重组肠激酶(rEK)是一种高纯度的重组牛肠激酶轻链片段,氨基酸序列与牛肠激酶轻链一致,有着和天然提取的肠激酶同样特异的酶切位点,切割位点Asp-Asp-Asp-Asp-Lys,可去除位于蛋白N-末端的融合蛋白,以除去不需要的融合标签,同时重组肠激酶(rEK)具有比天然酶更高的切割活性。重组肠激酶为采用重组大肠杆菌分泌表达的高纯度、高活性、高特异的牛肠激酶,不含其他蛋白酶,可以在较宽pH范围(4.5-9.5)和较宽温度范围内有效切割融合蛋白,并且在各种去垢剂和变性剂存在的条件下仍具有部分活性。本品不含标签,由于具有极高酶切活性,酶切反应使用量少,不影响下游蛋白应用,可不考虑除去。产品信息规格100U/200U/500U/1000U/5000U产品性质来源(Source)大肠杆菌表达分子量(MolecularWeight)理论值25.85kDa外观(Appearance)澄清、无色至淡黄色液体酶浓度(EnzymeConcentration)≥5U/uL活性定义(ActivityDefinition)一个活性单位定义为25°C,12-16h,RANTES是对单核细胞,记忆T细胞(CD4+/CD45RO),嗜碱性粒细胞和嗜酸性粒细胞的趋化剂。Recombinant Cynomolgus NOGOR Protein,His Tag

CD30,又称KI抗原和Tnfrsf8,是一种120kdaI型跨膜糖蛋白,属于tnf受体超家族。成熟的人CD30由一个361AA细胞外域(ECD)和六个富含半胱氨酸的重复,28AA跨膜段和188AA细胞质域。相比之下,小鼠和大鼠CD30缺乏90AA的ECD,并且只包含三个富含半胱氨酸的重复。在ECD的共同区域内,人CD30与小鼠CD30和大鼠CD30的序列认同率分别为53%和49%。人类CD30的交替剪接产生一个等形,包括细胞质域的C132AA。CD30通常在抗原细胞和B细胞上表达。但是,它在霍奇金氏病(红-斯特恩伯格细胞上)、其他淋巴瘤、慢性炎症中,以及自体免疫。CD30与CD30配体/tnfsf8结合,TH细胞、单核细胞、粒细胞和髓质胸腺上皮细胞上表达。产品性质别名CD30;CD30KI-1;CD30Lreceptor;TNFRSF8;D1S166EKi-1;CD30KI-1工会编号P28908-1表达区间及表达系统重组的人CD30/Tnfrsf8蛋白表达于在C-端有标记和AVI标记的HK293细胞。它含有……。分子量大约41.3公里。由于糖基化,蛋白质迁移到70-100kda基于三联页面结果。纯度SDS-PAGE和高效液相色谱法测定的95%。Recombinant Mouse CD4/LEU3 Protein,His Tag糖苷内切酶 H 是一种重组糖苷酶,能够对 N-糖蛋白中的高甘露糖和某些杂合型寡聚糖的壳二糖结构进行切割。

Recombinant Human ACE2/ACEH Protein,hFc Tag性能参数,分子别名(Synonyms)ACE2;ACEH;ACE-2表达区间及表达系统(Source)HumanACE2/ACEHProteinisexpressedfromHEK293withhFctagattheC-Terminus.ItcontainsGln18-Ser740.[Accession|Q9BYF1-1]分子量大小(MolecularWeight)TheproteinhasapredictedMWof109.2kDa.Duetoglycosylation,theproteinmigratesto115-130kDabasedonSDS-PAGEresult.Endotoxin)Lessthan1EUperμgbytheLALmethod.纯度(Purity)>95%asdeterminedbySDS-PAGEandHPLC.活性(Activity)ELISAData:ImmobilizedSARS-COV-2SpikeS(B.1.1.529/Omicron)Trimer,HisTagat1μg/ml(100μl/well)ontheplate.DoseresponsecurveforHumanACE2,hFcTagwiththeEC50of13.7ng/mldeterminedbyELISA.制剂(Formulation)Lyophilizedfrom0.22μmfilteredsolutioninPBS(pH7.4).Normally8%trehaloseisaddedasprotectantbeforelyophilization.重构方法(Reconstitution)Centrifugethetubebeforeopening.Reconstitutingtoaconcentrationmorethan100μg/mlisrecommended.Dissolvethelyophilizedproteinindistilledwater.
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.S还具有抑制髓样细胞增殖的能力,髓样细胞增殖是Eotaxin不共有的生物学功能。

Trop-2,alsoknownasepithelialglycoprotein-1antigen(EGP-1),isaproteinthatinhumansisencodedbytheTACSTD2gene.Mutationsofthisgeneresultingelatinousdrop-likecornealdystrophy,anautosomalrecessivedisordercharacterizedbyseverecornealamyloidosisleadingtoblindness.产品性质别名EGP1;EGP-1;TROP2;GA733-1;gp50;T16;TACSTD2;TROP-2;M1S1;TACD2UniprotNo.P09758表达区间及表达系统RecombinantBiotinylatedHumanTROP-2/TACSTD2ProteinisexpressedfromHEK293cellswithHistagandAvitagattheC-terminal.ItcontainsHis27-Thr274.分子量TheproteinhasapredictedMWof30.5kDa.Duetoglycosylation,theproteinmigratesto46-55kDabasedonTris-BisPAGEresult.纯度>95%asdeterminedbySDS-PAGEandHPLC活性ELISAData:ImmobilizedAnti-TROP-2Antibody,hFcTagat0.5μg/mL(100μL/well)ontheplate.DoseresponsecurveforBiotinylatedHumanTROP-2,HisTagwiththeEC50of24.1ng/mLdeterminedbyELISA.0EUper1μgoftheproteinbytheLALmethod.制剂Lyophilizedfrom0.22μmfilteredsolutioninPBS(pH7.4).Normally5%trehaloseisaddedasprotectantbeforelyophilization.Kex2不能识别和切割单一碱性氨基酸即精氨酸或赖氨酸的羧基端肽键。Recombinant Human Lysozyme重组人溶菌酶(植物表达)
猴痘病毒A30蛋白是病毒进入宿主与细胞-细胞融合过程中所需的包膜蛋白,被认为是猴痘病毒研究中的重要靶点。Recombinant Cynomolgus NOGOR Protein,His Tag
Recombinant Biotinylated Human HBV (HLA-A*02:01) Protein,His-Avi Tag性能参数表达区间及表达系统(Source)RecombinantBiotinylatedHumanHBV(HLA-A*02:01)ProteinisexpressedfromHEK293withHistagandAvitagattheC-terminalItcontainsGly25-Thr305(HLA-A*02:01),Ile21-Met119(B2M)andFLLTRILTIpeptide.[Accession|A0A140T913(HLA-A*02:01)&P61769(B2M)&FLLTRILTIpeptide]分子量大小(MolecularWeight)TheproteinhasapredictedMWof50.5kDa.Duetoglycosylation,theproteinmigratesto52-62kDabasedonTris-BisPAGEresult.(Endotoxin)Lessthan1EUperμgbytheLALmethod.纯度(Purity)>95%asdeterminedby>95%asdeterminedbyHPLC制剂(Formulation)Lyophilizedfrom0.22μmfilteredsolutioninPBS(pH7.4).Normally8%trehaloseisaddedasprotectantbeforelyophilization.重构方法(Reconstitution)Centrifugetubesbeforeopening.Reconstitutingtoaconcentrationmorethan100μg/mlisrecommended.Dissolvethelyophilizedproteinindistilledwater.Recombinant Cynomolgus NOGOR Protein,His Tag
甲醇代谢通路是毕赤酵母更标志性的生理特征,也是其实现外源蛋白可控表达的关键机制,只在甲醇诱导条件下特异性启动。自然状态下,毕赤酵母优先利用葡萄糖、甘油等常规碳源,此时甲醇代谢相关基因完全沉默,避免能量浪费。当培养基中只留存甲醇作为碳源时,菌株会快速启动关键代谢基因,开启甲醇分解代谢过程。其代谢关键流程为:甲醇在醇氧化酶作用下生成甲醛,再经脱氢酶催化生成甲酸,更终分解为二氧化碳与水,同时为菌体生长与蛋白合成提供能量。该通路中的AOX1、AOX2启动子具备极强的甲醇诱导特异性,且表达调控严谨,无甲醇时几乎无本底表达,添加甲醇后可快速启动下游基因高效转录。科研人员利用这一特性,将外源目的基因与AOX...