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  • m-calpain  (1)
  • protein-protein interaction  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Molecular and cellular biochemistry 191 (1999), S. 121-128 
    ISSN: 1573-4919
    Keywords: BTF3 ; phosphorylation ; protein kinase CK2 ; protein-protein interaction ; transcription factor ; two-hybrid system
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology , Medicine
    Notes: Abstract BTF3, initially discovered as a factor required for transcription inititation of RNA polymerase II, is expressed in two isoforms, termed a and b. BTF3b, the transcriptionally inactive isoform, was identified as an interaction partner of protein kinase CK2 subunit β employing the interaction trap system for screening of a HeLa cDNA fusion library. We report here on the interaction between the other isoform, BTF3a, and protein kinase CK2. The complete cDNA of BTF3a was cloned by RT-PCR and used for analysis in the two-hybrid system with a three-reporter yeast strain. Interaction of BTF3a with CK2 subunits α, α′ or β was detectable by one of three reporters, whereas the CK2β- BTF3a interaction was activating two reporters. It was also shown that BTF3a is phosphorylatedin vitro by the α2β2 holoenzyme, but not by α or α′ alone, indicating the requirement of β for substrate recognition. Immunoprecipitations of GST-fused BTF3a carried out in vitro resulted in co-precipitation of β. Similarly, GST-BTF3a, but not GST alone isolated with glutathione agarose beads from buffer containing recombinant CK2 subunits was found complexed with α and β, likely representing α2β2 holoenzyme. The data show a weak, nevertheless specific interaction of protein kinase CK2 via subunit β with the putative transcription factor BTF3a in vitro and in vivo, and a role of BTF3a as a potential new substrate for CK2.
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  • 2
    ISSN: 1573-4919
    Keywords: protein kinase CK2 ; leukemia ; calcium activated protease ; m-calpain ; proteasome
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology , Medicine
    Notes: Abstract Human recombinant CK2 subunits were incubated for different times with the two main cytosolic proteases m-calpain and 20 S proteasome. Both, m-calpain in a calcium dependent manner and the 20 S proteasome, were able to degrade CK2 subunits in vitro. In both cases, CK2α′ was more resistant to these proteases than CK2α. When these proteases were assayed on the reconstituted (α2β2 holoenzyme, a 37 kDa α-band, analogous to that observed in AML extracts, was generated which was resistant to further degradation. No degradation was observed when the 26 S proteasome was assayed on free subunits. Studies with CK2α deletion mutants showed that m-calpain and the 20 S proteasome acted on the C-terminus end of CK2α. These results pointed to cytosolic proteases as agents involved in the control of the amount of free CK2 subunits within the cell, which becomes evident when CK2 is overexpressed as in AML cells.
    Type of Medium: Electronic Resource
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