Hereditary spastic paraplegia: gain-of-function mechanisms revealed by new transgenic mouse

单倍率不足 遗传性痉挛性截瘫 生物 基因剔除小鼠 转基因小鼠 突变体 细胞生物学 突变 转基因 遗传学 基因 表型
作者
Liang Qiang,Emanuela Piermarini,Hemalatha Muralidharan,Wenqian Yu,Lanfranco Leo,Laura Hennessy,Sílvia Fernandes,Theresa Connors,Philip L. Yates,Michelle Swift,Lyandysha V. Zholudeva,Michael A. Lane,Gerardo Morfini,Guillermo M. Alexander,Terry Heiman‐Patterson,Peter W. Baas
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:28 (7): 1136-1152 被引量:29
标识
DOI:10.1093/hmg/ddy419
摘要

Mutations of the SPAST gene, which encodes the microtubule-severing protein spastin, are the most common cause of hereditary spastic paraplegia (HSP). Haploinsufficiency is the prevalent opinion as to the mechanism of the disease, but gain-of-function toxicity of the mutant proteins is another possibility. Here, we report a new transgenic mouse (termed SPASTC448Y mouse) that is not haploinsufficient but expresses human spastin bearing the HSP pathogenic C448Y mutation. Expression of the mutant spastin was documented from fetus to adult, but gait defects reminiscent of HSP (not observed in spastin knockout mice) were adult onset, as is typical of human patients. Results of histological and tracer studies on the mouse are consistent with progressive dying back of corticospinal axons, which is characteristic of the disease. The C448Y-mutated spastin alters microtubule stability in a manner that is opposite to the expectations of haploinsufficiency. Neurons cultured from the mouse display deficits in organelle transport typical of axonal degenerative diseases, and these deficits were worsened by depletion of endogenous mouse spastin. These results on the SPASTC448Y mouse are consistent with a gain-of-function mechanism underlying HSP, with spastin haploinsufficiency exacerbating the toxicity of the mutant spastin proteins. These findings reveal the need for a different therapeutic approach than indicated by haploinsufficiency alone.
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