牛凝血酶(Bovine Thrombin),作为一种高特异性的丝氨酸蛋白水解酶,具有重要的生物学功能的科研应用。本文综述了牛凝血酶的分子特性、生物学作用及其在医学研究中的应用。引言凝血酶是血液凝固过程中的关键酶,负责将纤维蛋白原转化为纤维蛋白,从而促进血栓形成。牛凝血酶因其高比活度(>2000 IU/mg)和高纯度,在生物医学研究中用作工具酶。材料与方法产品来源与纯化:牛凝血酶从牛血浆中提取,并通过一系列生物技术手段进行纯化。活性测定:利用特定的底物或荧光共振能量转移(FRET)底物测定凝血酶活性。应用研究:通过体外实验和体内模型,研究牛凝血酶在血液学、分子生物学和药物开发中的应用。结果分子特性:牛凝血酶由两条肽链组成,分子量约为37 KD,具有高度的专一性和高效的催化能力。生物学作用:牛凝血酶能够催化纤维蛋白原水解释放A肽和B肽,形成纤维蛋白单体,参与血液凝固和伤口愈合。科研应用:牛凝血酶在重组蛋白的特异性断裂、基因工程产品开发、以及作为诊断学中的凝血化验工具等方面展现出重要价值。PNGase F是一种酰胺水解酶,能够特异性地裂解糖蛋白中由天冬酰胺连接的高甘露糖、杂合和复杂型的寡糖。Recombinant Human IL-18RAP Protein,hFc Tag

重组型TEV蛋白酶(rTEV)是经过基因工程改造和纯化后的重组蛋白酶,不*保持天然TEV酶的功能活性,且在广谱的温度范围内表现出更强的稳定性和特异性。rTEV是一种用来切除融合蛋白上亲和标签的常用工具酶,具有很强的位点特异性,严格识别七氨基酸序列EXXYXQ↓(G/S),切割位点在谷氨酰胺和甘氨酸/丝氨酸之间。普遍应用的七氨基酸序列为:Glu-Asn-Leu-Tyr-Phe-Gln↓-Gly。rTEV在pH7.0,30℃时可达活性,但在pH6.0-8.5和温度4-30℃范围内皆有活性(见表1),使得反应条件的选择可根据目的蛋白的情况而灵活变动。另外rTEV切割后也能利用其N端的6×His标签,通过Ni-NTA树脂去除,以达到纯化目的蛋白的目的。产品性质来源(Source)大肠杆菌外观(Appearance)无色透明液体比活力(SpecificActivity)5U/μL活性定义(UnitDefinition)在1×rTEVBuffer(50mMTris,pH8.0,0.1mMEDTA,1mMDTT)中,30℃反应1h,剪切>85%的3μg底物所需要的酶量定义为一个活性单位。纯化(Purification)Ni柱亲和纯化纯度(Purity)≥95%(bySDS-PAGE)产品组分运输与保存方法冰袋运输。Recombinant Human Activin RIIB/ACVR2B Protein,His Tag泛素蛋白在细胞内发挥着调节蛋白质降解的作用,通过泛素-蛋白酶体途径标记蛋白质,被蛋白酶体识别并降解。

RecombinantBiotinylatedHumanAFP(HLA-A*02:03)Protein,His-AviTag性能参数表达区间及表达系统(Source)RecombinantBiotinylatedHumanAFP(HLA-A*02:03)ProteinisexpressedfromHEK293withHistagandAvitagattheC-terminal..ItcontainsGly25-Thr305(HLA-A*02:03),Ile21-Met119(B2M)andFMNKFIYEIpeptide.[Accession|AAA03604.1(HLA-A*02:03)&P61769(B2M)&FMNKFIYEI]分子量大小(MolecularWeight)TheproteinhasapredictedMWof50.70kDa.Duetoglycosylation,theproteinmigratesto53-60kDabasedonTris-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.
AngiotensinIConvertingEnzyme(ACE-2),alsocalledACEH(ACEhomologue),isadimeric,zinc-dependentmetalloproteaseoftheACEfamilythatalsoincludessomaticandgerminalACE.ACE-2mRNAisfoundathighlevelsinheart,testis,andkidneyandatlowerlevelsinawidevarietyoftissues.ACE-2istheSARS-CoVandSARS-CoV2Spikeproteinreceptorinvivo,functionscatalyticallyasacarboxypeptidasetocleaveseveralsubstratesincludingangiotensinsIandII,andactsasapartnerforB0AT1-familyaminoacidtransporters.Throughthesefunctions,ACE-2hasbeenshowntobeinvolvedinseveraldiseasesincludingSARS,COVID19,acutelunginjury,heartdisease,liverandlungfibrosis,inflammatorylungdisease,andcardiopulmonarydisease.FulllengthACE-2proteinincludesanextracellularregioncomposedofasingleN-terminalpeptidasedomainandC-terminalcollectrin-likedomain(CLD),atransmembranedomain,andashortcytoplasmictail.TheN-terminalpeptidaseregionisrequiredforbindingtoSARS-CoVandSARS-CoV2spikeproteins,whiletheCLDcontainsaregionthatpromotesdimerizationandassociationwithaminoacidtransporters.在蛋白质表达体系中,肠激酶常用于切割融合标签,从而释放出目的蛋白,特别是在pET表达系统中。

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.跨膜蛋白的跨膜区域的相互作用是连接膜外环境与细胞内环境的重要渠道。Recombinant Human CD300c/LMIR2 Protein,His Tag
GPCR家族是一类存在于生物体中的跨膜蛋白,它们可以识别并与外界分子相互作用,引发各种细胞内信号。Recombinant Human IL-18RAP Protein,hFc Tag
RecombinantBiotinylatedHumanHLA-A*03:01&B2M&KRASG12V(VVGAVGVGK)MonomerProtein,His-AviTag性能参数分子别名(Synonyms)MHC;KRAS;K-Ras2;KRAS2;C-K-RAS;CFC2;K-RAS2A;K-RAS2B;K-RAS4A;K-RAS4B;KRAS1;KRAS2;NS;NS3;RASK2;GTPaseKras;KI-RAS;RALD表达区间及表达系统(Source)BiotinylatedHumanHLA-A*03:01&B2M&KRASG12V(VVGAVGVGK)MonomerProteinisexpressedfromHEK293withHistagandAvitagattheC-TerminusItcontainsGly25-Thr305(HLA-A*03:01),Ile21-Met119(B2M)andVVGAVGVGKpeptide.[Accession|NP_002107.3(HLA-A*03:01)&P61769(B2M)&VVGAVGVGK]分子量大小(MolecularWeight)TheproteinhasapredictedMWof50.09kDa.Duetoglycosylation,theproteinmigratesto51-60kDabasedonSDS-PAGEresult.(Endotoxin)Lessthan1EUperμgbytheLALmethod.纯度(Purity)>95%asdeterminedbySDS-PAGEandHPLC.制剂(Formulation)Suppliedas0.22μmfilteredsolutioninPBS(pH7.4).Recombinant Human IL-18RAP Protein,hFc 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...