Literature DB >> 11368172

Structure of the unliganded cAMP-dependent protein kinase catalytic subunit from Saccharomyces cerevisiae.

N Mashhoon1, G Carmel, J W Pflugrath, J Kuret.   

Abstract

The structure of TPK1delta, a truncated variant of the cAMP-dependent protein kinase catalytic subunit from Saccharomyces cerevisiae, was determined in an unliganded state at 2.8 A resolution and refined to a crystallographic R-factor of 19.4%. Comparison of this structure to that of its fully liganded mammalian homolog revealed a highly conserved protein fold comprised of two globular lobes. Within each lobe, root mean square deviations in Calpha positions averaged approximately equals 0.9 A. In addition, a phosphothreonine residue was found in the C-terminal domain of each enzyme. Further comparison of the two structures suggests that a trio of conformational changes accompanies ligand-binding. The first consists of a 14.7 degrees rigid-body rotation of one lobe relative to the other and results in closure of the active site cleft. The second affects only the glycine-rich nucleotide binding loop, which moves approximately equals 3 A to further close the active site and traps the nucleotide substrate. The third is localized to a C-terminal segment that makes direct contact with ligands and the ligand-binding cleft. In addition to resolving the conformation of unliganded enzyme, the model shows that the salient features of the cAMP-dependent protein kinase are conserved over long evolutionary distances.

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Year:  2001        PMID: 11368172     DOI: 10.1006/abbi.2000.2241

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  4 in total

1.  Distal recognition sites in substrates are required for efficient phosphorylation by the cAMP-dependent protein kinase.

Authors:  Stephen J Deminoff; Vidhya Ramachandran; Paul K Herman
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2.  A Wnt-CKIvarepsilon-Rap1 pathway regulates gastrulation by modulating SIPA1L1, a Rap GTPase activating protein.

Authors:  I-Chun Tsai; Jeffrey D Amack; Zhong-Hua Gao; Vimla Band; H Joseph Yost; David M Virshup
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3.  Peroxiredoxin promotes longevity and H2O2-resistance in yeast through redox-modulation of protein kinase A.

Authors:  Friederike Roger; Cecilia Picazo; Wolfgang Reiter; Marouane Libiad; Chikako Asami; Sarah Hanzén; Chunxia Gao; Gilles Lagniel; Niek Welkenhuysen; Jean Labarre; Thomas Nyström; Morten Grøtli; Markus Hartl; Michel B Toledano; Mikael Molin
Journal:  Elife       Date:  2020-07-14       Impact factor: 8.140

Review 4.  Yeast Protein Kinase A Isoforms: A Means of Encoding Specificity in the Response to Diverse Stress Conditions?

Authors:  Declan R Creamer; Simon J Hubbard; Mark P Ashe; Chris M Grant
Journal:  Biomolecules       Date:  2022-07-08
  4 in total

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