Recombinant Mouse RANTES/CCL5
糖苷酶F(PNGaseF)酶活定义(UnitDefinition)1个酶活力单位指在10μL的反应体系中,37℃条件下1小时从10μg变性RNaseB中除去超过95%的碳水化合物所需要的酶量。储存条件-25~-15℃保存,有效期1年。使用方法1、变性条件下蛋白质去糖基化:1)在水中加入1μLBuffer1和目标糖蛋白(1-20μg),至终体积10μL;2)100℃温度下煮沸10min使其变性,冰上冷却,离心10秒;加入2μL的Buffer2、2μL的10%NP-40、6μL去离子水,总反应体积20μL;加入1-2μL的PNGase,轻轻混匀。在37℃孵育1-3h。2、非变性条件下蛋白质去糖基化:1)在水中加入2μL的Buffer2和目标糖蛋白(1-20μg)至体积为20μL。2)加入2~5μL的PNGaseF,轻轻混匀。3)37°C孵育4-24h。注意:在变性条件下大多数底物能够更好的去糖基化,在非变性条件下可能需要增加PNGaseF的量和延长孵育时间。注意事项1.PNGaseF建议搭配我司提供的配套缓冲液使用,按我司说明书建议的操作量配套缓冲液足够。如您由于使用体系造成配套缓冲液不足,可咨询当地销售进行购买酵母重组表达N-糖苷酶F,是一种利用酵母作为宿主细胞,通过基因工程技术表达特定酶的过程。Recombinant Mouse RANTES/CCL5
RecombinantBiotinylatedHumanHLA-A*02:01&B2M&MAGE-A4orMAGE-A8(KVLEHVVRV)MonomerProtein,His-AviTag性能参数分子别名(Synonyms)MAGE-A4orMAGE-A8;MAGE-A4;MAGE-A8;表达区间及表达系统(Source)BiotinylatedHumanHLA-A*02:01&B2M&MAGE-A4orMAGE-A8(KVLEHVVRV)MonomerProteinisexpressedfromHEK293withHistagandAvitagattheC-Terminus.ItcontainsGly25-Thr305(HLA-A*02:01),Ile21-Met119(B2M)andKVLEHVVRVpeptide.[Accession|A0A140T913(HLA-A*02:01)&P61769(B2M)&KVLEHVVRV]分子量大小(MolecularWeight)TheproteinhasapredictedMWof50.50kDa.Duetoglycosylation,theproteinmigratesto52-62kDabasedonSDS-PAGEresult.(Endotoxin)Lessthan1EUperμgbytheLALmethod.纯度(Purity)>95%asdeterminedbySDS-PAGEandHPLC.制剂(Formulation)Suppliedas0.22μmfilteredsolutioninPBS(pH7.4).储存条件Theproductshouldbestoredat-85~-65℃for1yearfromdateofreceipt.Rabies Virus Glycoprotein全长A2aR蛋白可应用于免疫、ELISA、SPR(表面等离子共振)、BLI(生物层干涉)和细胞实验等场景。
SARS-CoV-2,whichcausestheglobalpandemiccoronavirusdisease2019(Covid-19),belongstoafamilyofvirusesknownascoronavirusesthatalsoincludeMERS‑CoVandSARS-CoV-1.Coronavirusesarecommonlycomprisedoffourstructuralproteins:Spikeprotein(S),Envelopeprotein(E),Membraneprotein(M)andNucleocapsidprotein(N).TheSARS-CoV-2Sproteinisaglycoproteinthatmediatesmembranefusionandviralentry.TheSproteinishomotrimeric,witheach~180-kDamonomerconsistingoftwosubunits,S1andS2.TheRBDofSARS-CoV-2bindsametallopeptidase,angiotensin-convertingenzyme2(ACE-2).BeforebindingtotheACE-2receptor,structuralanalysisoftheS1trimershowsthatonlyoneofthethreeRBDdomainsisinthe"up"conformation.Thisisanunstableandtransientstatethatpassesbetweentrimericsubunitsbutisneverthelessanexposedstatetobetargetedforneutralizingantibodytherapy.PolyclonalantibodiestotheRBDoftheSARS-CoV-2proteinhavebeenshowntoinhibitinteractionwiththeACE-2receptor,confirmingRBDasanattractivetargetforvaccinationsorantiviraltherapy.
RecombinantBiotinylatedHumanKIR2DL1Protein,His-AviTag性能参数分子别名(Synonyms)CD158A;CD158Ankat1;cl-42表达区间及表达系统(Source)BiotinylatedHumanKIR2DL1ProteinisexpressedfromHEK293withHistagandAvitagattheC-Terminus.ItcontainsHis22-Arg242.[Accession|P43626]分子量大小(MolecularWeight)TheproteinhasapredictedMWof27.1kDa.Duetoglycosylation,theproteinmigratesto48-60kDabasedonSDS-PAGEresult.(Endotoxin)Lessthan1EUperμgbytheLALmethod.纯度(Purity)>95%asdeterminedbySDS-PAGEandHPLC.制剂(Formulation)Lyophilizedfrom0.22μmfilteredsolutioninPBS(pH7.4).Normally8%trehaloseisaddedasprotectantbeforelyophilization.重构方法(Reconstitution)Centrifugethetubebeforeopening.Reconstitutingtoaconcentrationmorethan100μg/mlisrecommended.Dissolvethelyophilizedproteinindistilledwater.透明质酸及其衍生物由于其生物相容性和生物降解性,被用作药物的控释载体。
RecombinantBiotinylatedHumanMSLN/MesothelinProtein,hFc-AviTag分子别名(Synonyms)Mesothelin;CAK1;MSLN;MPFSMRP表达区间及表达系统(Source)BiotinylatedHumanMSLN/MesothelinProteinisexpressedfromHEK293withhFctagandAvitagattheC-Terminus.ItcontainsGlu296-Gly580.[Accession|Q13421-2]分子量大小(MolecularWeight)TheproteinhasapredictedMWof61.1kDa.Duetoglycosylation,theproteinmigratesto70-80kDabasedonSDS-PAGEresult.(Endotoxin)Lessthan1EUperμgbytheLALmethod.纯度(Purity)>95%asdeterminedbySDS-PAGEandHPLC.活性(Activity)ELISAData:ImmobilizedAnti-MSLNAntibody,hFcTagat1μg/ml(100μl/well)ontheplate.DoseresponsecurveforBiotinylatedHumanMSLN,hFcTagwiththeEC50of18.4ng/mldeterminedbyELISA.泛素蛋白(Ubiquitin,简称Ub)是一种在真核细胞中普遍存在的小分子蛋白,具有高度保守性。Recombinant Mouse Factor H/CFH Protein,His Tag
α-凝血酶是研究血液凝固机制和血栓性疾病发展的主要靶点。重组α-凝血酶用于体外测定。Recombinant Mouse RANTES/CCL5
牛纤维蛋白原不仅在血液凝固和伤口愈合中发挥着重要作用,而且在生物医学研究中具有广泛的应用前景。深入研究其分子特性和生物学功能,有助于开发新的策略,以应对与血液凝固相关的疾病。未来方向未来的研究可以集中在以下几个方面:牛纤维蛋白原与凝血级联反应中其他组分的相互作用。牛纤维蛋白原在不同疾病状态下的功能变化。基于牛纤维蛋白原的新型生物材料的开发。本综述总结了牛纤维蛋白原的分子特性和生物医学应用,为未来的研究提供了方向,并强调了其在疾病和生物材料开发中的潜力。Recombinant Mouse RANTES/CCL5