manufacturer/tradename
Magna ChIP®
technique(s)
immunoprecipitation (IP): suitable
shipped in
dry ice
Quality Level
相关类别
General description
- 基于磁珠的快速方案一天内即可完成ChIP实验
- 蛋白A和蛋白G磁珠的混合物让ChIP实验可以采用比蛋白A或G单用更丰富的抗体种类
- 离心柱使DNA纯化更加简单和可靠,不再需要进行繁琐的酚氯仿提取
- 完整试剂盒包含实验所需的全部试剂,提供可靠、重现性结果
- 兼容ChIPAb+验证抗体和引物套装
染色质免疫沉淀(ChIP)是分析体内蛋白质与基因组DNA相互作用的重要技术。只要存在针对蛋白的良好抗体,就可以使用该技术分析任何与染色质相关或与DNA结合的蛋白。可以测量位于基因组特定区域的不同蛋白质,或特定蛋白在基因组范围内的分布。该技术的另一个强大应用是分析与转录、有丝分裂或DNA修复等过程相关的组蛋白修饰的变化。
Application
表观遗传学&核功能
Packaging
Physical form
Preparation Note
Other Notes
ChIP稀释缓冲液
低盐清洗缓冲液
高盐清洗缓冲液
LiCl清洗缓冲液
TE缓冲液
细胞裂解缓冲液
核裂解缓冲液
ChIP洗脱缓冲液(含/不含蛋白酶K)
蛋白酶K
RNase A
10X 甘氨酸
10X PBS
蛋白酶抑制剂混合物II
离心过滤管
收集管
结合试剂A
洗涤试剂B
洗脱试剂C
Legal Information
Disclaimer
signalword
Danger
存储类别
3 - Flammable liquids
flash_point_f
55.4 °F
flash_point_c
13 °C
wgk
WGK 3
Hazard Classifications
Acute Tox. 4 Oral - Aquatic Chronic 2 - ED ENV 1 - Eye Irrit. 2 - Flam. Liq. 2 - Resp. Sens. 1 - Skin Irrit. 2
相关内容
蛋白质是细胞内部的主要功能分子,负责细胞功能和生存的多种生物学活动。值得关注的是,许多蛋白质也能与DNA发生相互作用。
Protein and nucleic acid interaction reagents and resources for investing protein-RNA, protein-DNA, and protein-protein interactions and associated applications.
Cancer is a complex disease manifestation. At its core, it remains a disease of abnormal cellular proliferation and inappropriate gene expression. In the early days, carcinogenesis was viewed simply as resulting from a collection of genetic mutations that altered the gene expression of key oncogenic genes or tumor suppressor genes leading to uncontrolled growth and disease (Virani, S et al 2012). Today, however, research is showing that carcinogenesis results from the successive accumulation of heritable genetic and epigenetic changes. Moreover, the success in how we predict, treat and overcome cancer will likely involve not only understanding the consequences of direct genetic changes that can cause cancer, but also how the epigenetic and environmental changes cause cancer (Johnson C et al 2015; Waldmann T et al 2013). Epigenetics is the study of heritable gene expression as it relates to changes in DNA structure that are not tied to changes in DNA sequence but, instead, are tied to how the nucleic acid material is read or processed via the myriad of protein-protein, protein-nucleic acid, and nucleic acid-nucleic acid interactions that ultimately manifest themselves into a specific expression phenotype (Ngai SC et al 2012, Johnson C et al 2015). This review will discuss some of the principal aspects of epigenetic research and how they relate to our current understanding of carcinogenesis. Because epigenetics affects phenotype and changes in epigenetics are thought to be key to environmental adaptability and thus may in fact be reversed or manipulated, understanding the integration of experimental and epidemiologic science surrounding cancer and its many manifestations should lead to more effective cancer prognostics as well as treatments (Virani S et al 2012).
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