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- 详细信息
- 文献和实验
- 技术资料
- 免疫原:
Synthesized peptide derived from C-terminal of Human EPHB2.
- 亚型:
/
- 形态:
Liquid
- 保存条件:
Upon receipt, store at -20℃ or -80℃. Avoid repeated freeze.
- 克隆性:
Polyclonal
- 标记物:
/
- 适应物种:
Human
- 保质期:
6个月
- 抗原来源:
Homo sapiens (Human)
- 目录编号:
P29323
- 级别:
优
- 库存:
200
- 供应商:
武汉华美生物工程有限公司
- 宿主:
Rabbit
- 应用范围:
ELISA,WB;WB:1:500-1:3000
- 浓度:
>95%,The antibody was affinity-purified from rabbit antiserum by affinity-chromatography using epitope-specific immunogen.
- 靶点:
EPHB2
- 抗体英文名:
EPHB2 Antibody
- 抗体名:
/
- 规格:
100μl
保存缓冲液
/功能
Receptor tyrosine kinase which binds promiscuously transmembrane ephrin-B family ligands residing on adjacent cells, leading to contact-dependent bidirectional signaling into neighboring cells. The signaling pathway downstream of the receptor is referred to as forward signaling while the signaling pathway downstream of the ephrin ligand is referred to as reverse signaling. Functions in axon guidance during development. Involved in the guidance of commissural axons, that form a major interhemispheric connection between the 2 temporal lobes of the cerebral cortex. Also involved in guidance of contralateral inner ear efferent growth cones at the midline and of retinal ganglion cell axons to the optic disk. Beside axon guidance, also regulates dendritic spines development and maturation and stimulates the formation of excitatory synapses. Upon activation by EFNB1, abolishes the ARHGEF15-mediated negative regulation on excitatory synapse formation. Controls other aspects of development including angiogenesis, palate development and in inner ear development through regulation of endolymph production. Forward and reverse signaling through the EFNB2/EPHB2 complex regulate movement and adhesion of cells that tubularize the urethra and septate the cloaca. May function as a tumor suppressor.Kiyokawa E., Cancer Res. 54:3645-3650(1994).
Ikegaki N., Hum. Mol. Genet. 4:2033-2045(1995).
Tang X.X., Oncogene 17:521-526(1998).
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文献和实验在免疫反应方面,基于抗原的刺激在体内形成、并与抗原作特异性结合的蛋白质之总称。其化学实质是免疫球蛋白。抗体,按照抗原抗体反应的类型可分别称为沉淀素、凝集素、溶血素、溶菌素、抗毒素、中和抗体等,但这些并不等于有相应的不同抗体存在,一般多只表明抗体反应的多样性而已。抗体在血清中含量最多(体液抗体=humoral antibody);含有某特定抗体的血清称为抗血或免疫血清。
机体在抗原物质刺激下,由B细胞分化成的浆细胞所产生的、可与相应抗原发生特异性结合反应的免疫球蛋白。因为最初有人用电泳证明血清中抗体活性在γ球蛋白部分,故曾把抗体统称为两种(γ)球蛋白。后来证明,抗体并不都在γ区;而且位于γ区的球蛋白,也不一定都具有抗体活性。1964年,世界卫生组织举行专门会议,将具有抗体活性以及与抗体相关的球蛋白统称为免疫球蛋白(Ig)。如骨髓瘤蛋白,巨球蛋白血症、冷球蛋白血症等患者血清中存在的异常免疫球蛋白以及“正常人”天然存在的免疫
指仅对一种抗原决定基的纯粹的抗体。这类抗体不可能通过将抗原 胞的 Hybridoma,在试管内制成了纯粹的单克隆抗体。用某种抗原使动物产生免疫感应,对应于抗原之不同部分可制成各种不同的抗体复合体。然而,因为一个产生抗体的细胞,只能产生一种抗体,所以骨髓肿瘤细胞与产生抗体细胞间的细胞杂种,可形成边产生抗体边增殖的 hybridoma,将每个杂种细胞进行克隆(无性繁殖系)培养,则一个克隆的细胞群只由单种类产生同一抗体的细胞所组成,这样得到的就是单克隆抗体。此抗体在测定
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