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典型的 AAA 底物穿膜孔的偏离阻止了酵母 Cdc48 中的致命蛋白质降解。

Deviation of the typical AAA substrate-threading pore prevents fatal protein degradation in yeast Cdc48.

机构信息

Department of Molecular Cell Biology, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, 860-0811, Japan.

Core Research for Evolutional Science and Technology, Japan Science and Technology Agency, Saitama, 332-0012, Japan.

出版信息

Sci Rep. 2017 Jul 14;7(1):5475. doi: 10.1038/s41598-017-05806-y.

Abstract

Yeast Cdc48 is a well-conserved, essential chaperone of ATPases associated with diverse cellular activity (AAA) proteins, which recognizes substrate proteins and modulates their conformations to carry out many cellular processes. However, the fundamental mechanisms underlying the diverse pivotal roles of Cdc48 remain unknown. Almost all AAA proteins form a ring-shaped structure with a conserved aromatic amino acid residue that is essential for proper function. The threading mechanism hypothesis suggests that this residue guides the intrusion of substrate proteins into a narrow pore of the AAA ring, thereby becoming unfolded. By contrast, the aromatic residue in one of the two AAA rings of Cdc48 has been eliminated through evolution. Here, we show that artificial retrieval of this aromatic residue in Cdc48 is lethal, and essential features to support the threading mechanism are required to exhibit the lethal phenotype. In particular, genetic and biochemical analyses of the Cdc48 lethal mutant strongly suggested that when in complex with the 20S proteasome, essential proteins are abnormally forced to thread through the Cdc48 pore to become degraded, which was not detected in wild-type Cdc48. Thus, the widely applicable threading model is less effective for wild-type Cdc48; rather, Cdc48 might function predominantly through an as-yet-undetermined mechanism.

摘要

酵母 Cdc48 是一种高度保守的、必需的伴侣分子,可与多种细胞活性相关的 ATP 酶(AAA)蛋白结合,识别底物蛋白并调节其构象,以完成许多细胞过程。然而,Cdc48 发挥多种关键作用的基本机制尚不清楚。几乎所有的 AAA 蛋白都形成一个环形结构,其中含有一个保守的芳香族氨基酸残基,该残基对于正确的功能至关重要。穿线机制假说表明,该残基引导底物蛋白进入 AAA 环的狭窄孔道,从而使蛋白展开。相比之下,Cdc48 两个 AAA 环中的一个的芳香族残基在进化过程中被消除了。在这里,我们表明,通过人工恢复 Cdc48 中的这种芳香族残基是致命的,并且需要支持穿线机制的必需特征来表现出致死表型。特别是,对 Cdc48 致死突变体的遗传和生化分析强烈表明,当与 20S 蛋白酶体结合时,必需蛋白会异常被迫穿过 Cdc48 孔道以被降解,而在野生型 Cdc48 中未检测到这种情况。因此,广泛适用的穿线模型对野生型 Cdc48 的效果较差;相反,Cdc48 可能主要通过尚未确定的机制发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/945b/5511170/3e70f86d869d/41598_2017_5806_Fig1_HTML.jpg

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