Reduced G protein-coupled signaling efficiency in retinal rod outer segments in response to n-3 fatty acid deficiency

被引:179
作者
Niu, SL [1 ]
Mitchell, DC [1 ]
Lim, SY [1 ]
Wen, ZM [1 ]
Kim, HY [1 ]
Salem, N [1 ]
Litman, BJ [1 ]
机构
[1] NIAAA, Lab Membrane Biochem & Biophys, Rockville, MD 20852 USA
关键词
D O I
10.1074/jbc.M404376200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The fatty acid ( FA) docosahexaenoic acid ( DHA, 22: 6n-3) is highly enriched in membrane phospholipids of the central nervous system and retina. Loss of DHA because of n-3 FA deficiency leads to suboptimal function in learning, memory, olfactory-based discrimination, spatial learning, and visual acuity. G protein-coupled receptor (GPCR) signal transduction is a common signaling motif in these neuronal pathways. Here we investigated the effect of n-3 FA deficiency on GPCR signaling in retinal rod outer segment (ROS) membranes isolated from rats raised on n-3-adequate or -deficient diets. ROS membranes of second generation n-3 FA-deficient rats had similar to 80% less DHA than n-3-adequate rats. DHA was replaced by docosapentaenoic acid ( 22: 5n-6), an n-6 FA. This replacement correlated with desensitization of visual signaling in n-3 FA-deficient ROS, as evidenced by reduced rhodopsin activation, rhodopsin-ransducin (G(t)) coupling, cGMP phosphodiesterase activity, and slower formation of metarhodopsin II (MII) and the MII-G(t) complex relative to n-3 FA-adequate ROS. ROS membranes from n-3 FA-deficient rats exhibited a higher degree of phospholipid acyl chain order relative to n-3 FA-adequate rats. These findings reported here provide an explanation for the reduced amplitude and delayed response of the electroretinogram a-wave observed in n-3 FA deficiency in rodents and nonhuman primates. Because members of the GPCR family are widespread in signaling pathways in the nervous system, the effect of reduced GPCR signaling due to the loss of membrane DHA may serve as an explanation for the suboptimal neural signaling observed in n-3 FA deficiency.
引用
收藏
页码:31098 / 31104
页数:7
相关论文
共 44 条
[31]   Optimization of receptor-G protein coupling by bilayer lipid composition II - Formation of metarhodopsin II-transducin complex [J].
Niu, SL ;
Mitchell, DC ;
Litman, BJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (46) :42807-42811
[32]   Manipulation of cholesterol levels in rod disk membranes by methyl-β-cyclodextrin.: Effects on receptor activation. [J].
Niu, SL ;
Mitchell, DC ;
Litman, BJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (23) :20139-20145
[33]   ROD OUTER SEGMENT LIPID OPSIN RATIOS IN THE DEVELOPING NORMAL AND RETINAL DYSTROPHIC RAT [J].
ORGANISCIAK, DT ;
WANG, HM ;
KOU, AL .
EXPERIMENTAL EYE RESEARCH, 1982, 34 (03) :401-412
[34]   Retinal and brain accretion of long-chain polyunsaturated fatty acids in developing felines: The effects of corn oil-based maternal diets [J].
Pawlosky, RJ ;
Denkins, Y ;
Ward, G ;
Salem, N .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 1997, 65 (02) :465-472
[35]   Mechanisms of action of docosahexaenoic acid in the nervous system [J].
Salem, N ;
Litman, B ;
Kim, HY ;
Gawrisch, K .
LIPIDS, 2001, 36 (09) :945-959
[36]  
SALEM N, 1989, CURRENT TOPICS NUTRI, V22, P109
[37]   INTERCONVERSION OF METARHODOPSIN-I AND METARHODOPSIN-II - A BRANCHED PHOTOINTERMEDIATE DECAY MODEL [J].
STRAUME, M ;
MITCHELL, DC ;
MILLER, JL ;
LITMAN, BJ .
BIOCHEMISTRY, 1990, 29 (39) :9135-9142
[38]  
Wainwright P E, 1998, Nutr Neurosci, V1, P281, DOI 10.1080/1028415X.1998.11747238
[39]   Retinal sensitivity loss in third-generation n-3 PUFA-deficient rats [J].
Weisinger, HS ;
Armitage, JA ;
Jeffrey, BG ;
Mitchell, DC ;
Moriguchi, T ;
Sinclair, AJ ;
Weisinger, RS ;
Salem, N .
LIPIDS, 2002, 37 (08) :759-765
[40]   Effect of dietary n-3 deficiency on the electroretinogram in the guinea pig [J].
Weisinger, HS ;
Vingrys, AJ ;
Sinclair, AJ .
ANNALS OF NUTRITION AND METABOLISM, 1996, 40 (02) :91-98