货号:
XGK1387
保存条件:
详见说明书
浓度:
1mg/1ml
应用范围:
WB=1:100-500 ELISA=1:500-1000 IP=1:20-100 IHC-P=1:100-500 IHC-F=1:100-500 IF=1:100-500
形态:
详见说明书
亚型:
IgG
免疫原:
KLH conjugated synthetic peptide derived from Yellow fever virus envelope glycoprotein E (IIVGRGDSRLTY)
适应物种:
详见说明书
宿主:
详见说明书
标记物:
详见说明书
抗体名:
黄热病毒包膜糖蛋白抗体
抗体英文名:
Anti-Yellow fever virus envelope glycoprotein E
保质期:
详见说明书
抗原来源:
Rabbit
克隆性:
多克隆
目录编号:
详见说明书
级别:
详见说明书
靶点:
详见说明书
数量:
37
供应商:
上海西格
规格:
0.1ml/100μg 0.2ml/200μg
公司专业供应的抗体,抗体是用于化学反应、分析化验、研究实验、教学实验、化学配方使用的纯净化学品,产品品质,价格实惠,多种规格供应,售后完善。 产品名称 | 英文名称 | 货号 |
黄热病毒包膜糖蛋白抗体 | Anti-Yellow fever virus envelope glycoprotein E抗体 | XGK1387 |
英文名称 Anti-Yellow fever virus envelope glycoprotein E
中文名称 黄热病毒包膜糖蛋白抗体
别 名 Envelope protein E; Genome polyprotein; polyprotein [Yellow fever virus]; polyprotein YFV; POLG_YEFV1.浓 度 1mg/1ml规 格 0.2ml/200μg 1ml/1mg抗体来源 Rabbit克隆类型 polyclonal交叉反应 Yellowfevervirus产品类型 一抗研究领域 免疫学 细菌及病毒蛋白分子量 predicted molecular weight: 54/375kDa性 状 Lyophilized or Liquid免 疫 原 KLH conjugated synthetic peptide derived from Yellow fever virus envelope glycoprotein E (IIVGRGDSRLTY)亚 型 IgG纯化方法 affinity purified by Protein A储 存 液 0.01M PBS, pH 7.4 with 10 mg/ml BSA and 0.1% Sodium azide产品应用 WB=1:100-500 ELISA=1:500-1000 IP=1:20-100 IHC-P=1:100-500 IHC-F=1:100-500 IF=1:100-500(石蜡切片需做抗原修复)not yet tested in other applications.optimal dilutions/concentrations should be determined by the end user.保存条件 Store at -20 °C for one year. Avoid repeated freeze/thaw cycles. The lyophilized antibody is stable at room temperature for at least one month and for greater than a year when kept at -20°C. When reconstituted in sterile pH 7.4 0.01M PBS or diluent of antibody the antibody is stable for at least two weeks at 2-4 °C.Important Note This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.产品介绍 Envelope protein E binding to host cell surface receptor is followed by virus internalization through clathrin-mediated endocytosis. Envelope protein E is subsequently involved in membrane fusion between virion and host late endosomes. Synthesized as a homodimer with prM which acts as a chaperone for envelope protein E. After cleavage of prM, envelope protein E dissociate from small envelope protein M and homodimerizes.Function : Capsid protein C self-assembles to form an icosahedral capsid about 30 nm in diameter. The capsid encapsulates the genomic RNA.prM acts as a chaperone for envelope protein E during intracellular virion assembly by masking and inactivating envelope protein E fusion peptide. prM is matured in the last step of virion assembly, presumably to avoid catastrophic activation of the viral fusion peptide induced by the acidic pH of the trans-Golgi network. After cleavage by host furin, the pr peptide is released in the extracellular medium and small envelope protein M and envelope protein E homodimers are dissociated.Envelope protein E binding to host cell surface receptor is followed by virus internalization through clathrin-mediated endocytosis. Envelope protein E is subsequently involved in membrane fusion between virion and host late endosomes. Synthesized as a homodimer with prM which acts as a chaperone for envelope protein E. After cleavage of prM, envelope protein E dissociate from small envelope protein M and homodimerizes.Non-structural protein 1 is involved in virus replication and regulation of the innate immune response.Non-structural protein 2A may be involved viral RNA replication and capsid assembly (Potential).Non-structural protein 2B is a required cofactor for the serine protease function of NS3.Serine protease NS3 displays three enzymatic activities: serine protease, NTPase and RNA helicase. NS3 serine protease, in association with NS2B, performs its autocleavage and cleaves the polyprotein at dibasic sites in the cytoplasm: C-prM, NS2A-NS2B, NS2B-NS3, NS3-NS4A, NS4A-2K and NS4B-NS5. NS3 RNA helicase binds RNA and unwinds dsRNA in the 3' to 5' direction (By similarity).Non-structural protein 4A induces host endoplasmic reticulum membrane rearrangements leading to the formation of virus-induced membranous vesicles hosting the dsRNA and polymerase, functioning as a replication complex. NS4A might also regulate the ATPase activity of the NS3 helicase (By similarity).
一抗和二坑的区别:
抗体就是平常所说的抗体,即能和抗原特异性结合。
第二抗体是能和抗体结合的,即抗体的抗体。主要用于检测抗体的存在。
一抗是针对抗原的抗体,二抗是针对一抗的抗体。即抗体也可以充当抗原刺激机体产生抗体。也就是说,抗原进入机体刺激机体免疫系统产生免疫应答,由B细胞可以产生与相应抗原发生特异性结合的特殊蛋白质。
一抗二抗都是一种可以特异结合别的物质的基团,而且一抗可以至少结合两种其他基团(底物和二抗)。
一抗:可以特异结合底物,就是识别出我们想要检测的东西。一抗和底物结合与否用肉眼是看不出来的。
二抗:可以和一抗结合,并带有可以被检测出的标记(如带荧光、放射性、化学发光或显色基团),作用是检测一抗。 如果一抗自己带有可以被检测出的标记(如带荧光、放射性、化学发光或显色基团),则不需要二抗。但这样成本很高,因为一种一抗只识别一种底物。所以如今的设计一般是二抗带上可检测标记,再来检测一抗。而一抗识别底物。这样,当一抗结合到底物上,就可以通过二抗检测出来。 抗体的制备过程:
1. 免疫原的制备
普通的大分子蛋白,通过分子克隆构建载体并在大肠杆菌中进行诱导表达获得重组蛋白,纯化鉴定后可直接作为免疫原。
小分子蛋白或化合物等分子量小,需要偶联载体对该分子进行改造才能使其成为具有免疫原性的抗原,常见偶联载体如BSA、OVA、HAS等。
2. 免疫动物
常用于制备抗血清的动物有豚鼠、家兔、鸡、大小鼠等,大量生产时需要用到狗、绵羊、山羊等。
3. 免疫血清的收集
一般家兔、绵羊、山羊可采用静动脉采血,家兔、豚鼠、大鼠、鸡可采用心脏采血,家兔、山羊、绵羊可采用静脉采血。
4. 免疫血清的纯化与鉴定
得到的抗血清需要进一步的纯化,利用偶联了抗原的亲和柱进行层析,具有GX,特异性强,纯度高的特定。接着要鉴定纯化蛋白的含量、相对分子的质量、纯度以及特异性。
5. 免疫血清的保存
建议将Anti-Yellow fever virus envelope glycoprotein E抗体分装后进行保存。抗体一般比较稳定,在-80℃ ~-20 ℃可以保存约5年而不会影响效价,而真空干燥保存时间可以更久。保存前需经CJ并添加防腐剂。抗体的生物素化标记实验要点:
1.如在反应混合液中有或游离氨基存在,会YZ标记反应。因此,蛋白质在反应前要对 0.1mol/L碳酸氢钠缓冲液或0.5mol/L硼酸缓冲液充分透析;
2.所用的NHSB及待生物素化蛋白质之间的分子比按蛋白质表面的ε-氨基的密度会有所不同,选择不当则影响标记的效率,应先用几个不同的分子比来筛选Z适条件;
3.用NHSB量过量也是不利的,抗原的结合位点可能因此被封闭,导致抗体失活;
4.由于抗体的氨基不易接近可能造成生物素化不足,此时可加入去污剂如 Triton x-100, Tween20等;
5.当游离ε-氨基(赖氨酸残基的氨基)存在于抗体的抗原结合位点时,或位于酶的催化位点时,生物素化会降低或损伤抗体蛋白的结合力或活性;
6.生物素还可能与不同的功能基团,如羰基、氨基、巯基、异咪唑基及苯酚基,也可与糖基共价结合;
7.交联反应后,应充分透析,否则,残余的生物素会对生物素化抗体与亲和素的结合产生竞争作用;
8.在细胞的荧光标记实验中,中和亲和素的本底低,但由于链霉亲和素含有少量正电荷,故对某些细胞可导致高本底。
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