Inefficient Quality Control of Thermosensitive Proteins on the Plasma Membrane

被引:23
作者
Lewis, Michael J. [1 ]
Pelham, Hugh R. B. [1 ]
机构
[1] MRC, Mol Biol Lab, Cambridge CB2 2QH, England
来源
PLOS ONE | 2009年 / 4卷 / 04期
基金
英国医学研究理事会;
关键词
ENDOPLASMIC-RETICULUM DEGRADATION; ER-ASSOCIATED DEGRADATION; UBIQUITIN LIGASE; SACCHAROMYCES-CEREVISIAE; MULTIVESICULAR BODIES; YEAST; SYSTEM; ENDOCYTOSIS; STABILITY; REQUIRES;
D O I
10.1371/journal.pone.0005038
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Misfolded proteins are generally recognised by cellular quality control machinery, which typically results in their ubiquitination and degradation. For soluble cytoplasmic proteins, degradation is mediated by the proteasome. Membrane proteins that fail to fold correctly are subject to ER associated degradation (ERAD), which involves their extraction from the membrane and subsequent proteasome-dependent destruction. Proteins with abnormal transmembrane domains can also be recognised in the Golgi or endosomal system and targeted for destruction in the vacuole/lysosome. It is much less clear what happens to membrane proteins that reach their destination, such as the cell surface, and then suffer damage. Methodology/Principal Findings: We have tested the ability of yeast cells to degrade membrane proteins to which temperature-sensitive cytoplasmic alleles of the Ura3 protein or of phage lambda repressor have been fused. In soluble form, these proteins are rapidly degraded upon temperature shift, in part due to the action of the Doa10 and San1 ubiquitin ligases and the proteasome. When tethered to the ER protein Use1, they are also degraded. However, when tethered to a plasma membrane protein such as Sso1 they escape degradation, either in the vacuole or by the proteasome. Conclusions/Significance: Membrane proteins with a misfolded cytoplasmic domain appear not to be efficiently recognised and degraded once they have escaped the ER, even though their defective domains are exposed to the cytoplasm and potentially to cytoplasmic quality controls. Membrane tethering may provide a way to reduce degradation of unstable proteins.
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页数:6
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