亚洲国产成人无码AV在线播放,亚洲色偷拍另类无码专区,亚洲AV日韩AV永久无码久久,国产手机在线精品

技術(shù)文章您現(xiàn)在的位置:首頁(yè) > 技術(shù)文章 > Broadpharm知識(shí)課堂什么是生物素化?What is Biotinylation?

Broadpharm知識(shí)課堂什么是生物素化?What is Biotinylation?

更新時(shí)間:2024-10-19   點(diǎn)擊次數(shù):828次

生物素(Biotin)為B族維生素之一,又稱(chēng)維生素H、維生素B7、輔酶R(Coenzyme R)等。生物素是一種水溶性維生素,屬于B族維生素的一種。

生物素化,也稱(chēng)為生物素標(biāo)記,是將生物素共價(jià)連接到生物分子(如蛋白質(zhì)、抗體、肽、寡核苷酸和其他大分子)的過(guò)程。該反應(yīng)是快速、特異性的,并且由于生物素體積小 (MW = 244.31) 而不太可能干擾生物分子的自然功能。

生物素與鏈霉親和素和親和素特異性結(jié)合,形成具有強(qiáng)親和力 (Kd, ~ 10-14 mol/L) 和快速接通速率的復(fù)合物。即使在高/低 pH 值、高溫、高鹽濃度等惡劣條件下,復(fù)合物也非常穩(wěn)定。

生物素-親和素和鏈霉親和素系統(tǒng)廣泛用于靶抗原/細(xì)胞的檢測(cè)和分離。這些應(yīng)用包括免疫測(cè)定(ELISA 和 Western 是常規(guī)應(yīng)用)、親和色譜、沉降測(cè)定、超分子構(gòu)建、靶向癌細(xì)胞進(jìn)行藥物遞送等。最近,基于生物素-(strept)親和素相互作用和磁珠的蛋白質(zhì)/細(xì)胞分離的應(yīng)用需求不斷增加。


Broadpharm知識(shí)課堂什么是生物素化?What is Biotinylation?

Biotinylation, also known as biotin labeling, is the process of covalently attaching biotin(s) to biomolecules: such as proteins, antibodies, peptide, oligonucleotide, and other macromolecules. The reaction is rapid, specific and is unlikely to disturb the natural function of the biomolecules due to the small size of biotin (MW = 244.31).

Biotin specifically binds to streptavidin and avidin to form a complex with an extremely high affinity (Kd, ~ 10-14 mol/L) and fast on-rate. The complexes are very stable under even extreme conditions such as high/low pH, high temperature, high salt concentrations, etc.

Biotin-avidin and streptavidin systems are widely used in detection and separation of target antigens/cells. These applications include immunoassays (ELISAs and Westerns being the most popular applications), affinity chromatography, pull-down assays, supramolecular construction, targeting of cancer cells for drug delivery, and many others. Recently, there are increasing application demands for protein/cell separation based on biotin-(strept)avidin interaction and magnetic beads.


Broadpharm知識(shí)課堂什么是生物素化?What is Biotinylation?

Figure 1. biotin labeled antibody binds with streptavidin or avidin (four binding site available, only one is shown to binding to biotin).


Biotinylation Chemistry

For biotinylation chemistry, the most common reactions involve amines with biotin-NHS ester and click chemistry of azide with an alkyne (e.g. DBCO), as shown in Figure 2.


Broadpharm知識(shí)課堂什么是生物素化?What is Biotinylation?
Figure 2. NHS-amine chemistry (A) and click chemistry between azide-DBCO (B).


Biotinylation Reagent in Biotin Labeling

The selection of biotinylation reagent should consider a few factors: target functional group, water solubility, cell membrane permeability, cleavability, and length of the reagent.

The functional groups can be click chemistry reactive, amine reactive, carbonyl reactive, carboxyl reactive, and sulfhydryl reactive (Figure 3). There are also reversible and cleavable biotinylation reagents to help with the specific elution of biotinylated proteins.

Pegylated biotin reagents are particularly attractive due to their water solubility, no toxicity, and low immunogenic properties. Monodispersed PEGs have a well-defined chain length, allowing for specific biotin-based complexes to be designed and studied.


Broadpharm知識(shí)課堂什么是生物素化?What is Biotinylation?
Figure 3. Examples of BroadPharm's Pegylated biotinylation reagent with R 1 and R 2 options for functional groups.


In addition, BroadPharm provides desthiobiotin products for special application, such as affinity purification. Desthiobiotin is a modified form of biotin that binds less tightly to avidin and streptavidin than biotin while still providing excellent specificity. Unlike biomolecules that are labeled with biotin, proteins and other targets labeled with desthiobiotin can be eluted under a soft, mild elute conditions to avoid denaturing the protein of interest.

BroadPharm is a leader of biotinylation reagents that help advance our customer's research, and offers a variety of pegylated and non-pegylated biotinylation reagents to meet your requirement.

Journal Reference:

1. Cull and Schatz, "Biotinylation of proteins in vivo and in vitro using small peptide tags", Methods in Enzymology, 326, (2000): 430-440

2. Minde, et al., "Biotin proximity tagging favours unfolded proteins and enables the study of intrinsically disordered regions", Communications Biology, 3, 38, (2020): 1-13



靶點(diǎn)科技(北京)有限公司

靶點(diǎn)科技(北京)有限公司

地址:中關(guān)村生命科學(xué)園北清創(chuàng)意園2-4樓2層

© 2025 版權(quán)所有:靶點(diǎn)科技(北京)有限公司  備案號(hào):京ICP備18027329號(hào)-2  總訪問(wèn)量:293724  站點(diǎn)地圖  技術(shù)支持:化工儀器網(wǎng)  管理登陸

日本乱偷互换人妻中文字幕| 奴役 支配 性狂虐 电击 极端| 特大欧美黑人巨大xxoo| 久久夜色精品国产欧美乱| 欧美裸体XXXX极品少妇| 亚洲一区二区三区国产精华液| 免费A级毛片在线播放不收费| 老狼影院成年女人大片| 久久9精品区-无套内射无码| 军人的粗大(h)拔不出来| 国产精品久久久久久久久久直播| 色欲AV永久无码精品无码蜜桃| 国产18禁黄网站免费观看| 在线观看伦理片| 精品一区二区三区免费毛片w| 国产精品久久久久久AV| 九色丨PORNY丨自拍 ICU| 亚洲精品97久久中文字幕无码| 欧美疯狂做受XXXX高潮小说| 被学长抱进小树林c个爽| 国产黄大片在线观看| 高清欧美性猛交XXXX黑人猛交 | 久久精品人人做人人爽电影蜜桃| japanesexxx护士老师| 人人妻人人澡人人爽人人精品浪潮 | 亚洲精品第一国产综合亚AV| 欧美乱强伦XXXXX高潮| 日日躁夜夜躁狠狠久久AV| 精品无码人妻一区二区免费蜜桃| 中国女人做爰a片| 人善交videos欧美3d| 公交车上内裤滑进去了会怎么样| 边摸边脱吃奶边高潮视频免费| 久久精品免费一区二区三区 | 精品一区二区三区免费播放| 国产欧美久久久久久精品一区二区 | 免费看又黄又无码的网站| 张柏芝做爰全过程视频| 掀开奶罩边躁狠狠躁软学生电影| 我和小娻孑在卧室做了| 啦啦啦资源视频在线观看8|