4.5 Article

Proteolytic processing of an Arabidopsis membrane-bound NAC transcription factor is triggered by cold-induced changes in membrane fluidity

期刊

BIOCHEMICAL JOURNAL
卷 427, 期 -, 页码 359-367

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BJ20091762

关键词

Arabidopsis; cold; fatty acid desaturase; membrane-bound transcription factor; metalloprotease; proteolysis

资金

  1. Brain Korea 21, Biogreen 21 [20080401034001]
  2. National Research Laboratory
  3. Plant Signaling Network Research Center [2009-0079297]
  4. Korea Science and Engineering Foundation [2007-03415]
  5. National Research Foundation of Korea [2009-0087317]
  6. Agricultural R&D Promotion Center [309017-5]
  7. Korea Ministry for Food, Agriculture, Forestry and Fisheries
  8. National Research Foundation of Korea [2009-0087317] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Changes in membrane fluidity are the earliest cellular events that occur in plant cells upon exposure to cold. This subsequently triggers physiological processes, such as calcium influx and reorganization of actin cytoskeletons, and induces expression of cold-responsive genes. The plasma-membrane-anchored NAC (NAM/ATAF/CUC) transcription factor NTL6 is of particular interest. Cold triggers proteolytic activation of the dormant NTL6 protein, which in turn elicits pathogen-resistance responses by inducing a small group of cold-inducible PR (pathogenesis-related) genes in Arabidopsis. In the present study, we show that proteolytic processing of NTL6 is regulated by cold-induced remodelling of membrane fluidity. NTL6 processing was stimulated rapidly by cold. The protein stability of NTL6 was also enhanced by cold. The effects of cold on NTL6 processing and protein stability were significantly reduced in cold-acclimatized plants, supporting the regulation of NTL6 processing by membrane fluidity. Consistent with this, although NTL6 processing was stimulated by pharmacological agents that reduce membrane fluidity and thus mimic cold, it was inhibited when plants were treated with a 18:3 unsaturated fatty acid, linolenic acid. In addition, the pattern of NTL6 processing was changed in Arabidopsis mutants with altered membrane lipid compositions. Assays employing chemicals that inhibit activities of the proteasome and proteases showed that NTL6 processing occurs via the regulated intramembrane proteolysis mechanism. Interestingly, a metalloprotease inhibitor blocked the NTL6 processing. These observations indicate that a metalloprotease activity is responsible for NTL6 processing in response to cold-induced changes in membrane fluidity.

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