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Merck
CN

LSKMAGS15

Millipore

PureProteome磁力架,15 mL

The PureProteome Magnetic Stand, 15 mL is designed for use with PureProteome Magnetic Beads in affinity purifications (e. g., His-tag purifications or immunoprecipitations).

别名:

磁性支架15 mL管, 纯蛋白质组磁珠磁性支架

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UNSPSC代码:
41116133
eCl@ss:
32011202
NACRES:
NA.56
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物料

self-standing

特点

binder

制造商/商品名称

PureProteome

技术

RNA purification: suitable (with magnetic beads)
protein purification: suitable

运输

ambient

一般描述

PureProteome磁性支架显著提高了PureProteome磁珠的捕获效率,具有较高的结合能力。

应用

PureProteome磁性支架,15 mL I适用于
  • :磁珠纯化
  • 蛋白纯化
  • 热休克蛋白90 (Hsp90)/ Cdc37(细胞分裂周期37)/周期蛋白依赖性激酶4(Cdk4)复合物,用10床体积的裂解缓冲液孵育和洗涤磁珠

其他说明

除非我们的产品目录或产品附带的其他公司文档另有说明,否则我们的产品仅供研究使用,不得用于任何其他目的,包括但不限于未经授权的商业用途、体外诊断用途、离体体内治疗用途或任何类型的人类或动物食用或药用用途。

分析证书(COA)

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Protein expression and purification of the Hsp90-Cdc37-Cdk4 kinase complex from Saccharomyces cerevisiae
Verba KA and Agard DA
Bio-protocol, 7(19), e2563-e2563 (2017)

相关内容

Read an automated protocol for protein purification using PureProteome™ nickel magnetic beads on the AAW™ automated assay workstation and see results comparing manual vs automated runs.

Immunoprecipitation (IP) is a powerful technique for proteomic screening, biomarker discovery, and signaling network elucidation. It is frequently used to enrich target proteins from complex samples such as cell lysates or extracts. Traditional IP protocols use Protein A, Protein G or a mixture of Protein A and G coupled to a solid support resin, such as agarose beads, to capture an antigen/antibody complex in solution. As the number of samples increase, the traditional, manual IP method can be time-consuming. Processing of multiple IP reactions in parallel can introduce complexity, variability and pipetting errors, which may affect reproducibility.

Traditionally, protein purification from E. coli consists of four distinct phases: harvest, bacterial cell lysis, lysate clarification and protein purification. Bacterial lysis typically requires several time-consuming, hands-on steps, such as freeze/thaw cycles and sonication. These harsh lysis techniques may negatively impact protein quality and contribute to sample-to-sample variability. To maintain protein activity and integrity, detergent-based lysis buffers are routinely used to avoid mechanical protein extraction methods. Regardless of the lysis method used, centrifugation is traditionally required to pellet unwanted cell debris and permit recovery of the clarified lysate. The final step, purification, is frequently performed using affinity media specific for expressed epitope tags. Agarose-based media have typically been used, either as a slurry in microcentrifuge tubes or packed into gravity-driven or spin columns. While easier to manipulate, columns are greatly affected by lysate consistency and carryover of cell debris, which can lead to clogging of the column frits.

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