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Cdkn1c  -  cyclin-dependent kinase inhibitor 1C

Rattus norvegicus

Synonyms: Kip2, p57, p57KIP2
 
 
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Disease relevance of Cdkn1c

 

High impact information on Cdkn1c

  • Because transforming growth factor beta1 not only stimulates the growth but also inhibits the differentiation of the cells in this system, our results may suggest a possible involvement of p57 in the control of osteoblastic cell proliferation and differentiation [2].
  • However, the role of p57 in the control of the cell cycle is poorly understood [2].
  • Using osteoblasts derived from the calvaria of rat fetus, we show that p57 is accumulated in cells starved by low serum [2].
  • In contrast, doubly autophosphorylated Lyn exhibits reduced activity toward protein substrates such as phospho-p50/HS1 (hematopoietic-lineage cell-specific protein) and p57/PDI (protein disulfide isomerase related protein), whose multiple sequential/processive phosphorylation relies on the accessibility of the SH2 domain of the kinase [3].
  • We recently used lamina-specific antibody staining to show that despite severe aberrations in the laminar organization of the SRK dentate gyrus, the entorhinal terminal field in the outer dentate molecular layer appeared relatively normal (Woodhams & Terashima, 1999, J. Comp. Neurol. 409 p57) [4].

References

  1. Processing of the Borna disease virus glycoprotein gp94 by the subtilisin-like endoprotease furin. Richt, J.A., Fürbringer, T., Koch, A., Pfeuffer, I., Herden, C., Bause-Niedrig, I., Garten, W. J. Virol. (1998) [Pubmed]
  2. p57(Kip2) is degraded through the proteasome in osteoblasts stimulated to proliferation by transforming growth factor beta1. Urano, T., Yashiroda, H., Muraoka, M., Tanaka, K., Hosoi, T., Inoue, S., Ouchi, Y., Toyoshima, H. J. Biol. Chem. (1999) [Pubmed]
  3. Spontaneous autophosphorylation of Lyn tyrosine kinase at both its activation segment and C-terminal tail confers altered substrate specificity. Donella-Deana, A., Cesaro, L., Ruzzene, M., Brunati, A.M., Marin, O., Pinna, L.A. Biochemistry (1998) [Pubmed]
  4. Aberrant trajectory of entorhino-dentate axons in the mutant Shaking Rat Kawasaki: a Dil-labelling study. Woodhams, P.L., Terashima, T. Eur. J. Neurosci. (2000) [Pubmed]
 
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