Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8383993 | FEBS Letters | 2015 | 10 Pages |
Abstract
Morphological disintegration of neurons is coupled invariably to neural death. In particular, disruption of outer segments of photoreceptor neurons triggers photoreceptor death regardless of the pathological stressors. We show that Ranbp2â/â::Tg-Ranbp2CLDm-HA mice with mutations in SUMO-binding motif (SBM) of cyclophilin-like domain (CLD) of Ran-binding protein 2 (Ranbp2) expressed in a null Ranbp2 background lack untoward effects in photoreceptors in the absence of light-stress. However, compared to wild type photoreceptors, light-stress elicits profound disintegration of outer segments of Ranbp2â/â::Tg-Ranbp2CLDm-HA with paradoxical age-dependent resistance of photoreceptors to death and genotype-independent activation of caspases. Ranbp2â/â::Tg-Ranbp2CLDm-HA exhibit photoreceptor death-independent changes in ubiquitin-proteasome system (UPS), but death-dependent increase of ubiquitin carrier protein 9(ubc9) levels. Hence, insidious functional impairment of SBM of Ranbp2's CLD promotes neuroprotection and uncoupling of photoreceptor degeneration and death against phototoxicity.
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Authors
Kyoung-in Cho, Victoria Haney, Dosuk Yoon, Yin Hao, Paulo A. Ferreira,