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SARS-CoV-2,whichcausestheglobalpandemiccoronavirusdisease2019(Covid-19),belongstoafamilyofvirusesknownascoronaviruses.TheSARS-CoV-2Sproteinisaglycoproteinthatmediatesmembranefusionandviralentry.TheRBDofSARS-CoV-2bindsametallopeptidase,angiotensin-convertingenzyme2(ACE-2).SeveralemergingSARS-CoV-2genomeshavebeenidentifiedincludingtheOmicron,orB.1.1.529,variant.FirstidentifiedinNovember2021inSouthAfrica,theOmicronvariantquicklybecamethepredominantSARS-CoV-2variantandisconsideredavariantofconcern(VOC).TheOmicronvariantcontains15mutationsinRBDdomainthatpotentiallyaffectviralfitnessandtransmissibility.ThemajorityofthemutationsareinvolvedinACE-2bindingandOmicronbindsACE-2withgreateraffinity,potentiallyexplainingitsincreasedtransmissibility.Severalofthesemutationsarealsoidentifiedinfacilitatingimmuneescapeandreducingneutralizationactivitytoseveralmonoclonalantibodies.[Tyr1]-MIF-1配方:溶解于20 mM PBS, pH 7.4, 130 mM NaCl溶液中,并经0.22μm过滤后冻干而成。Recombinant Mouse IL-17F Protein,His-Avi Tag

Recombinant Mouse IL-17F Protein,His-Avi Tag,标准物质

SARS-CoV-2, which causes the global pandemic coronavirus disease 2019 (Covid-19), belongs to a family of viruses known as coronaviruses that also include MERS‑CoV and SARS-CoV-1. Coronaviruses are commonly comprised of four structural proteins: Spike protein (S), Envelope protein (E), Membrane protein (M) and Nucleocapsid protein (N). The SARS-CoV-2 S protein is a glycoprotein that mediates membrane fusion and viral entry. The S protein is homotrimeric, with each ~180-kDa monomer consisting of two subunits, S1 and S2 .The RBD of SARS-CoV-2 binds a metallopeptidase, angiotensin-converting enzyme 2 (ACE-2). Before binding to the ACE-2 receptor, structural analysis of the S1 trimer shows that only one of the three RBD domains is in the "up" conformation. This is an unstable and transient state that passes between trimeric subunits but is nevertheless an exposed state to be targeted for neutralizing antibody therapy. Polyclonal antibodies to the RBD of the SARS-CoV-2 protein have been shown to inhibit interaction with the ACE-2 receptor, confirming RBD as an attractive target for vaccinations or antiviral therapy.  Recombinant Human Nectin-3/CD113 Protein,His-Avi Tag人血清白蛋白(HSA)是脂类等物质的转运载体,其主要生理功能是调节血浆pH值和维持血浆渗透压。

Recombinant Mouse IL-17F Protein,His-Avi Tag,标准物质

Cas9核酸酶是一种引导RNA引导的核酸内切酶,可以催化双链DNA的裂解。这种靶向核酸酶是一种高精度的基因组编辑的有力工具。Cas9蛋白与CRISPR/Cas9系统的引导RNA(gRNA)成分形成一个非常稳定的核糖白(RNP)复合物。Cas9RNP复合物可以在进入细胞后,通过添加一个N端核定位信号(NLS),增加入核效率。YEASEN开发的NLS-Cas9核酸酶在蛋白的N端包含一个核定位序列(NLS),以增加入核切割效率。产品特点如下:无DNA:没有外部DNA添加。安全性好:野生型Cas9蛋白,无标签。可应用于:通过体外DNA切割筛选高效和特异性靶向gRNA。产品信息货号11366ES60/11366ES76规格100μg/500μg来源重组Cas9来源于大肠杆菌物种化脓性链球菌标签无分子量160KDa浓度10mg/mL(50μg);10mg/mL(100μg)

Name:AITRL,MouseSynonyms:Activation-inducedTNFRmemberLigand,TNFSF18,GITRL,TL-6Description:Activation-InducibleTNF-RelatedLigand(AITRL),alsoknownasGlucocorticoid-InducedTNF-RelatedLigand(GITRL),belongstothetumornecrosisfactorsuperfamily(TNFSF).AITRLisaTypeIIsingletransmembraneproteinandshareslowconservationwithintheextracellulardomainwithotherTNFSFmembers.AITRLisexpressedonmacrophages,immatureandmaturedendriticcellsandBcells.Itsreceptor,Activation-InducibleTNFRfamilyReceptor(AITR),isexpressedonTlymphocytes,naturalkiller(NK)cells,andantigen-presentingcells.AfterbindingbyAITRL,AITRcanbereleased.AITRactivationincreasesresistancetotumorsandviralinfectionsandisinvolvedinautoimmuneandinflammatoryprocesses.Inaddition,activatedAITRincreasesTCR-inducedTcellproliferationandcytokineproductionandrescuesTcellsandNKcellsfromapoptosis.RecombinantmouseActivation-InducibleTNF-RelatedLigand(rmAITRL)producedinE.LAG-1与MIP-1β(ACT II同种型)相同,Lag-1趋化吸引力单核细胞,并表现出活性作为HIV抑制因子。

Recombinant Mouse IL-17F Protein,His-Avi Tag,标准物质

Recombinant Biotinylated Human KIR2DL1 Protein,His-Avi Tag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.储存条件Theproductshouldbestoredat-25~-15℃for1yearfromdateofreceipt.2-7days,2~8°Cundersterileconditionsafterreconstitution.CX3CL1受到促炎性刺激的上调,包括巨噬细胞,树突状细胞,内皮细胞,神经元,平滑肌,上皮细胞的细胞类型。Recombinant Human Neuropilin-1 Protein,His Tag

FGF-18将破骨细胞和成骨细胞募集到生长板中,促进破骨细胞的形成和功能,促进骨骼血管形成。Recombinant Mouse IL-17F Protein,His-Avi Tag

产品简介抑肽酶(Aprotinin),又称为抑蛋白酶肽,是一种竞争性、可逆的丝氨酸蛋白酶抑制剂,可与丝氨酸蛋白酶形成稳定复合物并阻断酶的活性位点,这种结合是可逆的,大多数的抑肽酶-蛋白酶复合物在极端的pH<3.0的条件下解除结合。抑肽酶抑制糜蛋白酶、胰蛋白酶、激肽释放酶和血纤维蛋白溶酶,不能抑制Xa因子和凝血酶。从结构上来说,抑肽酶是一种来自牛肺的单体球状蛋白,由58个氨基酸组成并排列在具有三个交联二硫键的单个多肽链中。重组抑肽酶采用大肠杆菌表达,在GMP法规下生产,不含任何动物源成分,无动物源性的病毒污染,氨基酸序列与来源于牛肺的抑肽酶完全一致,具有与动物源性抑肽酶相同的酶学性质,可替代动物源性抑肽酶用于各种生物技术过程中,如:重组蛋白生产中抑制丝氨酸蛋白酶的活性;细胞培养等。另外,也提供来源于牛肺的抑肽酶(动物源性)酶活单位:能抑制1个胰蛋白酶单位的活力称为1个抑肽酶活力单位(EPU)。储存条件冻干粉2~8℃保存,有效期2年。使用方法抑肽酶与蛋白酶是等摩尔有效结合,推荐的结合pH>6.0,在pH<3.0的条件下不结合。可直接使用0.9%NaCl溶解,溶解后可-20℃储存。Recombinant Mouse IL-17F Protein,His-Avi Tag

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在基因工程的微观世界中,限制性核酸内切酶是科学家们不可或缺的工具,而AvaII便是其中一位“关键刻刀”。它以其独特的识别序列和精细的切割能力,在基因克隆、基因分析以及分子生物学研究中发挥着重要作用。AvaII的识别序列是“G^GWCC”,其中“W”突出腺嘌呤(A)或胸腺嘧啶(T)。这种序列的识别特性使得AvaII能够在特定位置进行切割,产生黏性末端。这种黏性末端的特性使得AvaII在基因克隆和重组DNA构建中具有独特的优势。在基因工程中,AvaII的应用极为广。科学家可以利用它将目标基因从复杂的基因组中精细地分离出来,再通过DNA连接酶将切割后的基因片段与载体DNA连接起来,构建出能够高效表达...

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