MBD1 overexpression 293T裂解物(whole cell)
MBD1 overexpression 293T lysate (whole cell)
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MBD1 overexpression 293T lysate (whole cell) suitable for WB. View our extensive range of validated lysates from normal and diseased human, mouse and rat tissue.
查看别名
CXXC 3, CXXC-type zinc finger protein 3, MBD1_HUMAN, MECP1 COMPLEX, Methyl CpG binding domain protein 1 isoform PCM1, Methyl CpG binding protein splice variant 1, Methyl CpG binding protein splice variant 2, Methyl CpG binding protein splice variant 3, Methyl CpG binding protein splice variant 4, Methyl-CpG-binding domain protein 1, Methyl-CpG-binding protein MBD1, Protein containing methyl-CpG-binding domain 1, RFT, Regulator of fibroblast growth factor 2 (FGF 2) transcription, The regulator of fibroblast growth factor 2(FGF 2) transcription
- WB
Unknown
Western blot - MBD1 overexpression 293T lysate (whole cell) (AB94263)
false
- SDS-PAGE
Unknown
SDS-PAGE - MBD1 overexpression 293T lysate (whole cell) (AB94263)
ab94263 at 15µg/lane on an SDS-PAGE gel.
反应性数据
产品详情
性能和储存信息
运输条件
推荐的短期储存条件
推荐的长期储存条件
分装信息
储存信息
补充信息
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
MBD1 influences the repression or activation of genomic transcription. It binds to methylated DNA and interacts with other proteins including methyl CpG binding proteins to form transcriptional repression complexes. This activity plays a role in gene silencing and modulation. MBD1 ensures proper interpretation of epigenetic marks therefore sustaining cellular identity and lineage commitment. In some cells MBD1 also engages with chromatin remodeling complexes to influence chromatin structure.
Pathways
MBD1 plays a significant role in the epigenetic and transcription regulation pathways. It is directly involved in DNA methylation processes interacting with histone deacetylases such as HDAC1 and other chromatin-modifying proteins. The pathway provides an important mechanism for long-term transcriptional silencing affecting developmental processes and cellular differentiation through methylation-dependent transcriptional regulation. MBD1 shares pathway interactions with proteins like MeCP2 highlighting interconnected roles in maintaining DNA methylation landscapes.
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