This is a Validated Antibody Database (VAD) review about human CPSF1, based on 5 published articles (read how Labome selects the articles), using CPSF1 antibody in all methods. It is aimed to help Labome visitors find the most suited CPSF1 antibody. Please note the number of articles fluctuates since newly identified citations are added and citations for discontinued catalog numbers are removed regularly.
CPSF1 synonym: CPSF160; HSU37012; P/cl.18; cleavage and polyadenylation specificity factor subunit 1; CPSF 160 kDa subunit; cleavage and polyadenylation specific factor 1, 160kDa; cleavage and polyadenylation specificity factor 160 kDa subunit; polyadenylation specificity factor

Bethyl
rabbit polyclonal
  • RNA immunoprecipitation; human
Bethyl CPSF1 antibody (Bethyl Laboratories, A301-580A) was used in RNA immunoprecipitation on human samples . Genom Data (2015) ncbi
rabbit polyclonal
  • western blot; mouse; fig 5
Bethyl CPSF1 antibody (Bethyl Laboratories, A301-580A) was used in western blot on mouse samples (fig 5). Genes Dev (2015) ncbi
rabbit polyclonal
  • western blot; human; 1:5000; fig 1
In order to study how altered association with SMN and U1-snRNP can cause gain and loss of function by ALS-causative mutations in FUS/TLS, Bethyl CPSF1 antibody (Bethyl Laboratories, A301-580A) was used in western blot on human samples at 1:5000 (fig 1). Nat Commun (2015) ncbi
rabbit polyclonal
  • western blot; human; fig 1b
In order to study the regulation of premature cleavage and polyadenylation by TRAP150, Bethyl CPSF1 antibody (Bethyl, A301-580A) was used in western blot on human samples (fig 1b). Nucleic Acids Res (2014) ncbi
rabbit polyclonal
  • immunoprecipitation; human; fig 2b
  • western blot; human; fig 2b
Bethyl CPSF1 antibody (Bethyl, A301-580A) was used in immunoprecipitation on human samples (fig 2b) and in western blot on human samples (fig 2b). Genes Dev (2014) ncbi
Articles Reviewed
  1. Misra A, Ou J, Zhu L, Green M. Global analysis of CPSF2-mediated alternative splicing: Integration of global iCLIP and transcriptome profiling data. Genom Data. 2015;6:217-21 pubmed publisher
  2. Masuda A, Takeda J, Okuno T, Okamoto T, Ohkawara B, Ito M, et al. Position-specific binding of FUS to nascent RNA regulates mRNA length. Genes Dev. 2015;29:1045-57 pubmed publisher
  3. Sun S, Ling S, Qiu J, Albuquerque C, Zhou Y, Tokunaga S, et al. ALS-causative mutations in FUS/TLS confer gain and loss of function by altered association with SMN and U1-snRNP. Nat Commun. 2015;6:6171 pubmed publisher
  4. Lee K, Tarn W. TRAP150 activates splicing in composite terminal exons. Nucleic Acids Res. 2014;42:12822-32 pubmed publisher
  5. Chan S, Huppertz I, Yao C, Weng L, Moresco J, Yates J, et al. CPSF30 and Wdr33 directly bind to AAUAAA in mammalian mRNA 3' processing. Genes Dev. 2014;28:2370-80 pubmed publisher