ile-Gly-Val-Ala-Ala-Gly-Lys-Cys28-Ile-Asn-Gly-Arg-Cys33-Val-Cys35-Tyr-Pro-OH
Disulfidebonds:Cys8-Cys28,Cys13-Cys33andCys17-Cys35
Length(aa):37
Formula:C158H263N51O47S6
MolecularWeight:3821.52 Da
Appearance:whitelyophilizedsolid
Solubility:waterorsalinebuffer
CASnumber:
Source:Synthetic
Purityrate:>98%

Reference:

Dipeptidyl-peptidase-like-proteinsconferhighsensitivitytothescorpiontoxinAmmTX3toKv4-mediatedA-typeK+channels

K+channelscontainingKv4.2andKv4.3pore-formingsubunitsmediatemostofthesubthreshold-operatingsomatodendriticA-typeK+currentinCNSneurons.Thesechannelsarebelievedtobeimportantinregulatingthefrequencyofrepetitivefiring,thebackpropagationofactionpotentialintodendrites,anddendriticintegrationandplasticity.Moreover,theyhavebeenimplicatedinseveraldiseasesfrompaintoepilepsyandautismspectrumdisorders.Thelackoftoxinsthatspecificallyandefficientlyblockthesechannelshashamperedstudiesaimedatconfirmingtheirfunctionalroleandtheirinvolvementindisease.AmmTX3andotherrelatedmembersoftheα-KTX15familyofscorpiontoxinshavebeenshowntoblocktheA-typeK+currentinculturedneurons,buttheirspecificityhasbeenquestionedbecausethetoxinsdonotefficientlyblockthecurrentsmediatedbyKv4.2orKv4.3subunitsexpressedinheterologouscells.Hereweshowthatthehigh-affinityblockadeofKv4.2andKv4.3channelsbyAmmTX3dependsonthepresenceoftheauxiliarysubunitsDPP6andDPP10.TheseproteinsarethoughttobecomponentsoftheKv4channelcomplexinneuronsandtobeimportantforchannelexpressionindendrites.ThesestudiesvalidatetheuseofAmmTX3asablockeroftheKv4-mediatedA-typeK+currentinneurons.

MaffieJK.,etal.(2013)Dipeptidyl-peptidase-like-proteinsconferhighsensitivitytothescorpiontoxinAmmTX3toKv4-mediatedA-typeK+channels.JPhysiol.PMID:23440961

Scorpiontoxinsthatblocktransientcurrents(IA)ofratcerebellumgranularcells

Thiscommunicationisarevisionofthestate-of-the-artknowledgeofthefieldofscorpiontoxinsspecificfortheK(+)-channels,responsIBLefortheI(A)currentsofgranularcellsofratcerebellum,maintainedinvitroculture.Thereare6membersofthesub-familyalpha-KTx15knowntoaffecttheI(A)currents.Theyare:toxinsAa1fromAndroctonusaustralisGarzoni,BmTx3fromButhusmartensiKarch,AmmTx3fromAndroctonusmauretanicusmauretanicus,AATx1andAaTx2fromA.australisGarzoniandDiscrepinfromTityusdiscrepans.Theysharehighsequencesimilarity,apartfromDiscrepin,whichcausesanirreversibleeffectontheI(A)currentsandisthemostthoroughlystudiedtoxinofthesub-familyalpha-KTx15.Thethree-dimensionalstructureofDiscrepinwasdeterminedandaseriesofmutantsweresynthesizedandassayedinthesystemwiththeaimofidentifyingpossibleaminoacidsorsequencesegmentsresponsiblefortheirreversibleeffectfound.Inthisrevisionsomeunpublishedoriginaldataarealsoincludedtofosterfutureworkonthefield,aswellasashortdiscussiononsomerelevantaspectsstillpendingandpossiblelimitationsassociatedwiththestrategyproposed.

PrestipinoG.,etal.(2009)Scorpiontoxinsthatblocktransientcurrents(IA)ofratcerebellumgranularcells.ToxicolLett.PMID:19429236

Definitionofthealpha-KTx15subfamily

Threenovelscorpiontoxins,Aa1fromAndroctonusaustralis,BmTX3fromButhusmartensiandAmmTX3fromAndroctonusmauretanicuswereshownabletoselectivelyblockA-typeK+currentsincerebellumgranularcellsorculturedstriatumneuronsfromratbrain.Inelectrophysiologyexperiments,thetransientA-currentcompletelydisappearedwhen1microMofthetoxinswasappliedtotheexternalsolutionwhereasthesustainedK+currentwasunaffected.Thethreetoxinssharedhighsequencehomologies(morethan94%)andconstitutedanew‘short-chain’scorpiontoxinsubfamily:alpha-KTx15.Monoiododerivativeof125I-sBmTX3specificallyboundtoratbrainsynaptosomes.Underequilibriumbindingconditions,maximumbindingwas14fmol/mgofproteinandthedissociationconstant(Kd)was0.21nM.ThisKdvaluewasconfirmedbykineticexperiments(kon=6.0x10(6)M(-1)s(-1)andkoff=6.0x10(-4)s(-1)).CompetitionswithAmmTX3andAa1with125I-sBmTX3boundtoitsreceptoronratbrainsynaptosomesshowedthattheyfullyinhibitedthe125I-sBmTX3binding(Kivaluesof20and44pM,respectively),demonstratingunambiguouslythatthethreemoleculessharedthesametargetinratbrain.ApaneloftoxinsdescribedasspecificligandsfordifferentK+,Na+andCa2+channelswerenotabletodisplace125I-sBmTX3fromitsbindingsite.Thus,125I-sBmTX3isanewligandforastillunidentifiedtargetinratbrain.InautorADIography,thedistributionof125I-sBmTX3bindingsitesintheadultratbrainindicatedahighdensityof125I-sBmTX3receptorsinthestriatum,hippocampus,superiorcolliculus,andcerebellum.

VacherH.,etal.(2004)Definitionofthealpha-KTx15subfamily.Toxicon.PMID:15208021

Expandingthescorpiontoxina-KTX15familywithAmmTX3fromAndroctonusmauretanicus

Anoveltoxin,AmmTX3(3823.5Da),wasisolatedfromthevenomofthescorpionAndroctonusmauretanicus.Itshowed94%sequencehomologywithAa1fromAndroctonusaustralisand91%withBmTX3fromButhusmartensiwhich,respectively,blockA-typeK+currentincerebellumgranularcellsandstriatumculturedneurons.BindinganddisplacementexperimentsusingratbrainsynaptosomesshowedthatAmmTX3andAa1competedeffectivelywith125I-labelledsBmTX3binding.Theyfullyinhibitedthe125I-labelledsBmTX3binding(Kivaluesof19.5pmand44.2pm,respectively),demonstratingunambiguouslythatthethreemoleculessharedthesametargetinratbrain.Thespecificbindingparametersof125I-labelledAmmTX3foritssiteweredeterminedatequilibrium(Kd=66pm,BMAx=22fmolpermgofprotein).Finally,patch-clampexperimentsonstriatalneuronsinculturedemonstratedthatAmmTX3wasabletoinhibittheA-typeK+current(Ki=131nm).

VacherH.,etal.(2002)Expandingthescorpiontoxina-KTX15familywithAmmTX3fromAndroctonusmauretanicus.Eur.J.Biochem.PMID:12473099

品牌介绍
Smartox Biotechnology 是全球唯一一家专门生产动物毒液多肽毒素,用于细胞离子通道功能研究的生物医药公司。多肽毒素在生物制药领域具有重要的使用价值。Smartox Biotechnology 于 2009 年由来自 Grenoble 神经科学研究所 (Grenoble Institute of Neuroscience) 的 Michel de waard 博士创立, Smartox Biotechnology 专门研究动物毒液,制作合成多种毒液中的多肽成分(常称为毒素)。 De Waard 博士研究离子通道与毒素多肽的关系,尤其是鉴定、开发毒素多肽作为治疗性分子或细胞穿透肽 (cell penetrating peptides, CPP) 。其研究团队在毒液分离,药理性活性肽鉴定、富半胱氨酸肽定性、制作和优化等方面具有独特、丰富的经验。 2010 年, Smartox Biotechnolgy 被法国研究部 (Ministry of Research) 授予“新兴企业 OSEO 奖 (OSEO prize for emerging businesses) ”。