Literature DB >> 29222194

Co-conspirators in a new mechanism for the degradation of Δ9-desaturase.

Sabrina Dumas1, James M Ntambi2,3.   

Abstract

Δ9-Desaturases are central enzymes in unsaturated fatty acid synthesis regulated at the transcriptional and mRNA levels and by proteasomal degradation. A new study by Murakami et al. uncovers a novel regulatory pathway in which an N-terminal di-proline motif in the Drosophila Δ9-desaturase mediates protein degradation by a calcium-dependent cysteine protease in response to unsaturated fatty acids. This study provides new details of desaturase regulation with therapeutic implications for the treatment of metabolic syndrome.
© 2017 by The American Society for Biochemistry and Molecular Biology, Inc.

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Year:  2017        PMID: 29222194      PMCID: PMC5723987          DOI: 10.1074/jbc.H117.801936

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  10 in total

Review 1.  Structure, activation, and biology of calpain.

Authors:  Koichi Suzuki; Shoji Hata; Yukiko Kawabata; Hiroyuki Sorimachi
Journal:  Diabetes       Date:  2004-02       Impact factor: 9.461

Review 2.  The therapeutic potential of the calpain family: new aspects.

Authors:  Maria E Saez; Reposo Ramirez-Lorca; Francisco J Moron; Agustin Ruiz
Journal:  Drug Discov Today       Date:  2006-09-07       Impact factor: 7.851

3.  Ubiquitin-proteasome-dependent degradation of mammalian ER stearoyl-CoA desaturase.

Authors:  Hiroki Kato; Kenjiro Sakaki; Katsuyoshi Mihara
Journal:  J Cell Sci       Date:  2006-06-01       Impact factor: 5.285

4.  Membrane topology of mouse stearoyl-CoA desaturase 1.

Authors:  Weng Chi Man; Makoto Miyazaki; Kiki Chu; James M Ntambi
Journal:  J Biol Chem       Date:  2005-11-07       Impact factor: 5.157

5.  Drosophila lacks C20 and C22 PUFAs.

Authors:  Li Rong Shen; Chao Qiang Lai; Xiang Feng; Laurence D Parnell; Jian Bo Wan; Jing D Wang; Duo Li; Jose M Ordovas; Jing X Kang
Journal:  J Lipid Res       Date:  2010-07-23       Impact factor: 5.922

6.  Loss of stearoyl-CoA desaturase-1 function protects mice against adiposity.

Authors:  James M Ntambi; Makoto Miyazaki; Jonathan P Stoehr; Hong Lan; Christina M Kendziorski; Brian S Yandell; Yang Song; Paul Cohen; Jeffrey M Friedman; Alan D Attie
Journal:  Proc Natl Acad Sci U S A       Date:  2002-08-12       Impact factor: 11.205

7.  Fatty acid-responsive control of mRNA stability. Unsaturated fatty acid-induced degradation of the Saccharomyces OLE1 transcript.

Authors:  C I Gonzalez; C E Martin
Journal:  J Biol Chem       Date:  1996-10-18       Impact factor: 5.157

8.  Skin-specific deletion of stearoyl-CoA desaturase-1 alters skin lipid composition and protects mice from high fat diet-induced obesity.

Authors:  Harini Sampath; Matthew T Flowers; Xueqing Liu; Chad M Paton; Ruth Sullivan; Kiki Chu; Minghui Zhao; James M Ntambi
Journal:  J Biol Chem       Date:  2009-05-08       Impact factor: 5.157

9.  An N-terminal di-proline motif is essential for fatty acid-dependent degradation of Δ9-desaturase in Drosophila.

Authors:  Akira Murakami; Kohjiro Nagao; Naoto Juni; Yuji Hara; Masato Umeda
Journal:  J Biol Chem       Date:  2017-09-27       Impact factor: 5.157

10.  Hepatic stearoyl-CoA desaturase-1 deficiency protects mice from carbohydrate-induced adiposity and hepatic steatosis.

Authors:  Makoto Miyazaki; Matthew T Flowers; Harini Sampath; Kiki Chu; Carolin Otzelberger; Xueqing Liu; James M Ntambi
Journal:  Cell Metab       Date:  2007-12       Impact factor: 27.287

  10 in total

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