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Cer1p在酿酒酵母的内质网中作为分子伴侣发挥作用。

Cer1p functions as a molecular chaperone in the endoplasmic reticulum of Saccharomyces cerevisiae.

作者信息

Hamilton T G, Norris T B, Tsuruda P R, Flynn G C

机构信息

Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA.

出版信息

Mol Cell Biol. 1999 Aug;19(8):5298-307. doi: 10.1128/MCB.19.8.5298.

Abstract

Cer1p/Lhs1p/Ssi1p is a novel Hsp70-related protein that is important for the translocation of a subset of proteins into the yeast Saccharomyces cerevisiae endoplasmic reticulum. Cer1p has very limited amino acid identity to the hsp70 chaperone family in the N-terminal ATPase domain but lacks homology to the highly conserved hsp70 peptide binding domain. The role of Cer1p in protein folding and translocation was assessed. Deletion of CER1 slowed the folding of reduced pro-carboxypeptidase Y (pro-CPY) approximately twofold in yeast. In wild-type yeast under reducing conditions, pro-CPY can be found in a complex with Cer1p, while partially purified Cer1p is able to bind directly to peptides. Together, this suggests that Cer1p has a chaperoning activity required for proper refolding of denatured pro-CPY which is mediated by direct interaction with the unfolded polypeptide. Cer1p peptide binding and oligomerization could be disrupted by addition of ATP, confirming that Cer1p possesses a functional ATP binding site, much like Kar2p and other members of the hsp70 family. Interestingly, replacing the signal sequence of a CER1-dependent protein with that of a CER1-independent protein did not relieve the requirement of CER1 for import. This result suggests that an interaction with the mature portion of the protein also is important for the translocation role of Cer1p. The CER1 RNA levels increase at lower temperatures. In addition, the effects of deletion on folding and translocation are more severe at lower temperatures. Therefore, these results suggest that Cer1p provides an additional chaperoning activity in processes known to require Kar2p. However, there appears to be a greater requirement for Cer1p chaperone activity at lower temperatures.

摘要

Cer1p/Lhs1p/Ssi1p是一种与热休克蛋白70(Hsp70)相关的新型蛋白质,对酵母酿酒酵母内质网中一部分蛋白质的转运很重要。Cer1p在N端ATP酶结构域与Hsp70伴侣家族的氨基酸同源性非常有限,但与高度保守的Hsp70肽结合结构域缺乏同源性。评估了Cer1p在蛋白质折叠和转运中的作用。在酵母中,删除CER1会使还原型羧肽酶Y原(pro-CPY)的折叠速度减慢约两倍。在还原条件下的野生型酵母中,pro-CPY可与Cer1p形成复合物,而部分纯化的Cer1p能够直接结合肽段。综上所述,这表明Cer1p具有使变性的pro-CPY正确重新折叠所需的伴侣活性,这种活性是由与未折叠多肽的直接相互作用介导的。添加ATP可破坏Cer1p的肽结合和寡聚化,证实Cer1p拥有功能性ATP结合位点,这与Kar2p和Hsp70家族的其他成员非常相似。有趣的是,用不依赖CER1的蛋白质的信号序列替换依赖CER1的蛋白质的信号序列并不能消除对CER1导入的需求。这一结果表明,与蛋白质成熟部分的相互作用对Cer1p的转运作用也很重要。在较低温度下,CER1的RNA水平会升高。此外,在较低温度下,删除对折叠和转运的影响更为严重。因此,这些结果表明,Cer1p在已知需要Kar2p的过程中提供了额外的伴侣活性。然而,在较低温度下,对Cer1p伴侣活性的需求似乎更大。

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