EZ-Link™ 碘乙酰-PEG2-生物素
EZ-Link™ 碘乙酰-PEG2-生物素
Thermo Scientific™

EZ-Link™ 碘乙酰-PEG2-生物素

Thermo Scientific EZ-Link 碘乙酰-PEG2-生物素是一种中等长度、卤乙酰活化的巯基反应性生物素化试剂,其间隔臂中含有 2 单位乙二醇,可提高水溶性特性。EZ-Link 碘乙酰-PEG2-生物素的特点:•蛋白标记—生物素化抗体或用于蛋白方法的其他蛋白• 硫醇反应性—与巯基了解更多信息
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货号数量
2133450 mg
货号 21334
价格(CNY)
5,396.00
Each
添加至购物车
数量:
50 mg
请求批量或定制报价
价格(CNY)
5,396.00
Each
添加至购物车
Thermo Scientific EZ-Link 碘乙酰-PEG2-生物素是一种中等长度、卤乙酰活化的巯基反应性生物素化试剂,其间隔臂中含有 2 单位乙二醇,可提高水溶性特性。

EZ-Link 碘乙酰-PEG2-生物素的特点:

蛋白标记—生物素化抗体或用于蛋白方法的其他蛋白
硫醇反应性—与巯基 (-SH)(如半胱氨酸 (C) 侧链)反应
碘乙酸活化—在 pH 7.5 至 8.5 的黑暗条件下在 Tris 或硼酸盐缓冲液中反应
聚乙二醇化—间隔臂含亲水 2 单位聚乙二醇 (PEG) 基团
增强溶解度—聚乙二醇化使生物素化分子具有水溶性,有助于防止储存在溶液中的生物素化抗体的聚集
不可逆—形成永久性硫醚键;间隔臂不能被裂解
溶解度—可直接溶于水性缓冲液中进行标记反应
中等长度—间隔臂(添加至靶标的总长度)为 24.7 埃

碘乙酰-PEG2-生物素可以对抗体、含半胱氨酸肽和其他含硫醇分子实现简单高效的生物素标记。碘乙酰基团能够在碱性 pH 值下与还原硫醇(巯基基团,—SH)反应,从而形成稳定的硫醚键。亲水 2 单位聚乙二醇 (PEG) 间隔臂可将水溶性转移到生物素化分子,从而减少储存在溶液中的标记蛋白聚集。PEG 段可向间隔臂增加长度和灵活性,以尽可能减少与亲和素分子结合所涉及的空间位阻。

我们生产生物素试剂,以确保尽可能使预期研究应用的总体产品完整性、一致性和性能达到最高水平。

生物素化试剂在反应性、长度、溶解度、细胞渗透性和可裂解性方面不同。三种 巯基反应性化合物可用:马来酰亚胺基、碘乙酰和吡啶基二硫基。碘乙酰试剂在 pH 值 8.3 下与巯基基团 (-SH) 发生特异性反应,形成永久性硫醚键。

在蛋白中,巯基存在于有半胱氨酸 (C) 残基的位置。胱氨酸二硫键必须还原以便获得可进行标记的巯基基团。抗体的铰链区二硫键可以选择性地还原,从而形成可标记的功能性半抗体。
仅供科研使用。不可用于诊断程序。
规格
细胞渗透性细胞不可透过性
标签类型生物素& 类似物
产品线EZ-Link
产品类型碘乙酰-PEG2-生物素
数量50 mg
反应一部分卤乙酰
化学反应性硫醇
标签或染料生物素
溶解度DMF(二甲基甲酰胺), DMSO(二甲亚砜), 水
间隔子中等长度,聚乙二醇化
Unit SizeEach
内容与储存
在 4°C 下干燥储存。在环境温度下运输。

常见问题解答 (FAQ)

What is the advantage of using EZ-Link HPDP-Biotin over maleimide- or iodoacetyl-containing biotinylation reagents?

Both maleimide- and iodoacetyl-containing biotinylation reagents react with sulfhydryl (-SH) groups to form stable thioether bonds that are not cleavable. EZ-Link HPDP-Biotin on the other hand is a pyridyldithiol-biotin compound that reacts with -SH groups in near-neutral buffers to form reversible disulfide bonds. Because the disulfide group can be cleaved using DTT or other reducing agents, HPDP-Biotin is useful for labeling and affinity-purification applications that require recovery of the original, unmodified molecule.

Find additional tips, troubleshooting help, and resources within our Protein Purification and Isolation Support Center.

引用和文献 (5)

引用和文献
Abstract
High-fat diet-induced changes in liver thioredoxin and thioredoxin reductase as a novel feature of insulin resistance.
Authors:Qin H, Zhang X, Ye F, Zhong L
Journal:
PubMed ID:25426412
High-fat diet (HFD) can induce oxidative stress. Thioredoxin (Trx) and thioredoxin reductase (TrxR) are critical antioxidant proteins but how they are affected by HFD remains unclear. Using HFD-induced insulin-resistant mouse model, we show here that liver Trx and TrxR are significantly decreased, but, remarkably, the degree of their S-acylation is ... More
Characterization of transcription factor response kinetics in parallel.
Authors:Bilgin B, Nath A, Chan C, Walton SP
Journal:BMC Biotechnol
PubMed ID:27557669
'Transcription factors (TFs) are effectors of cell signaling pathways that regulate gene expression. TF networks are highly interconnected; one signal can lead to changes in many TF levels, and one TF level can be changed by many different signals. TF regulation is central to normal cell function, with altered TF ... More
Hydrogen Sulfide Inhibits High-Salt Diet-Induced Renal Oxidative Stress and Kidney Injury in Dahl Rats.
Authors:Huang P, Shen Z, Liu J, Huang Y, Chen S, Yu W, Wang S, Ren Y, Li X, Tang C, Du J, Jin H
Journal:Oxid Med Cell Longev
PubMed ID:26823949
'BACKGROUND. The study was designed to investigate if H2S could inhibit high-salt diet-induced renal excessive oxidative stress and kidney injury in Dahl rats. METHODS. Male salt-sensitive Dahl and SD rats were used. Blood pressure (BP), serum creatinine, urea, creatinine clearance rate, and 24-hour urine protein were measured. Renal ultra- and ... More
Redox-proteomes of human NOS1-transduced versus MOCK SH-SY5Y neuroblastoma cells under full nutrition, serum-free starvation, and rapamycin treatment.
Authors:Heidler J, Valek L, Wittig I, Tegeder I
Journal:Data Brief
PubMed ID:30456248
'Upregulations of neuronal nitric oxide synthase (nNOS/NOS1) in the mouse brain upon aging and stress suggest a role of NO-dependent redox protein modifications for age-associated protein imbalances or dysfunctions. We generated a cell model, in which constitutive expression of nNOS in SH-SY5Y cells at a level comparable with mouse brain ... More
The Increased Endogenous Sulfur Dioxide Acts as a Compensatory Mechanism for the Downregulated Endogenous Hydrogen Sulfide Pathway in the Endothelial Cell Inflammation.
Authors:Zhang D, Wang X, Tian X, Zhang L, Yang G, Tao Y, Liang C, Li K, Yu X, Tang X, Tang C, Zhou J, Kong W, Du J, Huang Y, Jin H
Journal:Front Immunol
PubMed ID:29760703
Endogenous hydrogen sulfide (H