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Spatial sequestration and detoxification of Huntingtin by the ribosome quality control complex

机译:核糖体质控复合物对亨廷顿病的空间隔离和排毒

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摘要

Huntington disease (HD) is a neurological disorder caused by polyglutamine expansions in mutated Huntingtin (mHtt) proteins, rendering them prone to form inclusion bodies (IB). We report that in yeast, such IB formation is a factor-dependent process subjected to age-related decline. A genome-wide, high-content imaging approach, identified the E3 ubiquitin ligase, Ltn1 of the ribosome quality control complex (RQC) as a key factor required for IB formation, ubiquitination, and detoxification of model mHtt. The failure of ltn1∆ cells to manage mHtt was traced to another RQC component, Tae2, and inappropriate control of heat shock transcription factor, Hsf1, activity. Moreover, super-resolution microscopy revealed that mHtt toxicity in RQC-deficient cells was accompanied by multiple mHtt aggregates altering actin cytoskeletal structures and retarding endocytosis. The data demonstrates that spatial sequestration of mHtt into IBs is policed by the RQC-Hsf1 regulatory system and that such compartmentalization, rather than ubiquitination, is key to mHtt detoxification.>DOI:
机译:亨廷顿病(HD)是由突变的亨廷顿(mHtt)蛋白中的聚谷氨酰胺扩增引起的神经系统疾病,使其易于形成包涵体(IB)。我们报道在酵母中,这种IB的形成是一个与年龄相关的下降的因子依赖性过程。全基因组范围内的高含量成像方法确定了核糖体质量控制复合体(RQC)的E3泛素连接酶Ltn1是IB形成,泛素化和模型mHtt排毒所需的关键因素。 ltn1Δ细胞无法控制mHtt的原因是另一个RQC成分Tae2和对热休克转录因子Hsf1活性的不适当控制。此外,超高分辨率显微镜显示,RQC缺陷细胞中的mHtt毒性伴随着多个mHtt聚集体改变肌动蛋白细胞骨架结构并阻止内吞作用。数据表明,mHtt在IB中的空间隔离受RQC-Hsf1调节系统控制,并且这种分隔而不是泛素化是mHtt排毒的关键。> DOI:

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