4.6 Article

High levels of retinal membrane docosahexaenoic acid increase susceptibility to stress-induced degeneration

期刊

JOURNAL OF LIPID RESEARCH
卷 50, 期 5, 页码 807-819

出版社

ELSEVIER
DOI: 10.1194/jlr.M800170-JLR200

关键词

retinal light damage; fat-1; n-3 fatty acid desaturase; 4-hydoroxynonenal (4-HNE); 4-hydroxyhexenal (4-HHE)

资金

  1. National Eye Institute [EY04149, EY00871, EY12190]
  2. National Center for Research Resources [RR17703]
  3. Research to Prevent Blindness, Inc.
  4. Foundation Fighting Blindness
  5. Japan Society for the Promotion of Science (JSPS)

向作者/读者索取更多资源

The fat-1 gene cloned from C. elegans encodes an n-3 fatty acid desaturase that converts n-6 to n-3 PUFA. Mice carrying the fat-1 transgene and wild-type controls were fed an n-3-deficient/n-6-enriched diet [fat-1-safflower oil (SFO) and wt-SFO, respectively]. Fatty acid profiles of rod outer segments (ROS), cerebellum, plasma, and liver demonstrated significantly lower n-6/n-3 ratios and higher docosahexaenoic acid (DHA) levels in fat-1-SFO compared with wt-SFO. When mice were exposed to light stress: 1) the outer nuclear layer (ONL) thickness was reduced; 2) amplitudes of the electroretinogram (ERG) were lower; 3) the number of apoptotic photoreceptor cells was greater; and 4) modification of retinal proteins by 4-hydroxyhexenal (4-HHE), an end-product of n-3 PUFA oxidation was increased in both fat-1-SFO and wt mice fed a regular lab chow diet compared with wt-SFO. The results indicate a positive correlation between the level of DHA, the degree of n-3 PUFA lipid peroxidation, and the vulnerability of the retina to photooxidative stress. In mice not exposed to intense light, the reduction in DHA resulted in reduced efficacy in phototransduction gain steps, while no differences in the retinal morphology or retinal biochemistry. jlr These results highlight the dual roles of DHA in cellular physiology and pathology.-Tanito, M., R. S. Brush, M. H. Elliott, L. D. Wicker, K. R. Henry, and R. E. Anderson. High levels of retinal membrane docosahexaenoic acid increase susceptibility to stress-induced degeneration. J. Lipid Res. 2009. 50: 807-819.

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