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非典型的、可逆的半胱氨酸泛素化可以防止过氧化物酶体膜上 PEX5 的过度泛素化。

Noncanonical and reversible cysteine ubiquitination prevents the overubiquitination of PEX5 at the peroxisomal membrane.

机构信息

Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, Porto, Portugal.

Instituto de Biologia Molecular e Celular (IBMC), Universidade do Porto, Porto, Portugal.

出版信息

PLoS Biol. 2024 Mar 12;22(3):e3002567. doi: 10.1371/journal.pbio.3002567. eCollection 2024 Mar.

Abstract

PEX5, the peroxisomal protein shuttling receptor, binds newly synthesized proteins in the cytosol and transports them to the organelle. During its stay at the peroxisomal protein translocon, PEX5 is monoubiquitinated at its cysteine 11 residue, a mandatory modification for its subsequent ATP-dependent extraction back into the cytosol. The reason why a cysteine and not a lysine residue is the ubiquitin acceptor is unknown. Using an established rat liver-based cell-free in vitro system, we found that, in contrast to wild-type PEX5, a PEX5 protein possessing a lysine at position 11 is polyubiquitinated at the peroxisomal membrane, a modification that negatively interferes with the extraction process. Wild-type PEX5 cannot retain a polyubiquitin chain because ubiquitination at cysteine 11 is a reversible reaction, with the E2-mediated deubiquitination step presenting faster kinetics than PEX5 polyubiquitination. We propose that the reversible nonconventional ubiquitination of PEX5 ensures that neither the peroxisomal protein translocon becomes obstructed with polyubiquitinated PEX5 nor is PEX5 targeted for proteasomal degradation.

摘要

PEX5,过氧化物酶体蛋白穿梭受体,在细胞质中结合新合成的蛋白质,并将其运输到细胞器。在过氧化物酶体蛋白转位酶中停留期间,PEX5 在其半胱氨酸 11 残基处被单泛素化,这是其随后依赖 ATP 的提取回细胞质所必需的修饰。为什么一个半胱氨酸而不是赖氨酸残基是泛素的接受体尚不清楚。使用已建立的基于大鼠肝的无细胞体外系统,我们发现,与野生型 PEX5 相反,位置 11 具有赖氨酸的 PEX5 蛋白在过氧化物酶体膜上多泛素化,这种修饰会对提取过程产生负面影响。野生型 PEX5 不能保留多泛素链,因为半胱氨酸 11 处的泛素化是一个可逆反应,E2 介导的去泛素化步骤比 PEX5 多泛素化具有更快的动力学。我们提出,PEX5 的可逆非传统泛素化可确保过氧化物酶体蛋白转位酶不会被多泛素化的 PEX5 阻塞,也不会将 PEX5 靶向蛋白酶体降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ace6/10959387/98ca7ef05162/pbio.3002567.g001.jpg

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