|PRODUCT NAME||CATALOG #||UNIT||PRICE||QTY||FAVORITES|
|Pol II Antibody (8WG16)||sc-56767||100 µg/ml||$295.00||
See how others have used Pol II Antibody (8WG16). Click on the entry to view the PubMed entry .
PMID: # 27001033
Garrido-Godino, A.I. et al. 2016. Rpb1 foot mutations demonstrate a major role of Rpb4 in mRNA stability during stress situations in yeast. Biochimica et biophysica acta. 1859: 731-43.
PMID: # 27317697
Llorian, M. et al. 2016. The alternative splicing program of differentiated smooth muscle cells involves concerted non-productive splicing of post-transcriptional regulators. Nucleic Acids Res..
PMID: # 26819409
Patidar, PL. et al. 2016. The Kub5-Hera/RPRD1B interactome: a novel role in preserving genetic stability by regulating DNA mismatch repair. Nucleic acids research. 44: 1718-31.
PMID: # 25798844
Perdigão-Henriques, R. et al. 2016. miR-200 promotes the mesenchymal to epithelial transition by suppressing multiple members of the Zeb2 and Snail1 transcriptional repressor complexes. Oncogene. 35: 158-72.
PMID: # 25391375
Sammons, MA. et al. 2015. TP53 engagement with the genome occurs in distinct local chromatin environments via pioneer factor activity. Genome research. 25: 179-88.
PMID: # 24705533
Gjidoda, A. et al. 2014. Nucleosomes are stably evicted from enhancers but not promoters upon induction of certain pro-inflammatory genes in mouse macrophages. PloS one. 9: e93971.
PMID: # 24732378
Esnault, C. et al. 2014. Rho-actin signaling to the MRTF coactivators dominates the immediate transcriptional response to serum in fibroblasts. Genes & development. 28: 943-58.
PMID: # 24589584
Morales, JC. et al. 2014. Kub5-Hera, the human Rtt103 homolog, plays dual functional roles in transcription termination and DNA repair. Nucleic Acids Res.. 42: 4996-5006.
PMID: # 25030905
Britton, S. et al. 2014. DNA damage triggers SAF-A and RNA biogenesis factors exclusion from chromatin coupled to R-loops removal. Nucleic acids research. 42: 9047-62.
PMID: # 23836886
Garrido-Godino, A.I. et al. 2013. Correct Assembly of RNA Polymerase II Depends on the Foot Domain and Is Required for Multiple Steps of Transcription in Saccharomyces cerevisiae. Molecular and cellular biology. 33: 3611-26.
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