相关类别
一般描述
产物的 mRNA 翻译速率。尽管转录因子对基因表达的调控已经随着时间的推移而得到了深入的研究,但 RBP 对 mRNA 的转录后调控以及非编码 RNA 在该过程中的作用是一个有待深入探索的较新的领域。
特点 & 优点:
-蛋白 A/G 磁珠,经过优化可结合核酸-蛋白免疫复合物
-RNAse 抑制剂和无 RNAse 试剂
-阴性对照
应用
表观遗传学&核功能
包装
外形
制备说明
其他说明
RIP 洗涤缓冲液
RIP裂解缓冲液
0.5 M EDTA
10% SDS
盐溶液 I
盐溶液 II
沉淀增强剂
正常小鼠IgG
纯化兔IgG
蛋白酶抑制剂混合液
RNase 抑制剂
蛋白酶 K(10 mg/mL)
无核酸酶水
法律信息
免责声明
警示用语:
Warning
危险分类
Acute Tox. 4 Oral - Aquatic Chronic 3 - Eye Irrit. 2 - Skin Irrit. 2
储存分类代码
10 - Combustible liquids
法规信息
相关内容
All eukaryotic organisms require tight regulation of gene expression for complex processes such as development, differentiation, cell specification, and responses to environmental stimuli. Many genes are regulated post-transcriptionally, in addition to transcriptional mechanisms of gene regulation. RNA-binding proteins (RBPs) are essential for post-transcriptional gene regulation, linking transcription and translation in many processes including transcription, splicing, export, rate of translation and turnover. In all of these events, RBPs coordinate regulation of the amount of protein produced from mRNA transcripts.
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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