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RPMI 1640培养基

RPMI 1640培养基

产品号 #(选择产品)

产品号 #36750_C

RPMI 1640培养基

总览

RPMI 1640培养基适用于多种细胞培养应用。选择合适的营养培养基取决于细胞类型、培养条件以及对培养应用中化学成分明确程度的要求。

亚型
基础培养基
 
细胞类型
其它细胞系
 
种属
人,小鼠,非人灵长类,其它细胞系,大鼠
 
应用
细胞培养
 

产品说明书及文档

请在《产品说明书》中查找相关支持信息和使用说明,或浏览下方更多实验方案。

Document Type
Product Name
Catalog #
Lot #
Language
Product Name
RPMI 1640 Medium
Catalog #
36750
Lot #
All
Language
English
Document Type
Safety Data Sheet 1
Product Name
RPMI 1640 Medium
Catalog #
36750
Lot #
All
Language
English
Document Type
Safety Data Sheet 2
Product Name
RPMI 1640 Medium
Catalog #
36750
Lot #
All
Language
English

相关材料与文献

技术资料 (1)

文献 (1)

A role for DNA hypomethylation and histone acetylation in maintaining allele-specific expression of mouse NKG2A in developing and mature NK cells. S. L. Rogers et al. Journal of immunology (Baltimore, Md. : 1950) 2006 JUL

Abstract

The repertoire of receptors that is expressed by NK cells is critical for their ability to kill virally infected or transformed cells. However, the molecular mechanisms that determine whether and when NK receptor genes are transcribed during hemopoiesis remain unclear. In this study, we show that hypomethylation of a CpG-rich region in the mouse NKG2A gene is associated with transcription of NKG2A in ex vivo NK cells and NK cell lines. This observation was extended to various developmental stages of NK cells sorted from bone marrow, in which we demonstrate that the CpGs are methylated in the NKG2A-negative stages (hemopoietic stem cells, NK progenitors, and NKG2A-negative NK cells), and hypomethylated specifically in the NKG2A-positive NK cells. Furthermore, we provide evidence that DNA methylation is important in maintaining the allele-specific expression of NKG2A. Finally, we show that acetylated histones are associated with the CpG-rich region in NKG2A positive, but not negative, cell lines, and that treatment with the histone deacetylase inhibitor trichostatin A alone is sufficient to induce NKG2A expression. Treatment with the methyltransferase inhibitor 5-azacytidine only is insufficient to induce transcription, but cotreatment with both drugs resulted in a significantly greater induction, suggesting a cooperative role for DNA methylation and histone acetylation status in regulating gene expression. These results enhance our understanding of the formation and maintenance of NK receptor repertoires in developing and mature NK cells.

更多信息

更多信息
种属 Human, Mouse, Non-Human Primate, Other, Rat
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