Dehydrodolichyl diphosphate synthase complex subunit (DHDDS) is required for protein glycosylation in eukaryotes, and variants. Surprisingly, three variant alleles (K42E/K42E, T206A/K42E and R98W/K42E) have been reported to cause retinitis pigmentosa 59 (RP59). Because T206A only has been reported to occur heterozygously with K42E, we generated homozygous and hererozygous mutants - i.e. T206A/T206A and T206A/K42E, respectively - in mice to assess the effect of the T206A allele. By postnatal age of 12 month (PNÂ 12-mo), T206A/T206A and T206A/K42E mice exhibited reduction of inner nuclear layer thickness as observed in K42E/K42E mice. Electroretinography (ERG) revealed a reduction in b-waves, but spared reduction in a-wave amplitudes. By PNÂ 3-mo, ERG c- and d-waves were significantly attenuated in all phenotypes. Consistent with a reduction in inner nuclear layer thickness as seen by using optical coherence tomography (OCT), cell loss observed by histology, as well as bipolar and amacrine cell densities were reduced in all Dhdds mutant phenotypes compared to those of PNÂ 8-12â mo age-matched controls. These results indicated that the DHDDS T206A allele, like the K42E allele, causes retinal disease, probably through a common pathobiological mechanism. We propose that the physiological basis of retinal dysfunction in RP59 involves defective photoreceptor to bipolar cell synaptic transmission with concomitant bipolar/amacrine cell degeneration.
Dhdds T206A and Dhdds K42E knock-in mouse models of retinitis pigmentosa 59 are phenotypically similar.
Dhdds T206A 和 Dhdds K42E 敲入小鼠视网膜色素变性模型 59 在表型上相似
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作者:Nguyen Mai N, Chakraborty Dibyendu, Messinger Jeffrey, Kraft Timothy W, Sherry David M, Fliesler Steven J, Pittler Steven J
| 期刊: | Disease Models & Mechanisms | 影响因子: | 3.300 |
| 时间: | 2025 | 起止号: | 2025 Jul 1; 18(7):dmm052243 |
| doi: | 10.1242/dmm.052243 | 种属: | Mouse |
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