Literature DB >> 26959555

Asymmetric Dimethylarginine Stimulates Akt1 Phosphorylation via Heat Shock Protein 70-Facilitated Carboxyl-Terminal Modulator Protein Degradation in Pulmonary Arterial Endothelial Cells.

Xutong Sun1, Manuela Kellner1, Ankit A Desai1, Ting Wang1, Qing Lu2, Archana Kangath1, Ning Qu1, Christina Klinger1, Sohrab Fratz3, Jason X-J Yuan1, Jeffrey R Jacobson4, Joe G N Garcia1, Ruslan Rafikov1, Jeffrey R Fineman5,6, Stephen M Black1.   

Abstract

Asymmetric dimethylarginine (ADMA) induces the mitochondrial translocation of endothelial nitric oxide synthase (eNOS) through the nitration-mediated activation of Akt1. However, it is recognized that the activation of Akt1 requires phosphorylation events at threonine (T) 308 and serine (S) 473. Thus, the current study was performed to elucidate the potential effect of ADMA on Akt1 phosphorylation and the mechanisms that are involved. Exposure of pulmonary arterial endothelial cells to ADMA enhanced Akt1 phosphorylation at both threonine 308 and Ser473 without altering Akt1 protein levels, phosphatase and tensin homolog activity, or membrane Akt1 levels. Heat shock protein (Hsp) 90 plays a pivotal role in maintaining Akt1 activity, and our results demonstrate that ADMA decreased Hsp90-Akt1 interactions, but, surprisingly, overexpression of a dominant-negative Hsp90 mutant increased Akt1 phosphorylation. ADMA exposure or overexpression of dominant-negative Hsp90 increased Hsp70 levels, and depletion of Hsp70 abolished ADMA-induced Akt1 phosphorylation. ADMA decreased the interaction of Akt1 with its endogenous inhibitor, carboxyl-terminal modulator protein (CTMP). This was mediated by the proteasomal-dependent degradation of CTMP. The overexpression of CTMP attenuated ADMA-induced Akt1 phosphorylation at Ser473, eNOS phosphorylation at Ser617, and eNOS mitochondrial translocation. Finally, we found that the mitochondrial translocation of eNOS in our lamb model of pulmonary hypertension is associated with increased Akt1 and eNOS phosphorylation and reduced Akt1-CTMP protein interactions. In conclusion, our data suggest that CTMP is directly involved in ADMA-induced Akt1 phosphorylation in vitro and in vivo, and that increasing CTMP levels may be an avenue to treat pulmonary hypertension.

Entities:  

Keywords:  Akt1; asymmetric dimethylarginine; mitochondrion; proteasome

Mesh:

Substances:

Year:  2016        PMID: 26959555      PMCID: PMC4979361          DOI: 10.1165/rcmb.2015-0185OC

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


  48 in total

1.  Phosphorylation of the PTEN tail regulates protein stability and function.

Authors:  F Vazquez; S Ramaswamy; N Nakamura; W R Sellers
Journal:  Mol Cell Biol       Date:  2000-07       Impact factor: 4.272

2.  A guided tour into subcellular colocalization analysis in light microscopy.

Authors:  S Bolte; F P Cordelières
Journal:  J Microsc       Date:  2006-12       Impact factor: 1.758

3.  Modulation of Akt kinase activity by binding to Hsp90.

Authors:  S Sato; N Fujita; T Tsuruo
Journal:  Proc Natl Acad Sci U S A       Date:  2000-09-26       Impact factor: 11.205

4.  Ubiquitin-dependent degradation of certain protein substrates in vitro requires the molecular chaperone Hsc70.

Authors:  B Bercovich; I Stancovski; A Mayer; N Blumenfeld; A Laszlo; A L Schwartz; A Ciechanover
Journal:  J Biol Chem       Date:  1997-04-04       Impact factor: 5.157

5.  Crystal structure of an activated Akt/protein kinase B ternary complex with GSK3-peptide and AMP-PNP.

Authors:  Jing Yang; Peter Cron; Valerie M Good; Vivienne Thompson; Brian A Hemmings; David Barford
Journal:  Nat Struct Biol       Date:  2002-12

6.  Regulation of endothelium-derived nitric oxide production by the protein kinase Akt.

Authors:  D Fulton; J P Gratton; T J McCabe; J Fontana; Y Fujio; K Walsh; T F Franke; A Papapetropoulos; W C Sessa
Journal:  Nature       Date:  1999-06-10       Impact factor: 49.962

Review 7.  The PI3K-PDK1 connection: more than just a road to PKB.

Authors:  B Vanhaesebroeck; D R Alessi
Journal:  Biochem J       Date:  2000-03-15       Impact factor: 3.857

8.  Preserving mitochondrial function prevents the proteasomal degradation of GTP cyclohydrolase I.

Authors:  Shruti Sharma; Xutong Sun; Sanjiv Kumar; Ruslan Rafikov; Angela Aramburo; Gokhan Kalkan; Jing Tian; Imran Rehmani; Suphin Kallarackal; Jeffrey R Fineman; Stephen M Black
Journal:  Free Radic Biol Med       Date:  2012-04-16       Impact factor: 7.376

Review 9.  From arginine methylation to ADMA: a novel mechanism with therapeutic potential in chronic lung diseases.

Authors:  Dariusz Zakrzewicz; Oliver Eickelberg
Journal:  BMC Pulm Med       Date:  2009-01-29       Impact factor: 3.317

Review 10.  Restoration of asymmetric dimethylarginine-nitric oxide balance to prevent the development of hypertension.

Authors:  You-Lin Tain; Li-Tung Huang
Journal:  Int J Mol Sci       Date:  2014-07-02       Impact factor: 5.923

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  2 in total

1.  Arginine recycling in endothelial cells is regulated BY HSP90 and the ubiquitin proteasome system.

Authors:  Xiaomin Wu; Xutong Sun; Shruti Sharma; Qing Lu; Manivannan Yegambaram; Yali Hou; Ting Wang; Jeffrey R Fineman; Stephen M Black
Journal:  Nitric Oxide       Date:  2020-12-15       Impact factor: 4.427

2.  Shear stress-exposed pulmonary artery endothelial cells fail to upregulate HSP70 in chronic thromboembolic pulmonary hypertension.

Authors:  William Salibe-Filho; Thaís L S Araujo; Everton G Melo; Luiza B C T Coimbra; Monica S Lapa; Milena M P Acencio; Orival Freitas-Filho; Vera Luiza Capelozzi; Lisete Ribeiro Teixeira; Caio J C S Fernandes; Fabio Biscegli Jatene; Francisco R M Laurindo; Mario Terra-Filho
Journal:  PLoS One       Date:  2020-12-03       Impact factor: 3.240

  2 in total

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