實驗原理 :
(1)公司產(chǎn)品僅用于科研特異性結(jié)合抗原:抗體本身不能直接溶解或殺傷帶有特異抗原的靶細胞,通常需要補體或吞噬細胞等共同發(fā)揮效應以清除病原微生物或?qū)е虏±頁p傷。然而,抗體可通過與病毒或毒素的特異性結(jié)合,直接發(fā)揮中和病毒的作用。
(2)活補體:IgM、IgG1、IgG2和IgG3可通過經(jīng)典途徑激活補體,凝聚的IgA、IgG4和IgE可通過替代途徑激活補體。
(3)結(jié)合細胞:不同類別的免疫球蛋白,可結(jié)合不同種的細胞,參與免疫應答。
(4)可通過胎盤及粘膜:免疫球蛋白G(IgG)能通過胎盤進入胎兒血流中,使胎兒形成自然被動免疫。免疫球蛋白A(IgA)可通過消化道及呼吸道粘膜,是粘膜局部抗感染免疫的主要因素。
(5)具有抗原性:抗體分子是一種蛋白質(zhì),也具有刺機體產(chǎn)生免疫應答的性能。不同的免疫球蛋白分子,各具有不同的抗原性。
(6)抗體對理化因子的抵抗力與一般球蛋白相同:不耐熱,60~70℃即被破壞。各種酶及能使蛋白質(zhì)凝固變性的物質(zhì),均能破壞抗體的作用??贵w可被中性鹽類沉淀。在生產(chǎn)上??捎昧蛩徜@或硫酸鈉從免疫血清中沉淀出含有抗體的球蛋白,再經(jīng)透析法將其純化。
商品詳情:
英文名稱:phospho-PKC beta 1 + PKC beta 2(Thr500)
別 名:PKC beta 1 + PKC beta 2 (phospho T500); PKC beta 1(phospho T500); KPCB_HUMAN; PKC beta; PKC-B; PKC-beta; PKCB; PKCB1; PKCB2; Prkcb; PRKCB I; PRKCB II; PRKCB1; PRKCB2; Protein kinase C beta 1; Protein kinase C beta 2; Protein kinase C beta; Protein kinase C beta type.
產(chǎn)品類型磷酸化抗體
研究領(lǐng)域:腫瘤 細胞生物 免疫學 神經(jīng)生物學 信號轉(zhuǎn)導 細胞凋亡 激酶和磷酸酶
抗體來源:Rabbit
克隆類型:Polyclonal
交叉反應:Human, (predicted: Mouse, Rat, Chicken, Cow, Horse, Rabbit, )
產(chǎn)品應用:WB=1:500-2000 ELISA=1:5000-10000 IHC-P=1:100-500 IHC-F=1:100-500 Flow-Cyt=1ug/Test IF=1:100-500 (石蠟切片需做抗原修復)
not yet tested in other applications.
optimal dilutions/concentrations should be determined by the end user.
理論分子量:77kDa
細胞定位:細胞核 細胞漿 細胞膜
性 狀:Liquid
濃 度:1mg/ml
免 疫 原:KLH conjugated Synthesised phosphopeptide derived from human PRKCZ around the phosphorylation site of Thr500: TK(p-T)FC
亞 型:IgG
純化方法:affinity purified by Protein A
保存條件:Shipped at 4℃. Store at -20 °C for one year. Avoid repeated freeze/thaw cycles.
注意事項:This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
產(chǎn)品介紹:Protein kinase C (PKC) is a family of serine- and threonine-specific protein kinases that can be activated by calcium and second messenger diacylglycerol. PKC family members phosphorylate a wide variety of protein targets and are known to be involved in diverse cellular signaling pathways. PKC family members also serve as major receptors for phorbol esters, a class of tumor promoters. Each member of the PKC family has a specific expression profile and is believed to play a distinct role in cells. The protein encoded by this gene is one of the PKC family members. This protein kinase has been reported to be involved in many different cellular functions, such as B cell activation, apoptosis induction, endothelial cell proliferation, and intestinal sugar absorption. Studies in mice also suggest that this kinase may also regulate neuronal functions and correlate fear-induced conflict behavior after stress. Alternatively spliced transcript variants encoding distinct isoforms have been reported.
Function:
Calcium-activated, phospholipid- and diacylglycerol (DAG)-dependent serine/threonine-protein kinase involved in various cellular processes such as regulation of the B-cell receptor (BCR) signalosome, oxidative stress-induced apoptosis, androgen receptor-dependent transcription regulation, insulin signaling and endothelial cells proliferation. Plays a key role in B-cell activation by regulating BCR-induced NF-kappa-B activation. Mediates the activation of the canonical NF-kappa-B pathway (NFKB1) by direct phosphorylation of CARD11/CARMA1 at 'Ser-559', 'Ser-644' and 'Ser-652'. Phosphorylation induces CARD11/CARMA1 association with lipid rafts and recruitment of the BCL10-MALT1 complex as well as MAP3K7/TAK1, which then activates IKK complex, resulting in nuclear translocation and activation of NFKB1. Plays a direct role in the negative feedback regulation of the BCR signaling, by down-modulating BTK function via direct phosphorylation of BTK at 'Ser-180', which results in the alteration of BTK plasma membrane localization and in turn inhibition of BTK activity. Involved in apoptosis following oxidative damage: in case of oxidative conditions, specifically phosphorylates 'Ser-36' of isoform p66Shc of SHC1, leading to mitochondrial accumulation of p66Shc, where p66Shc acts as a reactive oxygen species producer. Acts as a coactivator of androgen receptor (ANDR)-dependent transcription, by being recruited to ANDR target genes and specifically mediating phosphorylation of 'Thr-6' of histone H3 (H3T6ph), a specific tag for epigenetic transcriptional activation that prevents demethylation of histone H3 'Lys-4' (H3K4me) by LSD1/KDM1A. In insulin signaling, may function downstream of IRS1 in muscle cells and mediate insulin-dependent DNA synthesis through the RAF1-MAPK/ERK signaling cascade. May participate in the regulation of glucose transport in adipocytes by negatively modulating the insulin-stimulated translocation of the glucose transporter SLC2A4/GLUT4. Under high glucose in pancreatic beta-cells, is probably involved in the inhibition of the insulin gene transcription, via regulation of MYC expression. In endothelial cells, activation of PRKCB induces increased phosphorylation of RB1, increased VEGFA-induced cell proliferation, and inhibits PI3K/AKT-dependent nitric oxide synthase (NOS3/eNOS) regulation by insulin, which causes endothelial dysfunction. Also involved in triglyceride homeostasis (By similarity).
商品屬性:
產(chǎn)品名稱 | 規(guī)格 | 貨號 |
磷酸化蛋白激酶C(T500)抗體 | 50ul、100ul、200ul | CS-A3258 |
抗體的標記實驗要點:
1.如在反應混合液中有疊氮鈉或游離氨基存在,會抑制標記反應。因此,蛋白質(zhì)在反應前要對 0.1mol/L緩沖液或0.5mol/L硼酸緩沖液充分透析;
2.所用的NHSB及待化蛋白質(zhì)之間的分子比按蛋白質(zhì)表面的ε-氨基的密度會有所不同,選擇不當則影響標記的效率,應先用幾個不同的分子比來篩選最適條件;
3.用NHSB量過量也是不利的,抗原的結(jié)合位點可能因此被封閉,導致抗體失活;
4.由于抗體的氨基不易接近可能造成化不足,此時可加入去污劑如 Triton x-100, Tween20等;
5.當游離ε-氨基(賴氨酸殘基的氨基)存在于抗體的抗原結(jié)合位點時,或位于酶的催化位點時,化會降低或損傷抗體蛋白的結(jié)合力或活性;
6.還可能與不同的功能基團,如羰基、氨基、巰基、異咪唑基及基,也可與糖基共價結(jié)合;
7.交聯(lián)反應后,應充分透析,否則,殘余的會對化抗體與親和素的結(jié)合產(chǎn)生競爭作用;
8.在細胞的熒光標記實驗中,中和親和素的本底低,但由于鏈霉親和素含有少量正電荷,故對某些細胞可導致高本底。
一抗和二抗的區(qū)別:
第一抗體就是平常所說的抗體,即能和抗原特異性結(jié)合。
第二抗體是能和抗體結(jié)合的,即抗體的抗體。主要用于檢測抗體的存在。
一抗是針對抗原的抗體,二抗是針對一抗的抗體。即抗體也可以充當抗原刺激機體產(chǎn)生抗體。也就是說,抗原進入機體刺激機體免疫系統(tǒng)產(chǎn)生免疫應答,由B細胞可以產(chǎn)生與相應抗原發(fā)生特異性結(jié)合的特殊蛋白質(zhì)。
一抗二抗都是一種可以特異結(jié)合別的物質(zhì)的基團,而且一抗可以至少結(jié)合兩種其他基團(底物和二抗)。
一抗:可以特異結(jié)合底物,就是識別出我們想要檢測的東西。一抗和底物結(jié)合與否用肉眼是看不出來的。
二抗:可以和一抗結(jié)合,并帶有可以被檢測出的標記(如帶熒光、放射性、化學發(fā)光或顯色基團),作用是檢測一抗。 如果一抗自己帶有可以被檢測出的標記(如帶熒光、放射性、化學發(fā)光或顯色基團),則不需要二抗。但這樣成本很高,因為一種一抗只識別一種底物。所以如今的設計一般是二抗帶上可檢測標記,再來檢測一抗。而一抗識別底物。這樣,當一抗結(jié)合到底物上,就可以通過二抗檢測出來。
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