Author/Editor     Barabas, Peter; Gorusupudi, Aruna; Bernstein, Paul S.; Križaj, David
Title     Mouse models of stargardt 3 dominant macular degeneration
Type     članek
Source     In: Retinal degenerative diseases : mechanisms and experimental therapy Cham : Springer
Publication year     2015
Volume     str. 137-143
Language     eng
Abstract     Stargardt type 3 macular degeneration is dependent on a dominant defect in a single gene, ELOVL4 (elongase of very long chain fatty acids 4). The encoded enzyme, ELOVL4, is required for the synthesis of very long chain polyunsaturated fatty acids (VLC-PUFAs), a rare class of > C24 lipids. In vitro expression studies suggest that mutated ELOVL4STGD3 proteins fold improperly, resulting in ER stress and formation of cytosolic aggresomes of wild type and mutant ELOVL4. Although a number of mouse models have been developed to determine whether photoreceptor cell loss in STGD3 results from depletion of VLC-PUFAs, aggresome-dependent cell stress or a combination of these two factors, none of these models adequately recapitulates the disease phenotype in humans. Thus, the precise molecular mechanism by which ELOVL4 mutation causes photoreceptor degeneration in mice and in human patients remains to be characterized. This mini review compares and evaluates current STGD3 mouse models and determines what conclusions can be drawn from past work.
Keywords     degeneracija makule
STGD3
ELOVL4
macular degeneration
STGD3
ELOVL4