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Proteasomal degradation of the intrinsically disordered protein tau at single-residue resolution

机译:单残留型分辨率的固有无序蛋白质Tau的蛋白酶体降解

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Intrinsically disordered proteins (IDPs) can be degraded in a ubiquitin-independent process by the 20 S proteasome. Decline in 20 S activity characterizes neurodegenerative diseases. Here, we examine 20 S degradation of IDP tau, a protein that aggregates into insoluble deposits in Alzheimer’s disease. We show that cleavage of tau by the 20 S proteasome is most efficient within the aggregation-prone repeat region of tau and generates both short, aggregation-deficient peptides and two long fragments containing residues 1 to 251 and 1 to 218. Phosphorylation of tau by the non-proline–directed Casup2+/sup/calmodulin-dependent protein kinase II inhibits degradation by the 20 S proteasome. Phosphorylation of tau by GSK3β, a major proline-directed tau kinase, modulates tau degradation kinetics in a residue-specific manner. The study provides detailed insights into the degradation products of tau generated by the 20 S proteasome, the residue specificity of degradation, single-residue degradation kinetics, and their regulation by posttranslational modification.
机译:本质上无序的蛋白质(IDP)可以通过20 s蛋白酶体在遍布蛋白依赖性方法中降解。 20次活动的下降表征神经退行性疾病。在这里,我们研究IDP Tau的20次降解,该蛋白质聚集在阿尔茨海默病中的不溶性沉积物中。我们表明,在TAU的聚集易于重复区域内,TAU的裂解最有效,并产生短,聚集缺乏肽和含有残留物1至251和1至218的两个长片段。TAU的磷酸化非脯氨酸定向的Ca 2 + /钙调霉素依赖性蛋白激酶II抑制20s蛋白酶体的降解。通过GSK3β,主要的脯氨酸指导的Tau激酶磷酸化,以残留物种方式调节Tau降解动力学。该研究提供了对20S蛋白酶体产生的Tau的降解产物的详细见解,降解的残留物特异性,单次残基降解动力学及其通过后翻译改性的调节。

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