A novel bivalent interaction mode underlies a non-catalytic mechanism for Pin1-mediated protein kinase C regulation

被引:0
作者
Chen, Xiao-Ru [1 ]
Dixit, Karuna [1 ]
Yang, Yuan [1 ]
Mcdermott, Mark, I [2 ]
Imam, Hasan Tanvir [1 ]
Bankaitis, Vytas A. [2 ]
Igumenova, Tatyana I. [1 ,2 ]
机构
[1] Texas A&M Univ, Dept Biochem & Biophys, College Stn, TX 77843 USA
[2] Texas A&M Univ, Dept Cell Biol & Genet, College Stn, TX 77843 USA
关键词
Pin1 peptidyl-prolyl isomerase; protein kinase C; signaling; non-catalytic mechanism; bivalent binding; protein kinase C degradation; Human; PROLYL ISOMERASE PIN1; HYDROGEN-BONDING NETWORK; STRUCTURAL BASIS; NMR-SPECTROSCOPY; ACTIVE-SITE; XPLOR-NIH; PHOSPHORYLATION; CANCER; RECOGNITION; PEPTIDE;
D O I
10.7554/eLife.92884; 10.7554/eLife.92884.sa1; 10.7554/eLife.92884.sa2
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Regulated hydrolysis of the phosphoinositide phosphatidylinositol(4,5)-bis-phosphate to diacylglycerol and inositol-1,4,5-P-3 defines a major eukaryotic pathway for translation of extracellular cues to intracellular signaling circuits. Members of the lipid-activated protein kinase C isoenzyme family (PKCs) play central roles in this signaling circuit. One of the regulatory mechanisms employed to downregulate stimulated PKC activity is via a proteasome-dependent degradation pathway that is potentiated by peptidyl-prolyl isomerase Pin1. Here, we show that contrary to prevailing models, Pin1 does not regulate conventional PKC isoforms alpha and beta II via a canonical cis-trans isomerization of the peptidyl-prolyl bond. Rather, Pin1 acts as a PKC binding partner that controls PKC activity via sequestration of the C-terminal tail of the kinase. The high-resolution structure of full-length Pin1 complexed to the C-terminal tail of PKC beta II reveals that a novel bivalent interaction mode underlies the non-catalytic mode of Pin1 action. Specifically, Pin1 adopts a conformation in which it uses the WW and PPIase domains to engage two conserved phosphorylated PKC motifs, the turn motif and hydrophobic motif, respectively. Hydrophobic motif is a non-canonical Pin1-interacting element. The structural information combined with the results of extensive binding studies and experiments in cultured cells suggest that non-catalytic mechanisms represent unappreciated modes of Pin1-mediated regulation of AGC kinases and other key enzymes/substrates.
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页数:33
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共 102 条
[1]   Peptidyl-prolyl Isomerase Pin1 Controls Down-regulation of Conventional Protein Kinase C Isozymes [J].
Abrahamsen, Hilde ;
O'Neill, Audrey K. ;
Kannan, Natarajan ;
Kruse, Nicole ;
Taylor, Susan S. ;
Jennings, Patricia A. ;
Newton, Alexandra C. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (16) :13262-13278
[2]   Gain-of-function mutations in protein kinase Cα (PKCα) may promote synaptic defects in Alzheimer's disease [J].
Alfonso, Stephanie I. ;
Callender, Julia A. ;
Hooli, Basavaraj ;
Antal, Corina E. ;
Mullin, Kristina ;
Sherman, Mathew A. ;
Lesne, Sylvain E. ;
Leitges, Michael ;
Newton, Alexandra C. ;
Tanzi, Rudolph E. ;
Malinow, Roberto .
SCIENCE SIGNALING, 2016, 9 (427)
[3]   Intramolecular C2 Domain-Mediated Autoinhibition of Protein Kinase C βII [J].
Antal, Corina E. ;
Callender, Julia A. ;
Kornev, Alexandr P. ;
Taylor, Susan S. ;
Newton, Alexandra C. .
CELL REPORTS, 2015, 12 (08) :1252-1260
[4]   Cancer-Associated Protein Kinase C Mutations Reveal Kinase's Role as Tumor Suppressor [J].
Antal, Corina E. ;
Hudson, Andrew M. ;
Kang, Emily ;
Zanca, Ciro ;
Wirth, Christopher ;
Stephenson, Natalie L. ;
Trotter, Eleanor W. ;
Gallegos, Lisa L. ;
Miller, Crispin J. ;
Fumari, Frank B. ;
Hunter, Tony ;
Brognard, John ;
Newton, Alexandra C. .
CELL, 2015, 160 (03) :489-502
[5]   Structural basis for the co-activation of protein kinase B by T-cell leukemia-1 (TCL1) family proto-oncoproteins [J].
Auguin, D ;
Barthe, P ;
Royer, C ;
Stern, MH ;
Noguchi, M ;
Arold, ST ;
Roumestand, C .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (34) :35890-35902
[6]   Protein kinase C: release from quarantine by mTORC2 [J].
Baffi, Timothy R. ;
Newton, Alexandra C. .
TRENDS IN BIOCHEMICAL SCIENCES, 2022, 47 (06) :518-530
[7]   mTORC2 controls the activity of PKC and Akt by phosphorylating a conserved TOR interaction motif [J].
Baffi, Timothy R. ;
Lorden, Gema ;
Wozniak, Jacob M. ;
Feichtner, Andreas ;
Yeung, Wayland ;
Kornev, Alexandr P. ;
King, Charles C. ;
Del Rio, Jason C. ;
Limaye, Ameya J. ;
Bogomolovas, Julius ;
Gould, Christine M. ;
Chen, Ju ;
Kennedy, Eileen J. ;
Kannan, Natarajan ;
Gonzalez, David J. ;
Stefan, Eduard ;
Taylor, Susan S. ;
Newton, Alexandra C. .
SCIENCE SIGNALING, 2021, 14 (678)
[8]   Protein Kinase C Quality Control by Phosphatase PHLPP1 Unveils Loss-of-Function Mechanism in Cancer [J].
Baffi, Timothy R. ;
Van, An-Angela N. ;
Zhao, Wei ;
Mills, Gordon B. ;
Newton, Alexandra C. .
MOLECULAR CELL, 2019, 74 (02) :378-+
[9]   Cysteine-Mediated Dynamic Hydrogen-Bonding Network in the Active Site of Pin1 [J].
Barman, Arghya ;
Hamelberg, Donald .
BIOCHEMISTRY, 2014, 53 (23) :3839-3850
[10]   Functionally important residues in the peptidyl-prolyl isomerase Pin1 revealed by unigenic evolution [J].
Behrsin, C. D. ;
Bailey, M. L. ;
Bateman, K. S. ;
Hamilton, K. S. ;
Wahl, L. M. ;
Brandl, C. J. ;
Shilton, B. H. ;
Litchfield, D. W. .
JOURNAL OF MOLECULAR BIOLOGY, 2007, 365 (04) :1143-1162