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体内 Sup35 朊病毒蛋白相分离的特性及结构域要求

The Properties and Domain Requirements for Phase Separation of the Sup35 Prion Protein In Vivo.

作者信息

Grimes Bryan, Jacob Walter, Liberman Amanda R, Kim Nathan, Zhao Xiaohong, Masison Daniel C, Greene Lois E

机构信息

Laboratory of Cell Biology, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.

Laboratory of Biochemistry and Genetics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Biomolecules. 2023 Sep 10;13(9):1370. doi: 10.3390/biom13091370.

Abstract

The Sup35 prion protein of budding yeast has been reported to undergo phase separation to form liquid droplets both at low pH in vitro and when energy depletion decreases the intracellular pH in vivo. It also has been shown using purified proteins that this phase separation is driven by the prion domain of Sup35 and does not re-quire its C-terminal domain. In contrast, we now find that a Sup35 fragment consisting of only the N-terminal prion domain and the M-domain does not phase separate in vivo; this phase separation of Sup35 requires the C-terminal domain, which binds Sup45 to form the translation termination complex. The phase-separated Sup35 not only colocalizes with Sup45 but also with Pub1, a stress granule marker protein. In addition, like stress granules, phase separation of Sup35 appears to require mRNA since cycloheximide treatment, which inhibits mRNA release from ribosomes, prevents phase separation of Sup35. Finally, unlike Sup35 in vitro, Sup35 condensates do not disassemble in vivo when the intracellular pH is increased. These results suggest that, in energy-depleted cells, Sup35 forms supramolecular assemblies that differ from the Sup35 liquid droplets that form in vitro.

摘要

据报道,出芽酵母的Sup35朊病毒蛋白在体外低pH条件下以及当能量耗竭导致体内细胞内pH降低时会发生相分离,形成液滴。使用纯化蛋白的研究还表明,这种相分离是由Sup35的朊病毒结构域驱动的,不需要其C末端结构域。相比之下,我们现在发现,仅由N末端朊病毒结构域和M结构域组成的Sup35片段在体内不会发生相分离;Sup35的这种相分离需要C末端结构域,该结构域与Sup45结合形成翻译终止复合物。相分离的Sup35不仅与Sup45共定位,还与应激颗粒标记蛋白Pub1共定位。此外,与应激颗粒一样,Sup35的相分离似乎需要mRNA,因为抑制mRNA从核糖体释放的环己酰亚胺处理可阻止Sup35的相分离。最后,与体外的Sup35不同,当细胞内pH升高时,Sup35凝聚物在体内不会解体。这些结果表明,在能量耗尽的细胞中,Sup35形成的超分子聚集体与体外形成的Sup35液滴不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5032/10526957/6998e64bcbd9/biomolecules-13-01370-g001.jpg

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