4.7 Article

Structure of Yeast Regulatory Subunit: A Glimpse into the Evolution of PKA Signaling

期刊

STRUCTURE
卷 18, 期 11, 页码 1471-1482

出版社

CELL PRESS
DOI: 10.1016/j.str.2010.08.013

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资金

  1. CONICET [PIP 0519]
  2. NIH [GM34921]
  3. ANPCYT [PICT 15-38212]
  4. UBACYT [X-151]

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The major cAMP receptors in eukaryotes are the regulatory (R) subunits of PKA, an allosteric enzyme conserved in fungi through mammals. While mammals have four R-subunit genes, Saccharomyces cerevisiae has only one, Bcy1. To achieve a molecular understanding of PKA activation in yeast and to explore the evolution of cyclic-nucleotide binding (CNB) domains, we solved the structure of cAMP-bound Bcy1(168-416). Surprisingly, the relative orientation of the two CNB domains in Bcy1 is very different from mammalian R-subunits. This quaternary structure is defined primarily by a fungi-specific sequence in the hinge between the alpha B/alpha C helices of the CNB-A domain. The unique interface between the two CNB domains in Bcyl defines the allosteric mechanism for cooperative activation of PKA by cAMP. Some interface motifs are isoform-specific while others, although conserved, play surprisingly different roles in each R-subunit. Phylogenetic analysis shows that structural differences in Bcyl are shared by fungi of the subphylum Saccharomycotina.

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