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针对 4R tau 异构体选择性模板聚集进行精准的蛋白构象设计。

Precision proteoform design for 4R tau isoform selective templated aggregation.

机构信息

Neuroscience Research Institute, University of California Santa Barbara, Santa Barbara, CA 93106.

Department of Molecular, Cell and Developmental Biology, University of California Santa Barbara, Santa Barbara, CA 93106.

出版信息

Proc Natl Acad Sci U S A. 2024 Apr 9;121(15):e2320456121. doi: 10.1073/pnas.2320456121. Epub 2024 Apr 3.

Abstract

Prion-like spread of disease-specific tau conformers is a hallmark of all tauopathies. A 19-residue probe peptide containing a P301L mutation and spanning the R2/R3 splice junction of tau folds and stacks into seeding-competent fibrils and induces aggregation of 4R, but not 3R tau. These tau peptide fibrils propagate aggregated intracellular tau over multiple generations, have a high β-sheet content, a colocalized lipid signal, and adopt a well-defined U-shaped fold found in 4R tauopathy brain-derived fibrils. Fully atomistic replica exchange molecular dynamics (MD) simulations were used to compute the free energy landscapes of the conformational ensemble of the peptide monomers. These identified an aggregation-prohibiting β-hairpin structure and an aggregation-competent U-fold unique to 4R tauopathy fibrils. Guided by MD simulations, we identified that the N-terminal-flanking residues to PHF6, which slightly vary between 4R and 3R isoforms, modulate seeding. Strikingly, when a single amino acid switch at position 305 replaced the serine of 4R tau with a lysine from the corresponding position in the first repeat of 3R tau, the seeding induced by the 19-residue peptide was markedly reduced. Conversely, a 4R tau mimic with three repeats, prepared by replacing those amino acids in the first repeat with those amino acids uniquely present in the second repeat, recovered aggregation when exposed to the 19-residue peptide. These peptide fibrils function as partial prions to recruit naive 4R tau-ten times the length of the peptide-and serve as a critical template for 4R tauopathy propagation. These results hint at opportunities for tau isoform-specific therapeutic interventions.

摘要

疾病特异性 tau 构象的朊病毒样传播是所有 tau 病的标志。一种含有 P301L 突变的 19 个残基探针肽跨越 tau 的 R2/R3 剪接接头折叠并堆积成具有种子形成能力的原纤维,并诱导 4R,但不诱导 3R tau 的聚集。这些 tau 肽原纤维通过多个世代传播聚集的细胞内 tau,具有高 β-折叠含量、共定位的脂质信号,并采用在 4R tau 病脑中发现的明确的 U 形折叠。使用全原子复制交换分子动力学 (MD) 模拟来计算肽单体构象整体的自由能景观。这些鉴定出一种阻止聚集的 β-发夹结构和一种独特的 4R tau 病原纤维聚集竞争的 U 折叠。受 MD 模拟的指导,我们确定了 PHF6 的 N 端侧翼残基在 4R 和 3R 同工型之间略有变化,调节种子形成。引人注目的是,当位置 305 的单个氨基酸替换将 4R tau 的丝氨酸替换为来自 3R tau 第一个重复的对应位置的赖氨酸时,由 19 个残基肽诱导的种子形成明显减少。相反,用独特存在于第二个重复中的氨基酸替换第一个重复中的氨基酸制备的具有三个重复的 4R tau 模拟物在暴露于 19 个残基肽时恢复了聚集。这些肽原纤维作为部分朊病毒样物质招募幼稚的 4R tau-肽的十倍长-并作为 4R tau 病传播的关键模板。这些结果暗示了针对 tau 同工型特异性治疗干预的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d024/11009657/ad769178b701/pnas.2320456121fig01.jpg

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