Cherry Smita, Jin Eugene Jennifer, Ozel Mehmet Neset, Lu Zhiyuan, Agi Egemen, Wang Dong, Jung Wei-Hung, Epstein Daniel, Meinertzhagen Ian A, Chan Chih-Chiang, Hiesinger P Robin
Department of Physiology, University of Texas Southwestern Medical Center, Dallas, United States.
Elife. 2013 Dec 10;2:e01064. doi: 10.7554/eLife.01064.
The small GTPase Rab7 is a key regulator of endosomal maturation in eukaryotic cells. Mutations in rab7 are thought to cause the dominant neuropathy Charcot-Marie-Tooth 2B (CMT2B) by a gain-of-function mechanism. Here we show that loss of rab7, but not overexpression of rab7 CMT2B mutants, causes adult-onset neurodegeneration in a Drosophila model. All CMT2B mutant proteins retain 10-50% function based on quantitative imaging, electrophysiology, and rescue experiments in sensory and motor neurons in vivo. Consequently, expression of CMT2B mutants at levels between 0.5 and 10-fold their endogenous levels fully rescues the neuropathy-like phenotypes of the rab7 mutant. Live imaging reveals that CMT2B proteins are inefficiently recruited to endosomes, but do not impair endosomal maturation. These findings are not consistent with a gain-of-function mechanism. Instead, they indicate a dosage-dependent sensitivity of neurons to rab7-dependent degradation. Our results suggest a therapeutic approach opposite to the currently proposed reduction of mutant protein function. DOI: http://dx.doi.org/10.7554/eLife.01064.001.
小GTP酶Rab7是真核细胞内体成熟的关键调节因子。rab7突变被认为通过功能获得机制导致显性神经病变夏科-马里-图思病2B型(CMT2B)。在此我们表明,在果蝇模型中,rab7的缺失而非rab7 CMT2B突变体的过表达会导致成年期神经退行性变。基于体内感觉和运动神经元的定量成像、电生理学及拯救实验,所有CMT2B突变蛋白保留10%至50%的功能。因此,CMT2B突变体以内源水平0.5至10倍的水平表达可完全拯救rab7突变体的神经病变样表型。实时成像显示,CMT2B蛋白被低效招募至内体,但不损害内体成熟。这些发现与功能获得机制不一致。相反,它们表明神经元对rab7依赖性降解存在剂量依赖性敏感性。我们的结果提示了一种与目前所提出的降低突变蛋白功能相反的治疗方法。DOI: http://dx.doi.org/10.7554/eLife.01064.001