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- 详细信息
- 文献和实验
- 技术资料
- 服务名称:
WNT Signaling Pathway ChIP PCR Array
- 提供商:
SAB
WNT Signaling Pathway ChIP PCR Array
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The Human WNT Signaling Pathway EpiTect ChIP qPCR Array profiles the histone modification status or “histone code” of 84 genes key to WNT-mediated signal transduction. Histone modifications regulate chromatin structure and correlate with the transcriptional activity of associated genes. The WNT family of secreted growth factors regulates the developmental processes of cell fate and polarity, as well as general cell maintenance processes such as homeostasis and cell cycle regulation. There are 19 WNT ligands in humans, which bind to the Frizzled (FZD) family of receptors and the co-receptors LRP5 and LRP6. WNT signaling comprises 3 pathways: the canonical pathway and 2 non-canonical pathways, planar cell polarity (PCP) and a calcium ion-dependent pathway. The well-studied canonical WNT pathway signals through ß-catenin and regulates the cell cycle, cell growth, and proliferation. The PCP pathway regulates cytoskeletal dynamics and cell motility, and the WNT/calcium pathway promotes NFAT transcription, both independently of ß-catenin signaling. Dysregulation of WNT signaling can occur during carcinogenesis and developmental defects, and the underlying mechanisms may include epigenetic regulation. This array contains WNT signaling ligands and receptors as well as other downstream signaling molecules for all 3 pathways. In addition, regulators of WNT signaling are included as well as downstream target genes. Using chromatin immunoprecipitation and this real-time PCR array, research studies can easily and reliably analyze the histone modification patterns associated with a focused gene panel involved in WNT-mediated signal transduction. |
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Canonical: AES (TLE/Groucho), APC, AXIN1, AXIN2, BCL9 , CSNK1A1, CSNK1D, CSNK2A1, CTNNB1, CTNNBIP1 (ICAT), CXXC4, DIXDC1, DKK1, DVL1, DVL2, EP300, FZD1, FZD2, FZD3, FZD4, FZD5, FZD6, FZD7, FZD8, GSK3A, GSK3B, LEF1, LRP5, LRP6, NKD1, PORCN, PPP2CA, PPP2R1A, PYGO1, RUVBL1, SENP2, SFRP1, SFRP4, SOX17, TCF7, TCF7L1, WIF1, WNT1, WNT10A, WNT16, WNT2, WNT2B, WNT3, WNT3A, WNT4, WNT6, WNT7A, WNT8A, WNT8B.
Planar Cell Polarity (PCP): DAAM1, DVL1, DVL2, MAPK8, NKD1, PRICKLE1, VANGL2.
Wnt/Ca+2: FZD2, NFATC1, WNT1, WNT10A, WNT11, WNT16, WNT2, WNT2B, WNT3, WNT3A, WNT4, WNT5A, WNT5B, WNT6, WNT7A, WNT8A, WNT8B.
Wnt Signaling Negative Regulation: APC, AXIN1, AXIN2, BTRC (bTrCP), CCND1, CTNNBIP1 (ICAT), CXXC4, DKK1, FBXW11, FBXW2, FBXW4, FRZB (FRP-3), LRP6, NLK, NKD1, SENP2, SFRP1, SFRP4, SOX17, TLE1, TLE2, WIF1.
Wnt Signaling Target Genes: BTRC (bTrCP), CCND1, CCND2, CCND3, DAB2, FOSL1 (FRA-1), JUN, MMP7, MYC, PITX2, PPARD, T (Brachyury).
Developmental Processes:
Cell Fate: CTNNB1, DKK1, WNT1, WNT3, WNT3A.
Tissue Polarity: FZD2, FZD3, FZD5, FZD6.
Cell Growth & Profileration: APC, AXIN2, CCND1, CCND2, CCND3, CTNNB1, CTNNBIP1 (ICAT), EP300, FOSL1, FOXN1, FSHB, FZD3, JUN, LRP5, MYC, PPP2CA, PPP2R1A, T (Brachyury), WISP1, WNT3A.
Cell Migration: APC, DKK1, LRP5, LRP6, WNT1.
Cell Cycle: APC, BTRC (bTrCP), CCND1, CCND2, CCND3, CTNNB1, EP300, FOSL1, JUN, MYC, RUVBL1, TCF7L1.
Cellular Homeostasis: APC, FZD2, JUN, MYC.
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文献和实验谁似我醉扬州 我做的是与wnt信号通路有关的,想了解某种药物诱导成骨是否和wnt信号通路有关,如果加药后β-catenin,LEF、CyclinD增加可否说明wnt信号通路被激活?β-catenin用的是western blot方法测定核内的,LEF、CyclinD用的是PCR的方法,这样设计实验合理吗?各位高手请帮帮忙,谢谢! 谁似我醉扬州 怎么没人回答呢?丁香园不是很多高手吗?自己顶! ghy0601
的,所以你做EMSA时不可能检测到.再者一般认为TCF4和DNA是一直处于结合状态。 如果要想检测的话,我觉得应该用ChIP,如果你的抗体好的话,做这个不成问题。 基因小子 昨天的回复太匆忙了,所以没有说清楚。 TCF4/LEF1它们是一直接合在DNA上面的,接受信号刺激之后,如Wnt ligand之后,与之相互作用的一些蛋白发生了改变,如beta-catenin 可以把一些co-repressor(Grouch,TLE)竞争掉,以此来激活下Wnt
is the Wnt/beta-catenin pathway. Bifunctional role of the wnt signaling pathway in regulation of osteoblast (bone-forming cell) and osteoclast (bone-resorbing cell) differentiation:Wnt signaling diverts the mesenchymal stem cells down the pathway









